Both sides previous revisionPrevious revisionNext revision | Previous revision |
publications [2017/12/19 10:03] – claudia | publications [2025/01/18 01:02] (current) – admin |
---|
====== Publications that used libRadtran ====== | ====== Publications that cite libRadtran ====== |
| |
Following is a list of peer-reviewed publications that used libRadtran or its predecessor, uvspec. If you also used libRadtran for your work we would be glad to add a reference here. | Following is a list of peer-reviewed publications that cite the libRadtran or its predecessor, uvspec. If you also used libRadtran for your work we would be glad to add a reference here (last update: November 2024). |
| |
======Publications====== | |
This list includes peer-reviewed publications of studies which cite the libRadtran package. If you also used libRadtran for your work we would be glad to add a reference here. | |
<html> | <html> |
<h2>2017</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | <!-- This document was automatically generated with bibtex2html 1.86 |
(see http://www.lri.fr/~filliatr/bibtex2html/), | (see http://www.lri.fr/~filliatr/bibtex2html/), |
with the following command: | with the following command: |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | /home/c/Claudia.Emde/progs/bibtex2html-1.86-linux/bibtex2html -s owens_web -nodoc -nobibsource refs.bib --> |
| |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000399067500009">1</a>] | [<a name="WOS:001295833800001">1</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Mate Adamkovics and Imke de Pater. | Carmen Gonzalez, Jose M. Vilaplana, Francisco C. Parra-Rojas, and Antonio |
<b>Observations of the global haze redistribution on Titan from | Serrano. |
2006 to 2015 with OSIRIS at Keck</b>. | <b>Validation of the GUM uncertainty framework and the Unscented |
<em>ICARUS</em>, 290:134--149, JUL 1 2017. | transformation for Brewer UV irradiance measurements using the Monte Carlo |
[ <a href="http://dx.doi.org/{10.1016/j.icarus.2017.02.015}">DOI</a> ] | method</b>. |
| <em>MEASUREMENT</em>, 239, JAN 15 2025. |
| [ <a href="http://dx.doi.org/10.1016/j.measurement.2024.115466">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000416551700001">2</a>] | [<a name="WOS:001331513700001">2</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Christine Aebi, Julian Grobner, Niklaus Kampfer, and Laurent Vuilleumier. | Theodore K. Koenig, Francois Hendrick, Douglas Kinnison, Christopher F. Lee, |
<b>Cloud radiative effect, cloud fraction and cloud type at two | Michel Van Roozendael, and Rainer Volkamer. |
stations in Switzerland using hemispherical sky cameras</b>. | <b>Troposphere-stratosphere-integrated bromine monoxide (BrO) |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(12):4587--4600, | profile retrieval over the central Pacific Ocean</b>. |
NOV 30 2017. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 17(19):5911-5934, OCT 9 |
[ <a href="http://dx.doi.org/{10.5194/amt-10-4587-2017}">DOI</a> ] | 2024. |
| [ <a href="http://dx.doi.org/10.5194/amt-17-5911-2024">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000392385800073">3</a>] | [<a name="WOS:001332757900001">3</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anadranistakis, A. Mamara, and A. A. Argiriou. | William Wandji Nyamsi, Yves-Marie Saint-Drenan, John A. Augustine, Antti Arola, |
<b>Spatial Analysis of the Air Temperature in Greece for the | and Lucien Wald. |
Normal Period 1971-2000</b>. | <b>On the Relationships between Clear-Sky Indices in |
In Karacostas, TS and Bais, AF and Nastos, PT, editor, <em> | Photosynthetically Active Radiation and Broadband Ranges in Overcast and |
PERSPECTIVES ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, | Broken-Cloud Conditions</b>. |
pages 509--514. Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher Phys; | <em>REMOTE SENSING</em>, 16(19), OCT 2024. |
Aristotle Univ Thessaloniki, Sch Geol, Dept Meteorol & Climatol; Hellen | [ <a href="http://dx.doi.org/10.3390/rs16193718">DOI</a> ] |
Meteorol Soc; Mariolopoulos Kanaginis Fdn Environm Sci, 2017. | |
13th International Conference on Meteorology, Climatology and | |
Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, | |
Thessaloniki, GREECE, SEP 19-21, 2016. | |
[ <a href="http://dx.doi.org/{10.1007/978-3-319-35095-0_73}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000403986400009">4</a>] | [<a name="WOS:001309181900001">4</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anton, R. Roman, A. Sanchez-Lorenzo, J. Calbo, and J. M. Vaquero. | Jesse A. Miller, Merav Opher, Maria Hatzaki, Kyriakoula Papachristopoulou, and |
<b>Variability analysis of the reconstructed daily global solar | Brian C. Thomas. |
radiation under all-sky and cloud-free conditions in Madrid during the period | <b>Earth's Mesosphere During Possible Encounters With Massive |
1887-1950</b>. | Interstellar Clouds 2 and 7 Million Years Ago</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 191:94--100, JUL 15 2017. | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 51(17), SEP 16 2024. |
[ <a href="http://dx.doi.org/{10.1016/j.atmosres.2017.03.013}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2024GL110174">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000401432200002">5</a>] | [<a name="WOS:001304629200001">5</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Antti Arola, Thomas F. Eck, Harri Kokkola, Mikko R. A. Pitkanen, and Sami | Johanna Mayer, Bernhard Mayer, Luca Bugliaro, Ralf Meerkoetter, and Christiane |
Romakkaniemi. | Voigt. |
<b>Assessment of cloud-related fine-mode AOD enhancements based on | <b>How well can brightness temperature differences of spaceborne |
AERONET SDA product</b>. | imagers help to detect cloud phase? A sensitivity analysis regarding cloud |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(9):5991--6001, | phase and related cloud properties</b>. |
MAY 16 2017. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 17(17):5161-5185, SEP 5 |
[ <a href="http://dx.doi.org/{10.5194/acp-17-5991-2017}">DOI</a> ] | 2024. |
| [ <a href="http://dx.doi.org/10.5194/amt-17-5161-2024">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000407335000001">6</a>] | [<a name="WOS:001303714400001">6</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Alexander Baklanov, Ulrik Smith Korsholm, Roman Nuterman, Alexander Mahura, | Filei Andrei, Girina Olga, and Sorokin Aleksei. |
Kristian Pagh Nielsen, Bent Hansen Sass, Alix Rasmussen, Ashraf Zakey, Eigil | <b>Retrieval of Volcanic Sulfate Aerosols Optical Parameters from |
Kaas, Alexander Kurganskiy, Brian Sorensen, and Iratxe Gonzalez-Aparicio. | AHI Radiometer Data</b>. |
<b>Enviro-HIRLAM online integrated meteorology-chemistry modelling | <em>ADVANCES IN ATMOSPHERIC SCIENCES</em>, 41(10):1953-1968, OCT 2024. |
system: strategy, methodology, developments and applications (v7.2)</b>. | [ <a href="http://dx.doi.org/10.1007/s00376-024-3105-2">DOI</a> ] |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 10(8):2971--2999, AUG | |
8 2017. | |
[ <a href="http://dx.doi.org/{10.5194/gmd-10-2971-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000397497700017">7</a>] | [<a name="WOS:001299838900001">7</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Blanka Bartok. | Pierre Tulet, Joel Van Baelen, Pierre Bosser, Jerome Brioude, Aurelie Colomb, |
<b>Aerosol radiative effects under clear skies over Europe and | Philippe Goloub, Andrea Pazmino, Thierry Portafaix, Michel Ramonet, Karine |
their changes in the period of 2001-2012</b>. | Sellegri, Melilotus Thyssen, Lea Gest, Nicolas Marquestaut, Dominique Mekies, |
<em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, 37(4):1901--1909, | Jean-Marc Metzger, Gilles Athier, Luc Blarel, Marc Delmotte, Guillaume |
MAR 30 2017. | Desprairies, Meredith Dournaux, Gael Dubois, Valentin Duflot, Kevin Lamy, |
[ <a href="http://dx.doi.org/{10.1002/joc.4821}">DOI</a> ] | Lionel Gardes, Jean-Francois Guillemot, Valerie Gros, Joanna Kolasinski, |
| Morgan Lopez, Olivier Magand, Erwan Noury, Manuel Nunes-Pinharanda, Guillaume |
| Payen, Joris Pianezze, David Picard, Olivier Picard, Sandrine Prunier, |
| Francois Rigaud-Louise, Michael Sicard, and Benjamin Torres. |
| <b>MAP-IO: an atmospheric and marine observatory program on board |
| <i>Marion Dufresne</i> over the Southern Ocean</b>. |
| <em>EARTH SYSTEM SCIENCE DATA</em>, 16(8):3821-3849, AUG 28 2024. |
| [ <a href="http://dx.doi.org/10.5194/essd-16-3821-2024">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000398186600001">8</a>] | [<a name="WOS:001292730400001">8</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Frances Beckett, Arve Kylling, Guomunda Siguroardottir, Sibylle von Loewis, and | Klara Cizkova, Kamil Laska, David Tichopad, Ladislav Metelka, Martin Stanek, |
Claire Witham. | and Arni Sigurosson. |
<b>Quantifying the mass loading of particles in an ash cloud | <b>Effect of volcanic sulfur dioxide on solar UV irradiance during |
remobilized from tephra deposits on Iceland</b>. | the 2023 Fagradalsfjall eruption in Reykjavik, Iceland</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(7):4401--4418, | <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 2024 AUG 2024. |
APR 3 2017. | [ <a href="http://dx.doi.org/10.1127/metz/2024/1224">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-17-4401-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000390499100003">9</a>] | [<a name="WOS:001295960600001">9</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Vojtech Bliznak, Zbynek Sokol, and Petr Zacharov. | Aarne Hovi, Ruzena Janoutova, Zbynek Malenovsky, Daniel Schraik, Jean-Philippe |
<b>Nowcasting of deep convective clouds and heavy precipitation: | Gastellu-Etchegorry, Nicolas Lauret, Jan Novotny, and Miina Rautiainen. |
Comparison study between NWP model simulation and extrapolation</b>. | <b>Physically based modelling of spectral transmittance through |
<em>ATMOSPHERIC RESEARCH</em>, 184:24--34, FEB 1 2017. | forest canopies</b>. |
[ <a href="http://dx.doi.org/{10.1016/j.atmosres.2016.10.003}">DOI</a> ] | <em>METHODS IN ECOLOGY AND EVOLUTION</em>, 15(10):1859-1872, OCT 2024. |
| [ <a href="http://dx.doi.org/10.1111/2041-210X.14402">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000409039900002">10</a>] | [<a name="WOS:001297845500001">10</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Lisdelys Gonzalez-Rodriguez, Alejandro Cabrera-Reina, Jorge Rosas, Matias |
| Volke, and Aitor Marzo. |
| <b>Characterization of solar-derivate ultraviolet radiation for |
| water solar treatment applications</b>. |
| <em>RENEWABLE ENERGY</em>, 233, OCT 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.renene.2024.121078">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001289479500001">11</a>] |
| </td> |
| <td> |
| V. Leroy, S. Schunke, L. Franceschini, N. Misk, and Y. Govaerts. |
| <b>Impact of atmospheric vertical profile on hyperspectral |
| simulations over bright desert pseudo-invariant calibration site</b>. |
| <em>EUROPEAN JOURNAL OF REMOTE SENSING</em>, 2024 AUG 14 2024. |
| [ <a href="http://dx.doi.org/10.1080/22797254.2024.2389798">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001286538300001">12</a>] |
| </td> |
| <td> |
| Foued Hamza, Abdulhakim M. Abdi, Mohamed-Ali Chokri, Lamia Yacoubi, Habib |
| Dlensi, Naoufel Hammouda, Abdenaceur Ghlis, Badreddine Jemaa, Marwa Elghoul, |
| Ahlem Hedhili, and Saad Hanane. |
| <b>Landscape context and wetland attributes influence wintering |
| waterbirds in important bird and biodiversity areas: implications for |
| conservation and management</b>. |
| <em>LANDSCAPE ECOLOGY</em>, 39(8), AUG 8 2024. |
| [ <a href="http://dx.doi.org/10.1007/s10980-024-01942-9">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001288715200001">13</a>] |
| </td> |
| <td> |
| Yichuan Ma, Tao He, Tim R. McVicar, Shunlin Liang, Tong Liu, Wanshan Peng, |
| Dan-Xia Song, and Feng Tian. |
| <b>Quantifying how topography impacts vegetation indices at various |
| spatial and temporal scales</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 312, OCT 1 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2024.114311">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001273788100001">14</a>] |
| </td> |
| <td> |
| Almudena Velazquez Blazquez, Edward Baudrez, Nicolas Clerbaux, and Carlos |
| Domenech. |
| <b>Unfiltering of the EarthCARE Broadband Radiometer (BBR) |
| observations: the BM-RAD product</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 17(14):4245-4256, JUL 17 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/amt-17-4245-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001271459000001">15</a>] |
| </td> |
| <td> |
| Filippo Cali Quaglia, Giovanni Muscari, Daniela Meloni, Annalisa Di Bernardino, |
| Tatiana Di Iorio, Giandomenico Pace, Sebastian K. Schmidt, and Alcide |
| di Sarra. |
| <b>On the retrieval of cloud optical thickness from spectral |
| radiances - A sensitivity study with high albedo surfaces</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 326, NOV 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2024.109108">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001272127500002">16</a>] |
| </td> |
| <td> |
| Pavle Arsenovic, Eugene Rozanov, Ilya Usoskin, Chris Turney, Timofei |
| Sukhodolov, Ken Mccracken, Marina Friedel, Julien Anet, Stana Simic, Ville |
| Maliniemi, Tatiana Egorova, Monika Korte, Harald Rieder, Alan Cooper, and |
| Thomas Peter. |
| <b>Global impacts of an extreme solar particle event under |
| different geomagnetic field strengths</b>. |
| <em>PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED |
| STATES OF AMERICA</em>, 121(28), JUL 9 2024. |
| [ <a href="http://dx.doi.org/10.1073/pnas.2321770121">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001265815200001">17</a>] |
| </td> |
| <td> |
| Lunche Wang, Yunbo Lu, Zhitong Wang, Huaping Li, and Ming Zhang. |
| <b>Hourly solar radiation estimation and uncertainty quantification |
| using hybrid models</b>. |
| <em>RENEWABLE & SUSTAINABLE ENERGY REVIEWS</em>, 202, SEP 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.rser.2024.114727">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001260829000001">18</a>] |
| </td> |
| <td> |
| Sandra Grassl, Christoph Ritter, Ines Tritscher, and Baerbel Vogel. |
| <b>Does the Asian summer monsoon play a role in the stratospheric |
| aerosol budget of the Arctic?</b> |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 24(13):7535-7557, JUL 3 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/acp-24-7535-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001259580600001">19</a>] |
| </td> |
| <td> |
| Mustapha Moulana, Celine Cornet, Thierry Elias, Didier Ramon, Cyril Caliot, and |
| Mathieu Compiegne. |
| <b>Concentrated solar flux modeling in solar power towers with a 3D |
| objects-atmosphere hybrid system to consider atmospheric and environmental |
| gains</b>. |
| <em>SOLAR ENERGY</em>, 277, JUL 15 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2024.112675">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001238781000001">20</a>] |
| </td> |
| <td> |
| Dongmei Xu, Xuewei Zhang, Jinzhong Min, and Feifei Shen. |
| <b>Impacts of Assimilating All-Sky FY-4A AGRI Satellite Infrared |
| Radiances on the Prediction of Super Typhoon In-Fa During the Period With |
| Abnormal Changes</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 129(11), JUN 16 |
| 2024. |
| [ <a href="http://dx.doi.org/10.1029/2024JD040784">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001245646600001">21</a>] |
| </td> |
| <td> |
| Anu Kauppi, Antti Kukkurainen, Antti Lipponen, Marko Laine, Antti Arola, |
| Hannakaisa Lindqvist, and Johanna Tamminen. |
| <b>A Bayesian Framework to Quantify Uncertainty in Aerosol Optical |
| Model Selection Applied to TROPOMI Measurements</b>. |
| <em>REMOTE SENSING</em>, 16(11), JUN 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16111945">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001245423600001">22</a>] |
| </td> |
| <td> |
| Konstantinos Fragkos, Ilias Fountoulakis, Georgia Charalampous, Kyriakoula |
| Papachristopoulou, Argyro Nisantzi, Diofantos Hadjimitsis, and Stelios |
| Kazadzis. |
| <b>Twenty-Year Climatology of Solar UV and PAR in Cyprus: |
| Integrating Satellite Earth Observations with Radiative Transfer Modeling</b>. |
| <em>REMOTE SENSING</em>, 16(11), JUN 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16111878">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001248333300004">23</a>] |
| </td> |
| <td> |
| Panagiotis Kosmopoulos, Harshal Dhake, Danai Kartoudi, Anastasios Tsavalos, |
| Pelagia Koutsantoni, Apostolos Katranitsas, Nikolaos Lavdakis, Eftihia |
| Mengou, and Yashwant Kashyap. |
| <b>Ray-Tracing modeling for urban photovoltaic energy planning and |
| management</b>. |
| <em>APPLIED ENERGY</em>, 369, SEP 1 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.apenergy.2024.123516">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001223034600001">24</a>] |
| </td> |
| <td> |
| Ruben Urraca, Christian Lanconelli, and Nadine Gobron. |
| <b>Impact of the Spatio-Temporal Mismatch Between Satellite and In |
| Situ Measurements on Validations of Surface Solar Radiation</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 129(10), MAY 28 |
| 2024. |
| [ <a href="http://dx.doi.org/10.1029/2024JD041007">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001232524800001">25</a>] |
| </td> |
| <td> |
| Roger Teoh, Zebediah Engberg, Ulrich Schumann, Christiane Voigt, Marc Shapiro, |
| Susanne Rohs, and Marc E. J. Stettler. |
| <b>Global aviation contrail climate effects from 2019 to 2021</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 24(10):6071-6093, MAY 27 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/acp-24-6071-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001234277900001">26</a>] |
| </td> |
| <td> |
| Alexander Marshak, Yuri Knyazikhin, and Tamas Varnai. |
| <b>A new spectrally-invariant approach to the remote sensing of |
| inhomogeneous clouds</b>. |
| <em>FRONTIERS IN REMOTE SENSING</em>, 5, MAY 16 2024. |
| [ <a href="http://dx.doi.org/10.3389/frsen.2024.1392596">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001229460200001">27</a>] |
| </td> |
| <td> |
| Ran Tao, Marcel Nicolaus, Christian Katlein, Philipp Anhaus, Mario Hoppmann, |
| Gunnar Spreen, Hannah Niehaus, Evelyn Jaekel, Manfred Wendisch, and Christian |
| Haas. |
| <b>Seasonality of spectral radiative fluxes and optical properties |
| of Arctic sea ice during the spring-summer transition</b>. |
| <em>ELEMENTA-SCIENCE OF THE ANTHROPOCENE</em>, 12(1), MAY 9 2024. |
| [ <a href="http://dx.doi.org/10.1525/elementa.2023.00130">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001258452100001">28</a>] |
| </td> |
| <td> |
| William Wandji Nyamsi and Anders Lindfors. |
| <b>Detecting clear-sky periods from photovoltaic power |
| measurements</b>. |
| <em>METEOROLOGICAL APPLICATIONS</em>, 31(3), MAY 2024. |
| [ <a href="http://dx.doi.org/10.1002/met.2201">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001231600400001">29</a>] |
| </td> |
| <td> |
| Anna Moustaka, Marios-Bruno Korras-Carraca, Kyriakoula Papachristopoulou, |
| Michael Stamatis, Ilias Fountoulakis, Stelios Kazadzis, Emmanouil Proestakis, |
| Vassilis Amiridis, Kleareti Tourpali, Thanasis Georgiou, Stavros Solomos, |
| Christos Spyrou, Christos Zerefos, and Antonis Gkikas. |
| <b>Assessing Lidar Ratio Impact on CALIPSO Retrievals Utilized for |
| the Estimation of Aerosol SW Radiative Effects across North Africa, the |
| Middle East, and Europe</b>. |
| <em>REMOTE SENSING</em>, 16(10), MAY 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16101689">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001209195200001">30</a>] |
| </td> |
| <td> |
| Richard Maier, Fabian Jakub, Claudia Emde, Mihail Manev, Aiko Voigt, and |
| Bernhard Mayer. |
| <b>A dynamic approach to three-dimensional radiative transfer in |
| subkilometer-scale numerical weather prediction models: the dynamic TenStream |
| solver v1.0</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 17(8):3357-3383, APR 29 2024. |
| [ <a href="http://dx.doi.org/10.5194/gmd-17-3357-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001208279900001">31</a>] |
| </td> |
| <td> |
| Ilias Fountoulakis, Alexandra Tsekeri, Stelios Kazadzis, Vassilis Amiridis, |
| Angelos Nersesian, Maria Tsichla, Emmanouil Proestakis, Antonis Gkikas, |
| Kyriakoula Papachristopoulou, Vasileios Barlakas, Claudia Emde, and Bernhard |
| Mayer. |
| <b>A sensitivity study on radiative effects due to the |
| parameterization of dust optical properties in models</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 24(8):4915-4948, APR 26 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/acp-24-4915-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001206232100001">32</a>] |
| </td> |
| <td> |
| Behrooz Keshtgar, Aiko Voigt, Bernhard Mayer, and Corinna Hoose. |
| <b>Uncertainties in cloud-radiative heating within an idealized |
| extratropical cyclone</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 24(8):4751-4769, APR 22 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/acp-24-4751-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001205136800001">33</a>] |
| </td> |
| <td> |
| Santo Fedele Colosimo, Nathaniel Brockway, Vijay Natraj, Robert Spurr, Klaus |
| Pfeilsticker, Lisa Scalone, Max Spolaor, Sarah Woods, and Jochen Stutz. |
| <b>Investigation of cirrus cloud properties in the tropical |
| tropopause layer using high-altitude limb-scanning near-IR spectroscopy |
| during NASA-ATTREX</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 17(8):2367-2385, APR 19 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/amt-17-2367-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001198243300001">34</a>] |
| </td> |
| <td> |
| Xiaoyong Zhuge, Xiaolei Zou, Lu Yu, Xin Li, Mingjian Zeng, Yilun Chen, Bing |
| Zhang, Bin Yao, Fei Tang, Fengjiao Chen, and Wanlin Kan. |
| <b>Introduction to the NJIAS Himawari-8/9 Cloud Feature Dataset for |
| climate and typhoon research</b>. |
| <em>EARTH SYSTEM SCIENCE DATA</em>, 16(4):1747-1769, APR 8 2024. |
| [ <a href="http://dx.doi.org/10.5194/essd-16-1747-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001195792900001">35</a>] |
| </td> |
| <td> |
| Kyriakoula Papachristopoulou, Ilias Fountoulakis, Alkiviadis F. Bais, Basil E. |
| Psiloglou, Nikolaos Papadimitriou, Ioannis-Panagiotis Raptis, Andreas |
| Kazantzidis, Charalampos Kontoes, Maria Hatzaki, and Stelios Kazadzis. |
| <b>Effects of clouds and aerosols on downwelling surface solar |
| irradiance nowcasting and short-term forecasting</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 17(7):1851-1877, APR 3 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/amt-17-1851-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001220795000003">36</a>] |
| </td> |
| <td> |
| Hua Zhang, Feng Zhang, Lei Liu, Yuzhi Liu, Husi Letu, Yuanjian Yang, Zhengqiang |
| Li, Kun Wu, Shuai Hu, Ming Li, Tie Dai, Fei Wang, Zhili Wang, Yuxiang Ling, |
| Yining Shi, and Chao Liu. |
| <b>Advances in Atmospheric Radiation: Theories, Models, and Their |
| Applications. Part II: Radiative Transfer Models and Related Applications</b>. |
| <em>JOURNAL OF METEOROLOGICAL RESEARCH</em>, 38(2):183-208, APR 2024. |
| [ <a href="http://dx.doi.org/10.1007/s13351-024-3089-y">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001210615900001">37</a>] |
| </td> |
| <td> |
| Cannelle Clavier, Mustapha Meftah, Alain Sarkissian, Frederic Romand, Odile |
| Hembise Fanton d'Andon, Antoine Mangin, Slimane Bekki, Pierre-Richard Dahoo, |
| Patrick Galopeau, Franck Lefevre, Alain Hauchecorne, and Philippe Keckhut. |
| <b>Assessing Greenhouse Gas Monitoring Capabilities Using SolAtmos |
| End-to-End Simulator: Application to the Uvsq-Sat NG Mission</b>. |
| <em>REMOTE SENSING</em>, 16(8), APR 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16081442">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001200981300001">38</a>] |
| </td> |
| <td> |
| Stavros-Andreas Logothetis, Vasileios Salamalikis, and Andreas Kazantzidis. |
| <b>A Machine Learning Approach to Retrieving Aerosol Optical Depth |
| Using Solar Radiation Measurements</b>. |
| <em>REMOTE SENSING</em>, 16(7), APR 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16071132">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001200902500001">39</a>] |
| </td> |
| <td> |
| Martin Meister and John J. Qu. |
| <b>Quantifying Seagrass Density Using Sentinel-2 Data and Machine |
| Learning</b>. |
| <em>REMOTE SENSING</em>, 16(7), APR 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16071165">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001200872700001">40</a>] |
| </td> |
| <td> |
| Ana B. Pascual-Venteo, Jose L. Garcia, Katja Berger, Jose Estevez, Jorge |
| Vicent, Adrian Perez-Suay, Shari Van Wittenberghe, and Jochem Verrelst. |
| <b>Gaussian Process Regression Hybrid Models for the |
| Top-of-Atmosphere Retrieval of Vegetation Traits Applied to PRISMA and EnMAP |
| Imagery</b>. |
| <em>REMOTE SENSING</em>, 16(7), APR 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16071211">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001194777000001">41</a>] |
| </td> |
| <td> |
| J. Neveu, V. Bremaud, P. Antilogus, F. Barret, S. Bongard, Y. Copin, |
| S. Dagoret-Campagne, C. Juramy, L. Le Guillou, M. Moniez, E. Sepulveda, and |
| LSST Dark Energy Sci Collaboration. |
| <b>Slitless spectrophotometry with forward modelling: Principles |
| and application to measuring atmospheric transmission</b>. |
| <em>ASTRONOMY & ASTROPHYSICS</em>, 684, APR 1 2024. |
| [ <a href="http://dx.doi.org/10.1051/0004-6361/202347422">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001190639900001">42</a>] |
| </td> |
| <td> |
| Lea Volkmer, Veronika Poertge, Fabian Jakub, and Bernhard Mayer. |
| <b>Model-based evaluation of cloud geometry and droplet size |
| retrievals from two-dimensional polarized measurements of specMACS</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 17(6):1703-1719, MAR 25 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/amt-17-1703-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001190660800001">43</a>] |
| </td> |
| <td> |
| Evelyn Jaekel, Sebastian Becker, Tim R. Sperzel, Hannah Niehaus, Gunnar Spreen, |
| Ran Tao, Marcel Nicolaus, Wolfgang Dorn, Annette Rinke, Joerg Brauchle, and |
| Manfred Wendisch. |
| <b>Observations and modeling of areal surface albedo and surface |
| types in the Arctic</b>. |
| <em>CRYOSPHERE</em>, 18(3):1185-1205, MAR 12 2024. |
| [ <a href="http://dx.doi.org/10.5194/tc-18-1185-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001190614600001">44</a>] |
| </td> |
| <td> |
| Yueyue Cheng, Chao Liu, Jiandong Wang, Jiaping Wang, Zhouyang Zhang, Li Chen, |
| Dafeng Ge, Caijun Zhu, Jinbo Wang, and Aijun Ding. |
| <b>An observation-constrained estimation of brown carbon aerosol |
| direct radiative effects</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 24(5):3065-3078, MAR 11 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/acp-24-3065-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001190515700001">45</a>] |
| </td> |
| <td> |
| Anna Weber, Tobias Koelling, Veronika Poertge, Andreas Baumgartner, Clemens |
| Rammeloo, Tobias Zinner, and Bernhard Mayer. |
| <b>Polarization upgrade of specMACS: calibration and |
| characterization of the 2D RGB polarization-resolving cameras</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 17(5):1419-1439, MAR 7 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/amt-17-1419-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001194059400003">46</a>] |
| </td> |
| <td> |
| Tomas Josai, Jozef Hraska, and Tomas Bacigal. |
| <b>A Simplified Approach for the Evaluation of the Non-Visual |
| Potential of Daylight in Side-Lit Rooms</b>. |
| <em>SLOVAK JOURNAL OF CIVIL ENGINEERING</em>, 32(1):18-28, MAR 1 2024. |
| [ <a href="http://dx.doi.org/10.2478/sjce-2024-0003">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001183074600001">47</a>] |
| </td> |
| <td> |
| Soi Ahn, Hyeon-Su Kim, Jae-Young Byon, and Hancheol Lim. |
| <b>Improving Dust Aerosol Optical Depth (DAOD) Retrieval from the |
| GEOKOMPSAT-2A (GK-2A) Satellite for Daytime and Nighttime Monitoring</b>. |
| <em>SENSORS</em>, 24(5), MAR 2024. |
| [ <a href="http://dx.doi.org/10.3390/s24051490">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001197123700001">48</a>] |
| </td> |
| <td> |
| Xinhua Hong, Chengxin Zhang, Yuan Tian, Yizhi Zhu, Yin Hao, and Cheng Liu. |
| <b>First TanSat CO2 retrieval over land and ocean using both nadir |
| and glint spectroscopy</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 304, APR 1 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2024.114053">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001166907000001">49</a>] |
| </td> |
| <td> |
| David Doxaran, Boubaker ElKilani, Alexandre Corizzi, and Clemence Goyens. |
| <b>Validation of satellite-derived water-leaving reflectance in |
| contrasted French coastal waters based on HYPERNETS field measurements</b>. |
| <em>FRONTIERS IN REMOTE SENSING</em>, 4, FEB 8 2024. |
| [ <a href="http://dx.doi.org/10.3389/frsen.2023.1290110">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001176825900001">50</a>] |
| </td> |
| <td> |
| Hui Liu, Ye Yu, Dunsheng Xia, Suping Zhao, Xiaoyi Ma, and Longxiang Dong. |
| <b>Aerosol optical and radiative characteristics under contrasting |
| pollution conditions in a typical urban valley in Northwestern China</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 300, APR 15 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2024.107263">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001173391300001">51</a>] |
| </td> |
| <td> |
| Jong-Uk Park, Hyun-Jae Kim, Jin-Soo Park, Jinsoo Choi, Sang Seo Park, Kangho |
| Bae, Jong-Jae Lee, Chang-Keun Song, Soojin Park, Kyuseok Shim, Yeonsoo Cho, |
| and Sang-Woo Kim. |
| <b>Airborne observation with a low-cost hyperspectral instrument: |
| retrieval of NO<sub>2</sub> vertical column densities (VCDs) and the |
| satellite sub-grid variability over industrial point sources</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 17(1):197-217, JAN 15 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/amt-17-197-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001142684300009">52</a>] |
| </td> |
| <td> |
| Wahaj Habib, Ruchita Ingle, Matthew Saunders, and John Connolly. |
| <b>Quantifying peatland land use and CO<sub>2</sub> emissions in |
| Irish raised bogs: mapping insights using Sentinel-2 data and Google Earth |
| Engine</b>. |
| <em>SCIENTIFIC REPORTS</em>, 14(1), JAN 12 2024. |
| [ <a href="http://dx.doi.org/10.1038/s41598-024-51660-0">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001304470300030">53</a>] |
| </td> |
| <td> |
| Hrishka Gupta, Tarun Kumar, and Pramod Kumar Soni. |
| <b>Urban Land Cover Classification of Multispectral Satellite |
| Images Using Artificial Neural Networks</b>. |
| In S Kumar, K Balachandran, JH Kim, and JC Bansal, editors, <em> |
| FOURTH CONGRESS ON INTELLIGENT SYSTEMS, VOL 3, CIS 2023</em>, volume 865 of <em> |
| Lecture Notes in Networks and Systems</em>, pages 367-377. Soft Comput Res Soc, |
| 2024. |
| 4th Congress on Intelligent Systems (CIS), CHRIST, Bengaluru, INDIA, |
| SEP 04-05, 2023. |
| [ <a href="http://dx.doi.org/10.1007/978-981-99-9043-6\_30">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001315975400022">54</a>] |
| </td> |
| <td> |
| Yueming Zheng, Tao He, Shunlin Liang, and Yichuan Ma. |
| <b>Deriving High-Resolution Estimation of TOA Net Shortwave |
| Radiation Over Global Land Using Data From Multiple-Geostationary |
| Satellites</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 62, 2024. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2024.3440329">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001289662900021">55</a>] |
| </td> |
| <td> |
| Javier Gorrono, Luis Guanter, Lukas Valentin Graf, and Ferran Gascon. |
| <b>A Framework for the Estimation of Uncertainties and Spectral |
| Error Correlation in Sentinel-2 Level-2A Data Products</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 62, 2024. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2024.3435021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001276870500057">56</a>] |
| </td> |
| <td> |
| Xuewei Zhang, Dongmei Xu, Jinzhong Min, Hong Li, Feifei Shen, and Yonghui Lei. |
| <b>A Machine Learning-Based Bias Correction Scheme for the All-Sky |
| Assimilation of AGRI Infrared Radiances in a Regional OSSE Framework</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 62, 2024. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2024.3427434">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001214567400005">57</a>] |
| </td> |
| <td> |
| Brenton A. Wilder, Christine M. Lee, Adam Chlus, Hans-Peter Marshall, Jodi |
| Brandt, Alicia M. Kinoshita, Josh Enterkine, Thomas Van Der Weide, and |
| Nancy F. Glenn. |
| <b>Computationally Efficient Retrieval of Snow Surface Properties |
| From Spaceborne Imaging Spectroscopy Measurements Through Dimensionality |
| Reduction Using k-Means Spectral Clustering</b>. |
| <em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS |
| AND REMOTE SENSING</em>, 17:8594-8605, 2024. |
| [ <a href="http://dx.doi.org/10.1109/JSTARS.2024.3386834">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001173263900024">58</a>] |
| </td> |
| <td> |
| Yichuan Ma, Tao He, Cristina Aguilar, Rafael Pimentel, Shunlin Liang, Tim R. |
| Mcvicar, Dalei Hao, Xiongxin Xiao, and Xinyan Liu. |
| <b>Evaluating Topographic Effects on Kilometer-Scale Satellite |
| Downward Shortwave Radiation Products: A Case Study in Mid-Latitude |
| Mountains</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 62, 2024. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2024.3365865">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001150911000001">59</a>] |
| </td> |
| <td> |
| Alexander Kokhanovsky, Maximilian Brell, Karl Segl, and Sabine Chabrillat. |
| <b>SNOWTRAN: A Fast Radiative Transfer Model for Polar |
| Hyperspectral Remote Sensing Applications</b>. |
| <em>REMOTE SENSING</em>, 16(2), JAN 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16020334">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001141506800001">60</a>] |
| </td> |
| <td> |
| Gordana Jakovljevic, Flor Alvarez-Taboada, and Miro Govedarica. |
| <b>Long-Term Monitoring of Inland Water Quality Parameters Using |
| Landsat Time-Series and Back-Propagated ANN: Assessment and Usability in a |
| Real-Case Scenario</b>. |
| <em>REMOTE SENSING</em>, 16(1), JAN 2024. |
| [ <a href="http://dx.doi.org/10.3390/rs16010068">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001138586100001">61</a>] |
| </td> |
| <td> |
| Caoimhe M. Rooney, Natasha E. Batalha, and Mark S. Marley. |
| <b>Spherical Harmonics for the 1D Radiative Transfer Equation. II. |
| Thermal Emission</b>. |
| <em>ASTROPHYSICAL JOURNAL</em>, 960(2), JAN 1 2024. |
| [ <a href="http://dx.doi.org/10.3847/1538-4357/ad05c5">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001145645300001">62</a>] |
| </td> |
| <td> |
| Hamid Kamangir, Brent S. Sams, Nick Dokoozlian, Luis Sanchez, and J. Mason |
| Earles. |
| <b>Large-scale spatio-temporal yield estimation via deep learning |
| using satellite and management data fusion in vineyards</b>. |
| <em>COMPUTERS AND ELECTRONICS IN AGRICULTURE</em>, 216, JAN 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.compag.2023.108439">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001135015000001">63</a>] |
| </td> |
| <td> |
| Shuai Li, Rui Wang, Jiuming Cheng, Congming Dai, Wenqing Xu, Heli Wei, and Jie |
| Zhan. |
| <b>Simulating skylight polarization patterns using the backward |
| Markov Chain Monte Carlo method</b>. |
| <em>ASTRONOMY AND COMPUTING</em>, 46, JAN 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.ascom.2023.100772">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001112331300001">64</a>] |
| </td> |
| <td> |
| William Wandji Nyamsi, Yves-Marie Saint-Drenan, John A. Augustine, Antti Arola, |
| and Lucien Wald. |
| <b>Evidence of linear relationships between clear-sky indices in |
| Photosynthetically Active Radiation and broadband ranges</b>. |
| <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 33(2):117-129, 2024. |
| [ <a href="http://dx.doi.org/10.1127/metz/2023/1203">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001102428200001">65</a>] |
| </td> |
| <td> |
| Panagiotis Kosmopoulos, Harshal Dhake, Nefeli Melita, Konstantinos Tagarakis, |
| Aggelos Georgakis, Avgoustinos Stefas, Orestis Vaggelis, Valentina Korre, and |
| Yashwant Kashyap. |
| <b>Multi-Layer Cloud Motion Vector Forecasting for Solar Energy |
| Applications</b>. |
| <em>APPLIED ENERGY</em>, 353(B), JAN 1 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.apenergy.2023.122144">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001331450800001">66</a>] |
| </td> |
| <td> |
| Konstantinos Michailidis, Katerina Garane, Dimitris Karagkiozidis, Georgia |
| Peletidou, Kalliopi-Artemis Voudouri, Dimitris Balis, and Alkiviadis Bais. |
| <b>Extreme wildfires over northern Greece during summer 2023-Part |
| A: Effects on aerosol optical properties and solar UV radiation</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 311, DEC 1 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2024.107700">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001317912800001">67</a>] |
| </td> |
| <td> |
| Jaka Potocnik, Luka Pajek, and Mitja Kosir. |
| <b>Experimental investigation of the impact of model complexity on |
| indoor daylight spectral simulations</b>. |
| <em>DEVELOPMENTS IN THE BUILT ENVIRONMENT</em>, 20, DEC 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.dibe.2024.100543">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001280909400001">68</a>] |
| </td> |
| <td> |
| Pedro Neto Mendes, Goncalo Lobato Teixeira, David Pinho, Rui Rocha, Paulo |
| Andre, Manfred Niehus, Ricardo Faleiro, Davide Rusca, and Emmanuel Zambrini |
| Cruzeiro. |
| <b>Optical payload design for downlink quantum key distribution and |
| keyless communication using CubeSats</b>. |
| <em>EPJ QUANTUM TECHNOLOGY</em>, 11(1), DEC 2024. |
| [ <a href="http://dx.doi.org/10.1140/epjqt/s40507-024-00254-w">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001307861200001">69</a>] |
| </td> |
| <td> |
| Simon Van Wynsberge, Robin Quere, Serge Andrefouet, Emmanuelle Autret, and |
| Romain Le Gendre. |
| <b>Spatial variability of temperature inside atoll lagoons assessed |
| with Landsat-8 satellite imagery</b>. |
| <em>REMOTE SENSING APPLICATIONS-SOCIETY AND ENVIRONMENT</em>, 36, NOV |
| 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.rsase.2024.101340">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001309420900001">70</a>] |
| </td> |
| <td> |
| Pieter De Vis, Adam Howes, Quinten Vanhellemont, Agnieszka Bialek, Harry |
| Morris, Morven Sinclair, and Kevin Ruddick. |
| <b>Feasibility of satellite vicarious calibration using HYPERNETS |
| surface reflectances from Gobabeb and Princess Elisabeth Antarctica sites</b>. |
| <em>FRONTIERS IN REMOTE SENSING</em>, 5, AUG 26 2024. |
| [ <a href="http://dx.doi.org/10.3389/frsen.2024.1323998">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001277053800001">71</a>] |
| </td> |
| <td> |
| Kelian Sommer, Bertrand Plez, Johann Cohen-Tanugi, Sylvie Dagoret-Campagne, |
| Marc Moniez, Jeremy Neveu, Marc Betoule, Sebastien Bongard, Fabrice |
| Feinstein, Laurent Le Guillou, Claire Juramy, Eduardo Sepulveda, and Thierry |
| Souverin. |
| <b>StarDICE II: Calibration of an Uncooled Infrared Thermal Camera |
| for Atmospheric Gray Extinction Characterization</b>. |
| <em>SENSORS</em>, 24(14), JUL 2024. |
| [ <a href="http://dx.doi.org/10.3390/s24144498">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001231736200001">72</a>] |
| </td> |
| <td> |
| Pieter De Vis, Clemence Goyens, Samuel Hunt, Quinten Vanhellemont, Kevin |
| Ruddick, and Agnieszka Bialek. |
| <b>Generating hyperspectral reference measurements for surface |
| reflectance from the LANDHYPERNET and WATERHYPERNET networks</b>. |
| <em>FRONTIERS IN REMOTE SENSING</em>, 5, MAY 13 2024. |
| [ <a href="http://dx.doi.org/10.3389/frsen.2024.1347230">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001306420900001">73</a>] |
| </td> |
| <td> |
| William K. Jones, Martin Stengel, and Philip Stier. |
| <b>A Lagrangian perspective on the lifecycle and cloud radiative |
| effect of deep convective clouds over Africa</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 24(9):5165-5180, MAY 3 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/acp-24-5165-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001236223500001">74</a>] |
| </td> |
| <td> |
| Wentao Zhang, Yong Shuai, Peng Gao, Ruming Pan, Yiqiang Sun, and Shikui Dong. |
| <b>Shortwave infrared polarization characteristics simulation of |
| solid rocket plume with self-emission and external incident radiation</b>. |
| <em>INFRARED PHYSICS & TECHNOLOGY</em>, 139, JUN 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.infrared.2024.105312">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001270024600017">75</a>] |
| </td> |
| <td> |
| Jalpesh A. Dave, Mehul R. Pandya, Dhiraj B. Shah, Hasmukh K. Varchand, |
| Parthkumar N. Parmar, Himanshu J. Trivedi, and Vishal N. Pathak. |
| <b>Retrieval of land surface temperature from INS-2TD thermal |
| infrared observations using a generalized single-channel algorithm over |
| South-Asia region</b>. |
| <em>JOURNAL OF APPLIED REMOTE SENSING</em>, 18(2), APR 1 2024. |
| [ <a href="http://dx.doi.org/10.1117/1.JRS.18.022202">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001232239600022">76</a>] |
| </td> |
| <td> |
| Stefanie Haeusler, Davide Orsucci, Leonard Vollmann, Eltimir Peev, and Florian |
| Moll. |
| <b>Measurement-based characterization of atmospheric background |
| light in satellite-to-ground quantum key distribution scenarios</b>. |
| <em>OPTICAL ENGINEERING</em>, 63(4), APR 1 2024. |
| [ <a href="http://dx.doi.org/10.1117/1.OE.63.4.041211">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001193398300001">77</a>] |
| </td> |
| <td> |
| Wouter Mol, Bert Heusinkveld, Mary Rose Mangan, Oscar Hartogensis, Menno |
| Veerman, and Chiel van Heerwaarden. |
| <b>Observed patterns of surface solar irradiance under cloudy and |
| clear-sky conditions</b>. |
| <em>QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY</em>, |
| 150(761):2338-2363, APR 2024. |
| [ <a href="http://dx.doi.org/10.1002/qj.4712">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001198827500001">78</a>] |
| </td> |
| <td> |
| Graham Anderson, Shyamanga Borooah, Roly Megaw, Pierre Bagnaninchi, Richard |
| Weller, Andrew McLeod, and Baljean Dhillon. |
| <b>UVR and RPE - The Good, the Bad and the degenerate Macula</b>. |
| <em>PROGRESS IN RETINAL AND EYE RESEARCH</em>, 100, MAY 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.preteyeres.2023.101233">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001186393100001">79</a>] |
| </td> |
| <td> |
| Michele Marro, Laurent Moccozet, and David Vernez. |
| <b>A numerical model for quantifying exposure to natural and |
| artificial light in human health research</b>. |
| <em>COMPUTERS IN BIOLOGY AND MEDICINE</em>, 171, MAR 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.compbiomed.2024.108119">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001189724000001">80</a>] |
| </td> |
| <td> |
| Michael Lonardi, Elisa F. Akansu, Andre Ehrlich, Mauro Mazzola, Christian Pilz, |
| Matthew D. Shupe, Holger Siebert, and Manfred Wendisch. |
| <b>Tethered balloon-borne observations of thermal-infrared |
| irradiance and cooling rate profiles in the Arctic atmospheric boundary |
| layer</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 24(3):1961-1978, FEB 14 |
| 2024. |
| [ <a href="http://dx.doi.org/10.5194/acp-24-1961-2024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001208353200002">81</a>] |
| </td> |
| <td> |
| Fei Xu, Xianqiang He, Palanisamy Shanmugam, Yan Bai, Xuchen Jin, Wencai Cai, |
| Difeng Wang, Fang Gong, and Qiankun Zhu. |
| <b>Effects of the Earth curvature on Mie-scattering radiances at |
| high solar-sensor geometries based on Monte Carlo simulations</b>. |
| <em>OPTICS EXPRESS</em>, 32(4):6706-6732, FEB 12 2024. |
| [ <a href="http://dx.doi.org/10.1364/OE.503365">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001170548700001">82</a>] |
| </td> |
| <td> |
| Natasa Sprah, Jaka Potocnik, and Mitja Kosir. |
| <b>The influence of façade colour, glazing area and geometric |
| configuration of urban canyon on the spectral characteristics of daylight</b>. |
| <em>BUILDING AND ENVIRONMENT</em>, 251, MAR 1 2024. |
| [ <a href="http://dx.doi.org/10.1016/j.buildenv.2024.111214">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001325526900008">83</a>] |
| </td> |
| <td> |
| Marie Novotna, Kamil Laska, Klara Cizkova, Ladislav Metelka, and Martin Stanek. |
| <b>Variability of solar UV radiation in the northern mountains of |
| the Czech Republic, 2020-2021</b>. |
| <em>CZECH POLAR REPORTS</em>, 14(1):132-149, 2024. |
| [ <a href="http://dx.doi.org/10.5817/CPR2024-1-8">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001168866100001">84</a>] |
| </td> |
| <td> |
| Andrea Pazmino, Florence Goutail, Sophie Godin-Beekmann, Alain Hauchecorne, |
| Jean-Pierre Pommereau, Martyn P. Chipperfield, Wuhu Feng, Franck Lefevre, |
| Audrey Lecouffe, Michel Van Roozendael, Nis Jepsen, Georg Hansen, Rigel Kivi, |
| Kimberly Strong, and Kaley A. Walker. |
| <b>Trends in polar ozone loss since 1989: potential sign of |
| recovery in the Arctic ozone column</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 23(24):15655-15670, DEC 20 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/acp-23-15655-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001168841700001">85</a>] |
| </td> |
| <td> |
| Marcus Klingebiel, Andre Ehrlich, Elena Ruiz-Donoso, Nils Risse, Imke |
| Schirmacher, Evelyn Jaekel, Michael Schaefer, Kevin Wolf, Mario Mech, Manuel |
| Moser, Christiane Voigt, and Manfred Wendisch. |
| <b>Variability and properties of liquid-dominated clouds over the |
| ice-free and sea-ice-covered Arctic Ocean</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 23(24):15289-15304, DEC 14 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/acp-23-15289-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001119169200001">86</a>] |
| </td> |
| <td> |
| Weiping Shen, Yuhao Jin, Peitong Cong, and Gengying Li. |
| <b>Water environment response of urban water networks in the Pearl |
| River Delta (China) under the influence of typhoon rain events</b>. |
| <em>WATER SUPPLY</em>, 23(12):4840-4854, DEC 2023. |
| [ <a href="http://dx.doi.org/10.2166/ws.2023.321">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001149904500001">87</a>] |
| </td> |
| <td> |
| A. Carpentieri, D. Folini, D. Nerini, S. Pulkkinen, M. Wild, and A. Meyer. |
| <b>Intraday probabilistic forecasts of surface solar radiation with |
| cloud scale-dependent autoregressive advection</b>. |
| <em>APPLIED ENERGY</em>, 351, DEC 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.apenergy.2023.121775">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001130993700001">88</a>] |
| </td> |
| <td> |
| Edgar F. M. Abreu, Paulo Canhoto, and Maria Joao Costa. |
| <b>Prediction of Circumsolar Irradiance and Its Impact on CSP |
| Systems under Clear Skies</b>. |
| <em>ENERGIES</em>, 16(24), DEC 2023. |
| [ <a href="http://dx.doi.org/10.3390/en16247950">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001108853100001">89</a>] |
| </td> |
| <td> |
| Marcin J. Kurowski, Joao Teixeira, Chi Ao, Shannon Brown, Anthony B. Davis, |
| Linda Forster, Kuo-Nung Wang, Matthew Lebsock, Mary Morris, Vivienne Payne, |
| Mark T. Richardson, Richard Roy, David R. Thompson, and Robert C. Wilson. |
| <b>Synthetic Observations of the Planetary Boundary Layer from |
| Space: A Retrieval Observing System Simulation Experiment Framework</b>. |
| <em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, |
| 104(11):E1999-E2022, NOV 2023. |
| [ <a href="http://dx.doi.org/10.1175/BAMS-D-22-0129.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001113766100001">90</a>] |
| </td> |
| <td> |
| Wenxin Li, Yuancheng Huang, Qian Shen, Yue Yao, Wenting Xu, Jiarui Shi, Yuting |
| Zhou, Jinzhi Li, Yuting Zhang, and Hangyu Gao. |
| <b>Assessment of Seven Atmospheric Correction Processors for the |
| Sentinel-2 Multi-Spectral Imager over Lakes in Qinghai Province</b>. |
| <em>REMOTE SENSING</em>, 15(22), NOV 2023. |
| [ <a href="http://dx.doi.org/10.3390/rs15225370">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001161782300001">91</a>] |
| </td> |
| <td> |
| James Barry, Stefanie Meilinger, Klaus Pfeilsticker, Anna Herman-Czezuch, |
| Nicola Kimiaie, Christopher Schirrmeister, Rone Yousif, Tina Buchmann, |
| Johannes Grabenstein, Hartwig Deneke, Jonas Witthuhn, Claudia Emde, Felix |
| Goedde, Bernhard Mayer, Leonhard Scheck, Marion Schroedter-Homscheidt, |
| Philipp Hofbauer, and Matthias Struck. |
| <b>Irradiance and cloud optical properties from solar photovoltaic |
| systems</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(20):4975-5007, OCT 27 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/amt-16-4975-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001099183900001">92</a>] |
| </td> |
| <td> |
| Maryam Anaraki, Mahya Fani, Amir Farbod Shahverdi, and Zahra Sadat Zomorodian. |
| <b>Evaluation of the effects of partition design on circadian |
| daylighting in open-plan offices</b>. |
| <em>SOLAR ENERGY</em>, 264, NOV 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2023.112067">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001134904400018">93</a>] |
| </td> |
| <td> |
| Cheonggil Jin, Minji Kim, Chansol Kim, Yangwon Lee, Kyung-Do Lee, Jae-Hyun Ryu, |
| and Chuluong Choi. |
| <b>Accuracy evaluation of reflectance, normalized difference |
| vegetation index, and normalized difference water index using corrected |
| unmanned aerial vehicle multispectral images by bidirectional reflectance |
| distribution function and solar irradiance</b>. |
| <em>JOURNAL OF APPLIED REMOTE SENSING</em>, 17(4), OCT 1 2023. |
| [ <a href="http://dx.doi.org/10.1117/1.JRS.17.044512">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001107349800001">94</a>] |
| </td> |
| <td> |
| Yun-Bo Lu, Lun-Che Wang, Jiao-Jiao Zhou, Zi-Geng Niu, Ming Zhang, and Wen-Min |
| Qin. |
| <b>Assessment of the high-resolution estimations of global and |
| diffuse solar radiation using WRF-Solar</b>. |
| <em>ADVANCES IN CLIMATE CHANGE RESEARCH</em>, 14(5):720-731, OCT 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.accre.2023.09.009">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001088938200001">95</a>] |
| </td> |
| <td> |
| Sushovan Ghosh, Alok Kumar, Dilip Ganguly, and Sagnik Dey. |
| <b>India's photovoltaic potential amidst air pollution and land |
| constraints</b>. |
| <em>ISCIENCE</em>, 26(10), OCT 20 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.isci.2023.107856">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001088528900001">96</a>] |
| </td> |
| <td> |
| Chen Yuan, Ming Zhang, Lunche Wang, Yingying Ma, and Wei Gong. |
| <b>Influence of aerosol on photosynthetically active radiation |
| under haze conditions</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 311, DEC 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2023.108778">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001080439000001">97</a>] |
| </td> |
| <td> |
| Marco A. C. Potenza and Llorenc Cremonesi. |
| <b>An overview of the optical characterization of free |
| microparticles and their radiative properties</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 311, DEC 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2023.108773">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001079744200005">98</a>] |
| </td> |
| <td> |
| A. R. Lusi, F. Orte, R. Alonso Suarez, R. D'Elia, and E. Wolfram. |
| <b>EVALUATION OF THE HELIOSAT-4 AND MCCLEAR MODELS FOR SOLAR GLOBAL |
| IRRADIATION ESTIMATE AT TWO SITES IN ARGENTINA</b>. |
| <em>ANALES AFA</em>, 34(3):76-81, SEP-DEC 2023. |
| [ <a href="http://dx.doi.org/10.31527/analesafa.2023.34.3.76">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001077841700001">99</a>] |
| </td> |
| <td> |
| Umesh Chandra Dumka, Panagiotis G. Kosmopoulos, Effrosyni Baxevanaki, |
| Dimitris G. Kaskaoutis, Muhammad Nurul Huda, Md Firoz Khan, Muhammad Bilal, |
| Balram Ambade, Sujan Khanal, and Pavel Munshi. |
| <b>Surface Radiative Forcing as a Climate-Change Indicator in North |
| India due to the Combined Effects of Dust and Biomass Burning</b>. |
| <em>FIRE-SWITZERLAND</em>, 6(9), SEP 2023. |
| [ <a href="http://dx.doi.org/10.3390/fire6090365">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001071803700001">100</a>] |
| </td> |
| <td> |
| Dimitra Kouklaki, Stelios Kazadzis, Ioannis-Panagiotis Raptis, Kyriakoula |
| Papachristopoulou, Ilias Fountoulakis, and Kostas Eleftheratos. |
| <b>Photovoltaic Spectral Responsivity and Efficiency under |
| Different Aerosol Conditions</b>. |
| <em>ENERGIES</em>, 16(18), SEP 2023. |
| [ <a href="http://dx.doi.org/10.3390/en16186644">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001168990500001">101</a>] |
| </td> |
| <td> |
| Sophie Rosenburg, Charlotte Lange, Evelyn Jaekel, Michael Schaefer, Andre |
| Ehrlich, and Manfred Wendisch. |
| <b>Retrieval of snow layer and melt pond properties on Arctic sea |
| ice from airborne imaging spectrometer observations</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(16):3915-3930, AUG 24 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/amt-16-3915-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001044289400001">102</a>] |
| </td> |
| <td> |
| Jake J. Gristey, K. Sebastian Schmidt, Hong Chen, Daniel R. Feldman, Bruce C. |
| Kindel, Joshua Mauss, Mathew van den Heever, Maria Z. Hakuba, and Peter |
| Pilewskie. |
| <b>Angular sampling of a monochromatic, wide-field-of-view camera |
| to augment next-generation Earth radiation budget satellite observations</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(15):3609-3630, AUG 8 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/amt-16-3609-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001054967600001">103</a>] |
| </td> |
| <td> |
| Windmanagda Sawadogo, Jan Bliefernicht, Benjamin Fersch, Seyni Salavk, Samuel |
| Guug, Belko Diallo, Kehinde O. Ogunjobi, Guillaume Nakoulma, Michael Tanu, |
| Stefanie Meilinger, and Harald Kunstamann. |
| <b>Hourly global horizontal irradiance over West Africa: A case |
| study of one-year satellite- and reanalysis-derived estimates vs. in situ |
| measurements</b>. |
| <em>RENEWABLE ENERGY</em>, 216, NOV 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.renene.2023.119066">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001119048900001">104</a>] |
| </td> |
| <td> |
| Martin Bachmann and Tobias Storch. |
| <b>First Nighttime Light Spectra by Satellite-By EnMAP</b>. |
| <em>REMOTE SENSING</em>, 15(16), AUG 2023. |
| [ <a href="http://dx.doi.org/10.3390/rs15164025">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001056184000001">105</a>] |
| </td> |
| <td> |
| Stavros-Andreas Logothetis, Christos-Panagiotis Giannaklis, Vasileios |
| Salamalikis, Panagiotis Tzoumanikas, Panagiotis-Ioannis Raptis, Vassilis |
| Amiridis, Kostas Eleftheratos, and Andreas Kazantzidis. |
| <b>Aerosol Optical Properties and Type Retrieval via Machine |
| Learning and an All-Sky Imager</b>. |
| <em>ATMOSPHERE</em>, 14(8), AUG 2023. |
| [ <a href="http://dx.doi.org/10.3390/atmos14081266">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001057252400001">106</a>] |
| </td> |
| <td> |
| Claire Thomas, William Wandji Nyamsi, Antti Arola, Uwe Pfeifroth, Joerg |
| Trentmann, Stephen Dorling, Agustin Laguarda, Milan Fischer, and Alexandr |
| Aculinin. |
| <b>Smart Approaches for Evaluating Photosynthetically Active |
| Radiation at Various Stations Based on MSG Prime Satellite Imagery</b>. |
| <em>ATMOSPHERE</em>, 14(8), AUG 2023. |
| [ <a href="http://dx.doi.org/10.3390/atmos14081259">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001040749400001">107</a>] |
| </td> |
| <td> |
| R. K. Braghiere, Y. Wang, A. Gagne-Landmann, P. G. Brodrick, A. A. Bloom, A. J. |
| Norton, S. Ma, P. Levine, M. Longo, K. Deck, P. Gentine, J. R. Worden, |
| C. Frankenberg, and T. Schneider. |
| <b>The Importance of Hyperspectral Soil Albedo Information for |
| Improving Earth System Model Projections</b>. |
| <em>AGU ADVANCES</em>, 4(4), AUG 2023. |
| [ <a href="http://dx.doi.org/10.1029/2023AV000910">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001041008800001">108</a>] |
| </td> |
| <td> |
| Valerian Hahn, Ralf Meerkoetter, Christiane Voigt, Sonja Gisinger, Daniel |
| Sauer, Valery Catoire, Volker Dreiling, Hugh Coe, Cyrille Flamant, Stefan |
| Kaufmann, Jonas Kleine, Peter Knippertz, Manuel Moser, Philip Rosenberg, Hans |
| Schlager, Alfons Schwarzenboeck, and Jonathan Taylor. |
| <b>Pollution slightly enhances atmospheric cooling by low-level |
| clouds in tropical West Africa</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 23(15):8515-8530, AUG 1 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/acp-23-8515-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001051288500001">109</a>] |
| </td> |
| <td> |
| Dongmei Xu, Xuewei Zhang, Zhiquan Liu, and Feifei Shen. |
| <b>All-sky infrared radiance data assimilation of FY-4A AGRI with |
| different physical parameterizations for the prediction of an extremely heavy |
| rainfall event</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 293, SEP 15 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2023.106898">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001043931400001">110</a>] |
| </td> |
| <td> |
| Yunhui Tan, Quan Wang, and Zhaoyang Zhang. |
| <b>Near-real-time estimation of global horizontal irradiance from |
| Himawari-8 satellite data</b>. |
| <em>RENEWABLE ENERGY</em>, 215, OCT 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.renene.2023.118994">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001022731500001">111</a>] |
| </td> |
| <td> |
| Arka Mitra, Jesse Ray Loveridge, and Larry Di Girolamo. |
| <b>Fusion of MISR Stereo Cloud Heights and Terra-MODIS Thermal |
| Infrared Radiances to Estimate Two-Layered Cloud Properties</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 128(12), JUN 27 |
| 2023. |
| [ <a href="http://dx.doi.org/10.1029/2022JD038135">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001010646600029">112</a>] |
| </td> |
| <td> |
| Raul R. Cordero, Sarah Feron, Edgardo Sepulveda, Alessandro Damiani, Jose |
| Jorquera, Penny M. Rowe, Jorge Carrasco, Juan A. Rayas, Pedro Llanillo, |
| Shelley MacDonell, and Gunther Seckmeyer. |
| <b>Ground-based measurements of the weather-driven sky radiance |
| distribution in the Southern Hemisphere</b>. |
| <em>PLOS ONE</em>, 18(6), JUN 14 2023. |
| [ <a href="http://dx.doi.org/10.1371/journal.pone.0286397">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001025739900001">113</a>] |
| </td> |
| <td> |
| Raul R. Cordero, Sarah Feron, Alessandro Damiani, Edgardo Sepulveda, Jose |
| Jorquera, Alberto Redondas, Gunther Seckmeyer, Jorge Carrasco, Penny Rowe, |
| and Zutao Ouyang. |
| <b>Surface Solar Extremes in the Most Irradiated Region on Earth, |
| Altiplano</b>. |
| <em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, |
| 104(6):E1206-E1221, JUN 2023. |
| [ <a href="http://dx.doi.org/10.1175/BAMS-D-22-0215.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001018197100001">114</a>] |
| </td> |
| <td> |
| Anil Kumar, Panagiotis Kosmopoulos, Yashwant Kashyap, and Rupam Gautam. |
| <b>Rooftop Photovoltaic Energy Production Estimations in India |
| Using Remotely Sensed Data and Methods</b>. |
| <em>REMOTE SENSING</em>, 15(12), JUN 2023. |
| [ <a href="http://dx.doi.org/10.3390/rs15123051">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001003076900001">115</a>] |
| </td> |
| <td> |
| Caoimhe M. Rooney, Natasha E. Batalha, and Mark S. Marley. |
| <b>Spherical Harmonics for the 1D Radiative Transfer Equation. I. |
| Reflected Light</b>. |
| <em>ASTROPHYSICAL JOURNAL</em>, 950(1), JUN 1 2023. |
| [ <a href="http://dx.doi.org/10.3847/1538-4357/acca79">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001014664600001">116</a>] |
| </td> |
| <td> |
| M. Rengel and J. Adamczewski. |
| <b>Radiative transfer and inversion codes for characterizing |
| planetary atmospheres: an overview</b>. |
| <em>FRONTIERS IN ASTRONOMY AND SPACE SCIENCES</em>, 10, MAY 30 2023. |
| [ <a href="http://dx.doi.org/10.3389/fspas.2023.1176740">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001009640900001">117</a>] |
| </td> |
| <td> |
| Manal Yasmine Boudjella, Ahmed Hafid Belbachir, Samy Anis Amine Dib, and |
| Mustapha Meftah. |
| <b>Calculation of surface spectral irradiance using the Geant4 |
| Monte Carlo toolkit</b>. |
| <em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, 248, JUL |
| 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.jastp.2023.106077">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000998369800001">118</a>] |
| </td> |
| <td> |
| A. Laguarda, R. Alonso-Suarez, and G. Abal. |
| <b>Improved estimation of hourly direct normal solar irradiation |
| (DNI) using geostationary satellite visible channel images over moderate |
| albedo areas</b>. |
| <em>SOLAR ENERGY</em>, 259:30-40, JUL 15 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2023.04.042">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001033104700001">119</a>] |
| </td> |
| <td> |
| Aarne Hovi, Daniel Schraik, Nea Kuusinen, Tomas Fabianek, Jan Hanus, Lucie |
| Homolova, Jussi Juola, Petr Lukes, and Miina Rautiainen. |
| <b>Synergistic use of multi- and hyperspectral remote sensing data |
| and airborne LiDAR to retrieve forest floor reflectance</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 293, AUG 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2023.113610">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001001173800001">120</a>] |
| </td> |
| <td> |
| Yifan Zhao, Peng Xue, Cheng Fan, Bojia Li, Nan Zhang, Tao Ma, Jingchao Xie, and |
| Jiaping Liu. |
| <b>Data mining techniques for novel local reference solar |
| irradiance spectra calculations: A case study in Beijing</b>. |
| <em>SOLAR ENERGY</em>, 258:106-117, JUL 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2023.04.057">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000981355600001">121</a>] |
| </td> |
| <td> |
| Sang Seo Park, Yun Gon Lee, and Sun Ju Park. |
| <b>Estimation of Inactivation time for the SARS-CoV-2 virus from |
| the UV biometer in South Korea</b>. |
| <em>AIR QUALITY ATMOSPHERE AND HEALTH</em>, 16(8):1601-1617, AUG 2023. |
| [ <a href="http://dx.doi.org/10.1007/s11869-023-01360-x">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000986194200001">122</a>] |
| </td> |
| <td> |
| Yongbo Zhou, Yubao Liu, and Wei Han. |
| <b>Demonstrating the Potential Impacts of Assimilating <i>FY-4A</i> |
| Visible Radiances on Forecasts of Cloud and Precipitation with a Localized |
| Particle Filter</b>. |
| <em>MONTHLY WEATHER REVIEW</em>, 151(5):1167-1188, MAY 2023. |
| [ <a href="http://dx.doi.org/10.1175/MWR-D-22-0133.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000989186500001">123</a>] |
| </td> |
| <td> |
| Jing Xu, Ming Zhang, Lunche Wang, Jia Sun, and Shiyu Li. |
| <b>Estimation of aerosol and cloud radiative effects on terrestrial |
| net primary productivity over northeast Qinghai-Tibet plateau</b>. |
| <em>ATMOSPHERIC ENVIRONMENT</em>, 305, JUL 15 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2023.119794">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000985320000001">124</a>] |
| </td> |
| <td> |
| Xiang Liu, Julian Frey, Catalina Munteanu, Nicole Still, and Barbara Koch. |
| <b>Mapping tree species diversity in temperate montane forests |
| using Sentinel-1 and Sentinel-2 imagery and topography data</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 292, JUL 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2023.113576">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000976252000001">125</a>] |
| </td> |
| <td> |
| G. H. Bernhard, A. F. Bais, P. J. Aucamp, A. R. Klekociuk, J. B. Liley, and |
| R. L. McKenzie. |
| <b>Stratospheric ozone, UV radiation, and climate interactions</b>. |
| <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 22(5, SI):937-989, |
| MAY 2023. |
| [ <a href="http://dx.doi.org/10.1007/s43630-023-00371-y">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000973756700001">126</a>] |
| </td> |
| <td> |
| Klara Cizkova, Kamil Laska, Ladislav Metelka, and Martin Stanek. |
| <b>Assessment of spectral UV radiation at Marambio Base, Antarctic |
| Peninsula</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 23(8):4617-4636, APR 18 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/acp-23-4617-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000973481500001">127</a>] |
| </td> |
| <td> |
| William Wandji Nyamsi, Yves-Marie Saint-Drenan, Antti Arola, and Lucien Wald. |
| <b>Further validation of the estimates of the downwelling solar |
| radiation at ground level in cloud-free conditions provided by the McClear |
| service: thecase of Sub-Saharan Africa and the Maldives Archipelago</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(7):2001-2036, APR 17 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/amt-16-2001-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000971293700001">128</a>] |
| </td> |
| <td> |
| Hong Chen, K. Sebastian Schmidt, Steven T. Massie, Vikas Nataraja, Matthew S. |
| Norgren, Jake J. Gristey, Graham Feingold, Robert E. Holz, and Hironobu |
| Iwabuchi. |
| <b>The Education and Research 3D Radiative Transfer Toolbox |
| (EaR<SUP>3</SUP>T) - towards the mitigation of 3D bias in airborne and |
| spaceborne passive imagery cloud retrievals</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(7):1971-2000, APR 14 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/amt-16-1971-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000979042400001">129</a>] |
| </td> |
| <td> |
| Xiaoyan Dang, Jun Du, Chao Wang, Fangfang Zhang, Lin Wu, Jiping Liu, Zheng |
| Wang, Xu Yang, and Jingxu Wang. |
| <b>A Hybrid Chlorophyll a Estimation Method for Oligotrophic and |
| Mesotrophic Reservoirs Based on Optical Water Classification</b>. |
| <em>REMOTE SENSING</em>, 15(8), APR 2023. |
| [ <a href="http://dx.doi.org/10.3390/rs15082209">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000972285400001">130</a>] |
| </td> |
| <td> |
| A. Carpentieri, D. Folini, M. Wild, L. Vuilleumier, and A. Meyer. |
| <b>Satellite-derived solar radiation for intra-hour and intra-day |
| applications: Biases and uncertainties by season and altitude</b>. |
| <em>SOLAR ENERGY</em>, 255:274-284, MAY 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2023.03.027">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000946494900001">131</a>] |
| </td> |
| <td> |
| Elion Daniel Hack, Theotonio Pauliquevis, Henrique Melo Jorge Barbosa, |
| Marcia Akemi Yamasoe, Dimitri Klebe, and Alexandre Lima Correia. |
| <b>Precipitable water vapor retrievals using a ground-based |
| infrared sky camera in subtropical South America</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(5):1263-1278, MAR 10 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/amt-16-1263-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000959058700001">132</a>] |
| </td> |
| <td> |
| Gabriel Lopez, Christian A. Gueymard, Jesus Polo, Joaquin Alonso-Montesinos, |
| Aitor Marzo, Nuria Martin-Chivelet, Pablo Ferrada, Martha Isabel |
| Escalona-Llaguno, and Francisco Javier Batlles. |
| <b>Increasing the Resolution and Spectral Range of Measured Direct |
| Irradiance Spectra for PV Applications</b>. |
| <em>REMOTE SENSING</em>, 15(6), MAR 2023. |
| [ <a href="http://dx.doi.org/10.3390/rs15061675">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001254232600001">133</a>] |
| </td> |
| <td> |
| Giuseppe Mancino, Antonio Falciano, Rodolfo Console, and Maria Lucia Trivigno. |
| <b>Comparison between Parametric and Non-Parametric Supervised Land |
| Cover Classifications of Sentinel-2 MSI and Landsat-8 OLI Data</b>. |
| <em>GEOGRAPHIES</em>, 3(1):82-109, MAR 2023. |
| [ <a href="http://dx.doi.org/10.3390/geographies3010005">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000941139400001">134</a>] |
| </td> |
| <td> |
| Javier Montero-Martin, Manuel Anton, Jose Manuel Vaquero, Roberto Roman, Javier |
| Vaquero-Martinez, Alejandro J. P. Aparicio, and Arturo Sanchez-Lorenzo. |
| <b>Reconstruction of daily global solar radiation under all-sky and |
| cloud-free conditions in Badajoz (Spain) since 1929</b>. |
| <em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, 43(8):3523-3537, JUN 30 |
| 2023. |
| [ <a href="http://dx.doi.org/10.1002/joc.8042">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000949140600001">135</a>] |
| </td> |
| <td> |
| Jie Gao, Yi Huang, Yiran Peng, and Jonathon S. Wright. |
| <b>Aerosol Effects on Clear-Sky Shortwave Heating in the Asian |
| Monsoon Tropopause Layer</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 128(4), FEB 27 |
| 2023. |
| [ <a href="http://dx.doi.org/10.1029/2022JD036956">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000953577100001">136</a>] |
| </td> |
| <td> |
| Edgar F. M. Abreu, Christian A. Gueymard, Paulo Canhoto, and Maria Joao Costa. |
| <b>Performance assessment of clear-sky solar irradiance predictions |
| using state-of-the-art radiation models and input atmospheric data from |
| reanalysis or ground measurements</b>. |
| <em>SOLAR ENERGY</em>, 252:309-321, MAR 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2023.01.051">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000926580300001">137</a>] |
| </td> |
| <td> |
| Ziming Wang, Luca Bugliaro, Tina Jurkat-Witschas, Romy Heller, Ulrike |
| Burkhardt, Helmut Ziereis, Georgios Dekoutsidis, Martin Wirth, Silke Gross, |
| Simon Kirschler, Stefan Kaufmann, and Christiane Voigt. |
| <b>Observations of microphysical properties and radiative effects |
| of a contrail cirrus outbreak over the North Atlantic</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 23(3):1941-1961, FEB 6 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/acp-23-1941-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000924585800001">138</a>] |
| </td> |
| <td> |
| Veronika Poertge, Tobias Koelling, Anna Weber, Lea Volkmer, Claudia Emde, |
| Tobias Zinner, Linda Forster, and Bernhard Mayer. |
| <b>High-spatial-resolution retrieval of cloud droplet size |
| distribution from polarized observations of the cloudbow</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(3):645-667, FEB 3 2023. |
| [ <a href="http://dx.doi.org/10.5194/amt-16-645-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000925112500001">139</a>] |
| </td> |
| <td> |
| Yuhang Song, Chengzhi Xing, Cheng Liu, Jinan Lin, Hongyu Wu, Ting Liu, Hua Lin, |
| Chengxin Zhang, Wei Tan, Xiangguang Ji, Haoran Liu, and Qihua Li. |
| <b>Evaluation of transport processes over North China Plain and |
| Yangtze River Delta using MAX-DOAS observations</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 23(3):1803-1824, FEB 2 |
| 2023. |
| [ <a href="http://dx.doi.org/10.5194/acp-23-1803-2023">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000938739500001">140</a>] |
| </td> |
| <td> |
| Michael de Mourgues, Claudia Emde, and Bernhard Mayer. |
| <b>Optimized Wavelength Sampling for Thermal Radiative Transfer in |
| Numerical Weather Prediction Models</b>. |
| <em>ATMOSPHERE</em>, 14(2), FEB 2023. |
| [ <a href="http://dx.doi.org/10.3390/atmos14020332">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000963155800001">141</a>] |
| </td> |
| <td> |
| Maxime Durand and Andrew McLeod. |
| <b>A dataset of global variations in directional solar radiation |
| exposure for ocular research using the libRadtran radiative transfer model</b>. |
| <em>DATA IN BRIEF</em>, 47, APR 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.dib.2023.108926">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000917188700002">142</a>] |
| </td> |
| <td> |
| Emmanuel Ayodele, Chukwuma Okolie, Samuel Akinnusi, Erom Mbu-Ogar, Rose Alani, |
| Olagoke Daramola, and Abdulwaheed Tella. |
| <b>An assessment of the spatio-temporal dynamics of Landsat-derived |
| aerosol concentration in relation with land cover and road networks in the |
| Lagos megacity</b>. |
| <em>ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH</em>, 30(15, |
| SI):43279-43299, MAR 2023. |
| [ <a href="http://dx.doi.org/10.1007/s11356-022-25042-w">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000917151200001">143</a>] |
| </td> |
| <td> |
Birger Bohn and Insa Lohse. | Birger Bohn and Insa Lohse. |
<b>Calibration and evaluation of CCD spectroradiometers for | <b>Optical receiver characterizations and corrections for |
ground-based and airborne measurements of spectral actinic flux densities</b>. | ground-based and airborne measurements of spectral actinic flux densities</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(9):3151--3174, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(2):209-233, JAN 18 |
SEP 1 2017. | 2023. |
[ <a href="http://dx.doi.org/{10.5194/amt-10-3151-2017}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/amt-16-209-2023">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000414393700013">11</a>] | [<a name="WOS:000916513500001">144</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Eric Bruneton. | Andreas Marsing, Ralf Meerkoetter, Romy Heller, Stefan Kaufmann, Tina |
<b>A Qualitative and Quantitative Evaluation of 8 Clear Sky | Jurkat-Witschas, Martina Kraemer, Christian Rolf, and Christiane Voigt. |
Models</b>. | <b>Investigating the radiative effect of Arctic cirrus measured in |
<em>IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS</em>, | situ during the winter 2015-2016</b>. |
23(12):2641--2655, DEC 2017. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 23(1):587-609, JAN 16 2023. |
[ <a href="http://dx.doi.org/{10.1109/TVCG.2016.2622272}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-23-587-2023">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000404803100003">12</a>] | [<a name="WOS:000911317300001">145</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
John Faulkner Burkhart, Arve Kylling, Crystal B. Schaaf, Zhuosen Wang, Wiley | Javier Gorrono, Daniel J. Varon, Itziar Irakulis-Loitxate, and Luis Guanter. |
Bogren, Rune Storvold, Stian Solbo, Christina A. Pedersen, and Sebastian | <b>Understanding the potential of Sentinel-2 for monitoring methane |
Gerland. | point emissions</b>. |
<b>Unmanned aerial system nadir reflectance and MODIS nadir | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 16(1):89-107, JAN 10 2023. |
BRDF-adjusted surface reflectances intercompared over Greenland</b>. | [ <a href="http://dx.doi.org/10.5194/amt-16-89-2023">DOI</a> ] |
<em>CRYOSPHERE</em>, 11(4):1575--1589, JUL 4 2017. | |
[ <a href="http://dx.doi.org/{10.5194/tc-11-1575-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000416266100001">13</a>] | [<a name="WOS:001084497000003">146</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Tim Carlsen, Gerit Birnbaum, Andre Ehrlich, Johannes Freitag, Georg Heygster, | Juan Li, Xuchen Zhan, Zhiqiang Xiao, Hanyu Shi, and Jingyi Jiang. |
Larysa Istomina, Sepp Kipfstuhl, Anais Orsi, Michael Schaefer, and Manfred | <b>Simultaneous Estimation of LAI, PAR, FAPAR, and Surface Albedo |
Wendisch. | at Multiple Spatial Scales From Top-of-Atmosphere Satellite Observations With |
<b>Comparison of different methods to retrieve optical-equivalent | Different Spatial Resolutions</b>. |
snow grain size in central Antarctica</b>. | <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 61, 2023. |
<em>CRYOSPHERE</em>, 11(6):2727--2741, NOV 27 2017. | [ <a href="http://dx.doi.org/10.1109/TGRS.2023.3311539">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/tc-11-2727-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000403093300005">14</a>] | [<a name="WOS:000994834000039">147</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. L. Casado-Rubio, M. A. Revuelta, M. Postigo, I. Martinez-Marco, and | Yuye Huang, Hongqiang Yang, Shilin Tang, Yongming Liu, and Yupeng Liu. |
C. Yague. | <b>An Appraisal of Atmospheric Correction and Inversion Algorithms |
<b>A Postprocessing Methodology for Direct Normal Irradiance | for Mapping High-Resolution Bathymetry Over Coral Reef Waters</b>. |
Forecasting Using Cloud Information and Aerosol Load Forecasts</b>. | <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 61, 2023. |
<em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, | [ <a href="http://dx.doi.org/10.1109/TGRS.2023.3271632">DOI</a> ] |
56(6):1595--1608, JUN 2017. | |
[ <a href="http://dx.doi.org/{10.1175/JAMC-D-16-0297.1}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000402380900004">15</a>] | [<a name="WOS:000925114100001">148</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Chiodo, L. M. Polvani, and M. Previdi. | Enric Valor, Jesus Puchades, Raquel Niclos, Joan Miquel Galve Romero, Oriol |
<b>Large Increase in Incident Shortwave Radiation due to the Ozone | Lacave, and Patricia Puig. |
Hole Offset by High Climatological Albedo over Antarctica</b>. | <b>Determination and Evaluation of Surface Solar Irradiance With |
<em>JOURNAL OF CLIMATE</em>, 30(13):4883--4890, JUL 2017. | the MAGIC-Heliosat Method Adapted to MTSAT-2/Imager and Himawari-8/AHI |
[ <a href="http://dx.doi.org/{10.1175/JCLI-D-16-0842.1}">DOI</a> ] | Sensors</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 61, 2023. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2023.3238180">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000404058300015">16</a>] | [<a name="WOS:000915553400001">149</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Daniel-Eduard Constantin, Alexis Merlaud, Mirela Voiculescu, Carmelia Dragomir, | Anil Kumar, Yashwant Kashyap, and Panagiotis Kosmopoulos. |
Lucian Georgescu, Francois Hendrick, Gaia Pinardi, and Michel Van Roozendael. | <b>Enhancing Solar Energy Forecast Using Multi-Column Convolutional |
<b>Mobile DOAS Observations of Tropospheric NO2 Using an | Neural Network and Multipoint Time Series Approach</b>. |
UltraLight Trike and Flux Calculation</b>. | <em>REMOTE SENSING</em>, 15(1), JAN 2023. |
<em>ATMOSPHERE</em>, 8(4), APR 2017. | [ <a href="http://dx.doi.org/10.3390/rs15010107">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.3390/atmos8040078}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000396128700001">17</a>] | [<a name="WOS:000911082900001">150</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Rosa Delia Garcia, Emilio Cuevas, Omaira Elena Garcia, Ramon Ramos, Pedro | Rosa Delia Garcia, Omaira Elena Garcia, Emilio Cuevas-Agullo, Africa Barreto, |
Miguel Romero-Campos, Fernado de Ory, Victoria Eugenia Cachorro, and Angel | Victoria Eugenia Cachorro, Carlos Marrero, Fernando Almansa, Ramon Ramos, and |
| Mario Po. |
| <b>Spectral Aerosol Radiative Forcing and Efficiency of the La |
| Palma Volcanic Plume over the Izana Observatory</b>. |
| <em>REMOTE SENSING</em>, 15(1), JAN 2023. |
| [ <a href="http://dx.doi.org/10.3390/rs15010173">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000906464100001">151</a>] |
| </td> |
| <td> |
| Wook Lee and Spiridoula Matsika. |
| <b>Mechanistic Aspects of the Effect of Flanking Nucleotide |
| Sequence on CPD Formation and CPD Self-Repair in DNA</b>. |
| <em>JOURNAL OF PHYSICAL CHEMISTRY B</em>, 127(1):18-25, JAN 12 2023. |
| [ <a href="http://dx.doi.org/10.1021/acs.jpcb.2c06680">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000901593100003">152</a>] |
| </td> |
| <td> |
| Yunbo Lu, Lunche Wang, Canming Zhu, Ling Zou, Ming Zhang, Lan Feng, and Qian |
| Cao. |
| <b>Predicting surface solar radiation using a hybrid radiative |
| Transfer-Machine learning model</b>. |
| <em>RENEWABLE & SUSTAINABLE ENERGY REVIEWS</em>, 173, MAR 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.rser.2022.113105">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000896701600002">153</a>] |
| </td> |
| <td> |
| Kevin McCloskey, Sixing Chen, Vincent R. Meijer, Joe Yue-Hei Ng, Geoff Davis, |
| Carl Elkin, Christopher Van Arsdale, and Scott Geraedts. |
| <b>Estimates of broadband upwelling irradiance from GOES-16 ABI</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 285, FEB 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2022.113376">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000896701600005">154</a>] |
| </td> |
| <td> |
| Yichuan Ma, Tao He, Shunlin Liang, Tim R. McVicar, Dalei Hao, Tong Liu, and |
| Bo Jiang. |
| <b>Estimation of fine spatial resolution all-sky surface net |
| shortwave radiation over mountainous terrain from Landsat 8 and Sentinel-2 |
| data</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 285, FEB 1 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2022.113364">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000916068900009">155</a>] |
| </td> |
| <td> |
| Yunbo Lu, Renlan Zhang, Lunche Wang, Xin Su, Ming Zhang, Huaping Li, Shiyu Li, |
| and Jiaojiao Zhou. |
| <b>Prediction of diffuse solar radiation by integrating radiative |
| transfer model and machine-learning techniques</b>. |
| <em>SCIENCE OF THE TOTAL ENVIRONMENT</em>, 859(1), FEB 10 2023. |
| [ <a href="http://dx.doi.org/10.1016/j.scitotenv.2022.160269">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000843578900001">156</a>] |
| </td> |
| <td> |
| Zia Ul Rehman Tahir, Ghulam Murtaza Amjad, Muhammad Hamza, Muhammad Rizwan |
| Shad, Adnan Qamar, Philippe Blanc, Sabtain Abbas, Muhammad Azhar, Muhammad |
| Safyan, Muhammad Abdullah, Muhammad Atif, and Syed Tauqeer Haider. |
| <b>Validating global horizontal irradiance estimated by McClear |
| model under clear-sky and all-sky conditions in Pakistan</b>. |
| <em>ENERGY & ENVIRONMENT</em>, 34(8):3204-3236, DEC 2023. |
| [ <a href="http://dx.doi.org/10.1177/0958305X221118869">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000806891100001">157</a>] |
| </td> |
| <td> |
| Jiale Jiang, Kasper Johansen, Yu-Hsuan Tu, and Matthew F. McCabe. |
| <b>Multi-sensor and multi-platform consistency and interoperability |
| between UAV, Planet CubeSat, Sentinel-2, and Landsat reflectance data</b>. |
| <em>GISCIENCE & REMOTE SENSING</em>, 59(1):936-958, DEC 31 2022. |
| [ <a href="http://dx.doi.org/10.1080/15481603.2022.2083791">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000948838000021">158</a>] |
| </td> |
| <td> |
| A. A. Yanovskiy. |
| <b>Satellite Mapping of the Area Dynamics of Natural Phytocenoses |
| of the Yaselda River Riparian Zone</b>. |
| <em>IZVESTIYA ATMOSPHERIC AND OCEANIC PHYSICS</em>, 58(12):1642-1651, |
| DEC 2022. |
| [ <a href="http://dx.doi.org/10.1134/S000143382212026X">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000902660900001">159</a>] |
| </td> |
| <td> |
| Panagiotis G. Kosmopoulos, Marios T. Mechilis, and Panagiota Kaoura. |
| <b>Solar Energy Production Planning in Antikythera: Adequacy |
| Scenarios and the Effect of the Atmospheric Parameters</b>. |
| <em>ENERGIES</em>, 15(24), DEC 2022. |
| [ <a href="http://dx.doi.org/10.3390/en15249406">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000896155000001">160</a>] |
| </td> |
| <td> |
| Tarinee Khanna, Rasha Shraim, Masa Zarkovic, Michiel van Weele, Jos van Geffen, |
| and Lina Zgaga. |
| <b>Comprehensive Analysis of Seasonal and Geographical Variation in |
| UVB Radiation Relevant for Vitamin D Production in Europe</b>. |
| <em>NUTRIENTS</em>, 14(23), DEC 2022. |
| [ <a href="http://dx.doi.org/10.3390/nu14235189">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000892582600001">161</a>] |
| </td> |
| <td> |
| Linda Forster and Bernhard Mayer. |
| <b>Ice crystal characterization in cirrus clouds III: retrieval of |
| ice crystal shape and roughness from observations of halo displays</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 22(23):15179-15205, NOV 30 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/acp-22-15179-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000901777200004">162</a>] |
| </td> |
| <td> |
| Xin Nie and Qianjun Mao. |
| <b>Error analysis of multi-scale aerosol optical properties in |
| shortwave radiative transfer</b>. |
| <em>INFRARED PHYSICS & TECHNOLOGY</em>, 127, DEC 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.infrared.2022.104462">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000866155700001">163</a>] |
| </td> |
| <td> |
| Huan Yu, Claudia Emde, Arve Kylling, Ben Veihelmann, Bernhard Mayer, Kerstin |
| Stebel, and Michel Van Roozendael. |
| <b>Impact of 3D cloud structures on the atmospheric trace gas |
| products from UV-Vis sounders - Part 2: Impact on NO2 retrieval and |
| mitigation strategies</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 15(19):5743-5768, OCT 12 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/amt-15-5743-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000864259600001">164</a>] |
| </td> |
| <td> |
| Yongbo Zhou, Yubao Liu, Zhaoyang Huo, and Yang Li. |
| <b>A preliminary evaluation of FY-4A visible radiance data |
| assimilation by the WRF (ARW v4.1.1)/DART (Manhattan release v9.8.0)-RTTOV |
| (v12.3) system for a tropical storm case</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 15(19):7397-7420, OCT 5 2022. |
| [ <a href="http://dx.doi.org/10.5194/gmd-15-7397-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000867338500001">165</a>] |
| </td> |
| <td> |
| Matheus T. Silva, Juan Luis Guerrero-Rascado, Alexandre L. Correia, Diego A. |
| Gouveia, and Henrique M. J. Barbosa. |
| <b>On the Sensitivity of a Ground-Based Tropospheric Lidar to |
| Aitken Mode Particles in the Upper Troposphere</b>. |
| <em>REMOTE SENSING</em>, 14(19), OCT 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14194913">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001228776900002">166</a>] |
| </td> |
| <td> |
| Soyeon Park, Sol A. Kang, and No-Wook Park. |
| <b>Spatio-spectral Fusion of Multi-sensor Satellite Images Based on |
| Area-to-point Regression Kriging: An Experiment on the Generation of High |
| Spatial Resolution Red-edge and Short-wave Infrared Bands</b>. |
| <em>KOREAN JOURNAL OF REMOTE SENSING</em>, 38(5, 1):523-533, OCT 2022. |
| [ <a href="http://dx.doi.org/10.7780/kjrs.2022.38.5.1.7">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000853984900001">167</a>] |
| </td> |
| <td> |
| M. Schroedter-Homscheidt, F. Azam, J. Betcke, N. Hanrieder, M. Lefevre, |
| L. Saboret, and Y. M. Saint-Drenan. |
| <b>Surface solar irradiation retrieval from MSG/SEVIRI based on |
| APOLLO Next Generation and HELIOSAT-4 methods</b>. |
| <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 31(6):455-476, 2022. |
| [ <a href="http://dx.doi.org/10.1127/metz/2022/1132">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000851642500001">168</a>] |
| </td> |
| <td> |
| Luca Ruiz Lozano, Ozgur Karatekin, Veronique Dehant, Giancarlo Bellucci, |
| Fabrizio Oliva, Emiliano D'Aversa, Filippo Giacomo Carrozzo, Francesca |
| Altieri, Ian R. Thomas, Yannick Willame, Severine Robert, Ann Carinne |
| Vandaele, Frank Daerden, Bojan Ristic, Manish R. Patel, and Jose Juan |
| Lopez Moreno. |
| <b>Evaluation of the Capability of ExoMars-TGO NOMAD Infrared Nadir |
| Channel for Water Ice Clouds Detection on Mars</b>. |
| <em>REMOTE SENSING</em>, 14(17), SEP 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14174143">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:001114153100001">169</a>] |
| </td> |
| <td> |
| Ram C. Sharma. |
| <b>Dominant Species-Physiognomy-Ecological (DSPE) System for the |
| Classification of Plant Ecological Communities from Remote Sensing Images</b>. |
| <em>ECOLOGIES</em>, 3(3):323-335, SEP 2022. |
| [ <a href="http://dx.doi.org/10.3390/ecologies3030025">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000848617300003">170</a>] |
| </td> |
| <td> |
| R. Spurr, V. Natraj, S. F. Colosimo, J. Stutz, M. Christi, and S. Korkin. |
| <b>VLIDORT-QS: A quasi-spherical vector radiative transfer model</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 291, NOV 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2022.108341">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000838362700001">171</a>] |
| </td> |
| <td> |
| Hua Lin, Chengzhi Xing, Qianqian Hong, Cheng Liu, Xiangguang Ji, Ting Liu, |
| Jinan Lin, Chuan Lu, Wei Tan, Qihua Li, and Haoran Liu. |
| <b>Diagnosis of Ozone Formation Sensitivities in Different Height |
| Layers via MAX-DOAS Observations in Guangzhou</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 127(15), AUG 16 |
| 2022. |
| [ <a href="http://dx.doi.org/10.1029/2022JD036803">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000838179200001">172</a>] |
| </td> |
| <td> |
| Moritz Koelbach, Oliver Hoehn, Kira Rehfeld, Manuel Finkbeiner, James Barry, |
| and Matthias M. May. |
| <b>The annual-hydrogen-yield-climatic-response ratio: evaluating |
| the real-life performance of integrated solar water splitting devices</b>. |
| <em>SUSTAINABLE ENERGY & FUELS</em>, 2022 AUG 3 2022. |
| [ <a href="http://dx.doi.org/10.1039/d2se00561a">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000886646700005">173</a>] |
| </td> |
| <td> |
| Christiane Voigt, Jos Lelieveld, Hans Schlager, Johannes Schneider, Joachim |
| Curtius, Ralf Meerkoetter, Daniel Sauer, Luca Bugliaro, Birger Bohn, John N. |
| Crowley, Thilo Erbertseder, Silke Gross, Valerian Hahn, Qiang Li, Mariano |
| Mertens, Mira L. Poehlker, Andrea Pozzer, Ulrich Schumann, Laura Tomsche, |
| Jonathan Williams, Andreas Zahn, Meinrat Andreae, Stephan Borrmann, Tiziana |
| Braeuer, Raphael Doerich, Andreas Doernbrack, Achim Edtbauer, Lisa Ernle, |
| Horst Fischer, Andreas Giez, Manuel Granzin, Volker Grewe, Hartwig Harder, |
| Martin Heinritzi, Bruna A. Holanda, Patrick Joeckel, Katharina Kaiser, |
| Ovid O. Krueger, Johannes Lucke, Andreas Marsing, Anna Martin, Sigrun |
| Matthes, Christopher Poehlker, Ulrich Poeschl, Simon Reifenberg, Akima |
| Ringsdorf, Monika Scheibe, Ivan Tadic, Marcel Zauner-Wieczorek, Rolf Henke, |
| and Markus Rapp. |
| <b>Cleaner Skies during the COVID-19 Lockdown</b>. |
| <em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, |
| 103(8):E1796-E1827, AUG 2022. |
| [ <a href="http://dx.doi.org/10.1175/BAMS-D-21-0012.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000846400100001">174</a>] |
| </td> |
| <td> |
| Max Nussbaum, Ewan Schafer, Zizung Yoon, Denise Keil, and Enrico Stoll. |
| <b>Spectral Light Curve Simulation for Parameter Estimation from |
| Space Debris</b>. |
| <em>AEROSPACE</em>, 9(8), AUG 2022. |
| [ <a href="http://dx.doi.org/10.3390/aerospace9080403">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000839817000001">175</a>] |
| </td> |
| <td> |
| Fatemeh Foroughnia, Silvia Maria Alfieri, Massimo Menenti, and Roderik |
| Lindenbergh. |
| <b>Evaluation of SAR and Optical Data for Flood Delineation Using |
| Supervised and Unsupervised Classification</b>. |
| <em>REMOTE SENSING</em>, 14(15), AUG 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14153718">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000879667600003">176</a>] |
| </td> |
| <td> |
| Lan Yu, Ming Zhang, Lunche Wang, Wenmin Qin, Daoyang Jiang, and Junli Li. |
| <b>Variability of surface solar radiation under clear skies over |
| Qinghai-Tibet Plateau: Role of aerosols and water vapor</b>. |
| <em>ATMOSPHERIC ENVIRONMENT</em>, 287, OCT 15 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2022.119286">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000828028300005">177</a>] |
| </td> |
| <td> |
| Shanlin Chen, Zhaojian Liang, Su Guo, and Mengying Li. |
| <b>Estimation of high-resolution solar irradiance data using |
| optimized semi-empirical satellite method and GOES-16 imagery</b>. |
| <em>SOLAR ENERGY</em>, 241:404-415, JUL 15 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2022.06.013">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000920411400006">178</a>] |
| </td> |
| <td> |
| Anna Herman-Czezuch, Armelle Zemo Mekeng, Stefanie Meilinger, James Barry, and |
| Nicola Kimiaie. |
| <b>Impact of aerosols on photovoltaic energy production using a |
| spectrally resolved model chain: Case study of southern West Africa</b>. |
| <em>RENEWABLE ENERGY</em>, 194:321-333, JUL 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.renene.2022.04.166">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000833098800001">179</a>] |
| </td> |
| <td> |
| Yuan Le, Mengzhi Hu, Yifu Chen, Qian Yan, Dongfang Zhang, Shuai Li, Xiaohan |
| Zhang, and Lizhe Wang. |
| <b>Investigating the Shallow-Water Bathymetric Capability of |
| Zhuhai-1 Spaceborne Hyperspectral Images Based on ICESat-2 Data and Empirical |
| Approaches: A Case Study in the South China Sea</b>. |
| <em>REMOTE SENSING</em>, 14(14), JUL 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14143406">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000824472000001">180</a>] |
| </td> |
| <td> |
| Yanqun Pan, Simon Belanger, and Yannick Huot. |
| <b>Evaluation of Atmospheric Correction Algorithms over Lakes for |
| High-Resolution Multispectral Imagery: Implications of Adjacency Effect</b>. |
| <em>REMOTE SENSING</em>, 14(13), JUL 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14132979">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000811136400001">181</a>] |
| </td> |
| <td> |
| Jake J. Gristey, Graham Feingold, K. Sebastian Schmidt, and Hong Chen. |
| <b>Influence of Aerosol Embedded in Shallow Cumulus Cloud Fields on |
| the Surface Solar Irradiance</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 127(11), JUN 16 |
| 2022. |
| [ <a href="http://dx.doi.org/10.1029/2022JD036822">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000810476200001">182</a>] |
| </td> |
| <td> |
| Jie Luo, Zhengqiang Li, Chenchong Zhang, Qixing Zhang, Yongming Zhang, Ying |
| Zhang, Gabriele Curci, and Rajan K. Chakrabarty. |
| <b>Regional impacts of black carbon morphologies on shortwave |
| aerosol-radiation interactions: a comparative study between the US and |
| China</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 22(11):7647-7666, JUN 14 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/acp-22-7647-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000809000800001">183</a>] |
| </td> |
| <td> |
| Arve Kylling, Claudia Emde, Huan Yu, Michel van Roozendael, Kerstin Stebel, Ben |
| Veihelmann, and Bernhard Mayer. |
| <b>Impact of 3D cloud structures on the atmospheric trace gas |
| products from UV-Vis sounders - Part 3: Bias estimate using synthetic and |
| observational data</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 15(11):3481-3495, JUN 10 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/amt-15-3481-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000822427600005">184</a>] |
| </td> |
| <td> |
| Ye Song, Xiahou Qi, Wu Jun, Xiong Wei, Cui Fangxiao, and Li Dacheng. |
| <b>Simulation of Land Surface Temperature Inversion for |
| Stratospheric Sensor</b>. |
| <em>ACTA OPTICA SINICA</em>, 42(12), JUN 2022. |
| [ <a href="http://dx.doi.org/10.3788/AOS202242.1201001">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000772075500001">185</a>] |
| </td> |
| <td> |
| R. Chandrasekar, Reetik Kumar Sahu, and C. Balaji. |
| <b>Assimilation of multi-channel radiances in mesoscale models with |
| an ensemble technique to improve track forecasts of Tropical cyclones</b>. |
| <em>JOURNAL OF EARTH SYSTEM SCIENCE</em>, 131(2), JUN 2022. |
| [ <a href="http://dx.doi.org/10.1007/s12040-021-01798-6">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000802158200001">186</a>] |
| </td> |
| <td> |
| Theresa Mieslinger, Bjorn Stevens, Tobias Kolling, Manfred Brath, Martin Wirth, |
| and Stefan A. Buehler. |
| <b>Optically thin clouds in the trades</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 22(10):6879-6898, MAY 30 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/acp-22-6879-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000793274400001">187</a>] |
| </td> |
| <td> |
| Sebastian Becker, Andre Ehrlich, Evelyn Jakel, Tim Carlsen, Michael Schafer, |
| and Manfred Wendisch. |
| <b>Airborne measurements of directional reflectivity over the |
| Arctic marginal sea ice zone</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 15(9):2939-2953, MAY 11 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/amt-15-2939-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000832897200001">188</a>] |
| </td> |
| <td> |
| S. Korkin, E-S Yang, R. Spurr, C. Emde, P. Zhai, N. Krotkov, A. Vasilkov, and |
| A. Lyapustin. |
| <b>Numerical results for polarized light scattering in a spherical |
| atmosphere</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 287, SEP 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2022.108194">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000794750300001">189</a>] |
| </td> |
| <td> |
| Chang Ki Kim, Hyun-Goo Kim, and Yong-Heack Kang. |
| <b>Improved Clear Sky Model from In Situ Observations and Spatial |
| Distribution of Aerosol Optical Depth for Satellite-Derived Solar Irradiance |
| over the Korean Peninsula</b>. |
| <em>REMOTE SENSING</em>, 14(9), MAY 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14092167">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000795742100001">190</a>] |
| </td> |
| <td> |
| Anthony J. Abel, Aaron J. Berliner, Mia Mirkovic, William D. Collins, Adam P. |
| Arkin, and Douglas S. Clark. |
| <b>Photovoltaics-Driven Power Production Can Support Human |
| Exploration on Mars</b>. |
| <em>FRONTIERS IN ASTRONOMY AND SPACE SCIENCES</em>, 9, APR 27 2022. |
| [ <a href="http://dx.doi.org/10.3389/fspas.2022.868519">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000800422100002">191</a>] |
| </td> |
| <td> |
| A. K. Diakite-Kortlever and M. Knoop. |
| <b>Non-image forming potential in urban settings - An approach |
| considering orientation-dependent spectral properties of daylight</b>. |
| <em>ENERGY AND BUILDINGS</em>, 265, JUN 15 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.enbuild.2022.112080">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000913382800002">192</a>] |
| </td> |
| <td> |
| Manuel Nunez, Neal Cantin, Craig Steinberg, Virginie Van Dongen-Vogels, and |
| Scott Bainbridge. |
| <b>Correcting PAR Data from Photovoltaic Quantum Sensors on Remote |
| Weather Stations on the Great Barrier Reef</b>. |
| <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, 39(4):425-448, |
| APR 2022. |
| [ <a href="http://dx.doi.org/10.1175/JTECH-D-21-0095.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000798507300002">193</a>] |
| </td> |
| <td> |
| Bahram Imani and Jafar Jafarzadeh. |
| <b>Investigation of extreme reflections of metal features and salty |
| soils using object oriented Sentinel-2 L1C satellite image processing and SVM |
| classification method Introduction</b>. |
| <em>TEMA-JOURNAL OF LAND USE MOBILITY AND ENVIRONMENT</em>, |
| 15(1):112-124, APR 2022. |
| [ <a href="http://dx.doi.org/10.6092/1970-9870/8232">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000782223000001">194</a>] |
| </td> |
| <td> |
| Kyriakoula Papachristopoulou, Ilias Fountoulakis, Antonis Gkikas, Panagiotis G. |
| Kosmopoulos, Panagiotis T. Nastos, Maria Hatzaki, and Stelios Kazadzis. |
| <b>15-Year Analysis of Direct Effects of Total and Dust Aerosols in |
| Solar Radiation/Energy over the Mediterranean Basin</b>. |
| <em>REMOTE SENSING</em>, 14(7), APR 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14071535">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000763642800016">195</a>] |
| </td> |
| <td> |
| Jaromir Petrzala. |
| <b>Assessment of Influence of Urban Aerosol Vertical Profile on |
| Clear-Sky Diffuse Radiance Pattern</b>. |
| <em>JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME</em>, |
| 144(2), APR 1 2022. |
| [ <a href="http://dx.doi.org/10.1115/1.4053259">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000777486900001">196</a>] |
| </td> |
| <td> |
| Luca Bugliaro, Dennis Piontek, Stephan Kox, Marius Schmidl, Bernhard Mayer, |
| Richard Mueller, Margarita Vazquez-Navarro, Daniel M. Peters, Roy G. |
| Grainger, Josef Gasteiger, and Jayanta Kar. |
| <b>VADUGS: a neural network for the remote sensing of volcanic ash |
| with MSG/SEVIRI trained with synthetic thermal satellite observations |
| simulated with a radiative transfer model</b>. |
| <em>NATURAL HAZARDS AND EARTH SYSTEM SCIENCES</em>, 22(3):1029-1054, |
| MAR 30 2022. |
| [ <a href="http://dx.doi.org/10.5194/nhess-22-1029-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000773389200001">197</a>] |
| </td> |
| <td> |
| Gerrit Kuhlmann, Ka Lok Chan, Sebastian Donner, Ying Zhu, Marc Schwaerzel, |
| Steffen Doerner, Jia Chen, Andreas Hueni, Duc Hai Nguyen, Alexander Damm, |
| Annette Schuett, Florian Dietrich, Dominik Brunner, Cheng Liu, Brigitte |
| Buchmann, Thomas Wagner, and Mark Wenig. |
| <b>Mapping the spatial distribution of NO<sub>2</sub> with in situ |
| and remote sensing instruments during the Munich NO<sub>2</sub> imaging |
| campaign</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 15(6):1609-1629, MAR 21 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/amt-15-1609-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000798668300001">198</a>] |
| </td> |
| <td> |
| Bastian Buman, Andreas Hueni, Roberto Colombo, Sergio Cogliati, Marco Celesti, |
| Tommaso Julitta, Andreas Burkart, Bastian Siegmann, Uwe Rascher, Matthias |
| Drusch, and Alexander Damm. |
| <b>Towards consistent assessments of in situ radiometric |
| measurements for the validation of fluorescence satellite missions</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 274, JUN 1 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2022.112984">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000772662900001">199</a>] |
| </td> |
| <td> |
| Claudia Emde, Huan Yu, Arve Kylling, Michel van Roozendael, Kerstin Stebel, Ben |
| Veihelmann, and Bernhard Mayer. |
| <b>Impact of 3D cloud structures on the atmospheric trace gas |
| products from UV-Vis sounders - Part 1: Synthetic dataset for validation of |
| trace gas retrieval algorithms</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 15(5):1587-1608, MAR 18 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/amt-15-1587-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000791777600001">200</a>] |
| </td> |
| <td> |
| Hongyuan Wang, Bingwen Wang, Shaochong Wu, Zhen Liao, and Yunzhao Zang. |
| <b>Daytime all-sky radiance distribution pattern for near-earth |
| space SWIR stellar navigation</b>. |
| <em>INFRARED PHYSICS & TECHNOLOGY</em>, 123, JUN 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.infrared.2022.104121">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000772194900001">201</a>] |
| </td> |
| <td> |
| Richard Mueller and Uwe Pfeifroth. |
| <b>Remote sensing of solar surface radiation - a reflection of |
| concepts, applications and input data based on experience with the effective |
| cloud albedo</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 15(5):1537-1561, MAR 17 |
| 2022. |
| [ <a href="http://dx.doi.org/10.5194/amt-15-1537-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000766000200001">202</a>] |
| </td> |
| <td> |
| T. Matthew Robson, Marta Pieriste, Maxime Durand, Titta K. Kotilainen, and |
| Pedro J. Aphalo. |
| <b>The benefits of informed management of sunlight in production |
| greenhouses and polytunnels</b>. |
| <em>PLANTS PEOPLE PLANET</em>, 4(4):314-325, JUL 2022. |
| [ <a href="http://dx.doi.org/10.1002/ppp3.10258">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000771295400001">203</a>] |
| </td> |
| <td> |
| Ilias Fountoulakis, Kyriakoula Papachristopoulou, Emmanouil Proestakis, |
| Vassilis Amiridis, Charalampos Kontoes, and Stelios Kazadzis. |
| <b>Effect of Aerosol Vertical Distribution on the Modeling of Solar |
| Radiation</b>. |
| <em>REMOTE SENSING</em>, 14(5), MAR 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14051143">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000771212700001">204</a>] |
| </td> |
| <td> |
| Aleksander Pietruczuk, Alnilam Fernandes, Artur Szkop, and Janusz Krzyscin. |
| <b>Impact of Vertical Profiles of Aerosols on the Photolysis Rates |
| in the Lower Troposphere from the Synergy of Photometer and Ceilometer |
| Measurements in Raciborz, Poland, for the Period 2015-2020</b>. |
| <em>REMOTE SENSING</em>, 14(5), MAR 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14051057">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000763323000001">205</a>] |
| </td> |
| <td> |
| Victoria Eugenia Cachorro, Juan Carlos Antuna-Sanchez, and Angel Maximo de |
| Frutos. |
| <b>SSolar-GOA v1.0: a simple, fast, and accurate Spectral SOLAR |
| radiative transfer model for clear skies</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 15(4):1689-1712, FEB 25 2022. |
| [ <a href="http://dx.doi.org/10.5194/gmd-15-1689-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000761269800003">206</a>] |
| </td> |
| <td> |
| Huifen Luo and Junlin Wu. |
| <b>An Assessment of the Suitability of Sentinel-2 Data for |
| Identifying Burn Severity in Areas of Low Vegetation</b>. |
| <em>JOURNAL OF THE INDIAN SOCIETY OF REMOTE SENSING</em>, |
| 50(6):1135-1144, JUN 2022. |
| [ <a href="http://dx.doi.org/10.1007/s12524-022-01518-7">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000760051000004">207</a>] |
| </td> |
| <td> |
| Germar H. Bernhard, Richard L. McKenzie, Kathleen Lantz, and Scott Stierle. |
| <b>Updated analysis of data from Palmer Station, Antarctica (64° |
| S), and San Diego, California (32° N), confirms large effect of the |
| Antarctic ozone hole on UV radiation</b>. |
| <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 21(3):373-384, MAR |
| 2022. |
| [ <a href="http://dx.doi.org/10.1007/s43630-022-00178-3">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000755332100001">208</a>] |
| </td> |
| <td> |
| Umesh Chandra Dumka, Panagiotis G. Kosmopoulos, Piyushkumar N. Patel, and Rahul |
| Sheoran. |
| <b>Can Forest Fires Be an Important Factor in the Reduction in |
| Solar Power Production in India?</b> |
| <em>REMOTE SENSING</em>, 14(3), FEB 2022. |
| [ <a href="http://dx.doi.org/10.3390/rs14030549">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000774322900001">209</a>] |
| </td> |
| <td> |
| Khuong H. Tran, Hankui K. Zhang, John T. McMaine, Xiaoyang Zhang, and Dong Luo. |
| <b>10 m crop type mapping using Sentinel-2 reflectance and 30 m |
| cropland data layer product</b>. |
| <em>INTERNATIONAL JOURNAL OF APPLIED EARTH OBSERVATION AND |
| GEOINFORMATION</em>, 107, MAR 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.jag.2022.102692">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000746700700006">210</a>] |
| </td> |
| <td> |
| Raul R. Cordero, Sarah Feron, Alessandro Damiani, Alberto Redondas, Jorge |
| Carrasco, Edgardo Sepulveda, Jose Jorquera, Francisco Fernandoy, Pedro |
| Llanillo, Penny M. Rowe, and Gunther Seckmeyer. |
| <b>Persistent extreme ultraviolet irradiance in Antarctica despite |
| the ozone recovery onset</b>. |
| <em>SCIENTIFIC REPORTS</em>, 12(1), JAN 24 2022. |
| [ <a href="http://dx.doi.org/10.1038/s41598-022-05449-8">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000746412700001">211</a>] |
| </td> |
| <td> |
| Jiandong Wang, Shuxiao Wang, Jiaping Wang, Yang Hua, Chao Liu, Jing Cai, |
| QingCheng Xu, Xiaotang Xu, Shengyao Jiang, Guangjie Zheng, Jingkun Jiang, |
| Runlong Cai, Wei Zhou, Ganzhen Chen, Yuzhi Jin, Qiang Zhang, and Jiming Hao. |
| <b>Significant Contribution of Coarse Black Carbon Particles to |
| Light Absorption in North China Plain</b>. |
| <em>ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS</em>, 9(2):134-139, JAN |
| 20 2022. |
| [ <a href="http://dx.doi.org/10.1021/acs.estlett.1c00953">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000747079800001">212</a>] |
| </td> |
| <td> |
| Africa Barreto, Emilio Cuevas, Rosa D. Garcia, Judit Carrillo, Joseph M. |
| Prospero, Sara Basart, Alberto J. Berjon, Carlos L. Marrero, Yballa |
| Hernandez, Juan Jose Bustos, Slobodan Nickovic, Margarita Yela, and Luka |
| Ilic. |
| <b>Long-term characterisation of the vertical structure of the |
| Saharan Air Layer over the Canary Islands using lidar and radiosonde |
| profiles: implications for radiative and cloud processes over the subtropical |
| Atlantic Ocean</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 22(2):739-763, JAN 18 2022. |
| [ <a href="http://dx.doi.org/10.5194/acp-22-739-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000772629500001">213</a>] |
| </td> |
| <td> |
| Xiaotang Xu, Chao Liu, Jiandong Wang, Yan Yin, and Xijuan Zhu. |
| <b>Long-term multidataset direct aerosol radiative forcing and its |
| efficiencies: Intercomparisons and uncertainties</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 267, APR 1 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2021.105964">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000739109300001">214</a>] |
| </td> |
| <td> |
| Sarah J. Doherty, Pablo E. Saide, Paquita Zuidema, Yohei Shinozuka, Gonzalo A. |
| Ferrada, Hamish Gordon, Marc Mallet, Kerry Meyer, David Painemal, Steven G. |
| Howell, Steffen Freitag, Amie Dobracki, James R. Podolske, Sharon P. Burton, |
| Richard A. Ferrare, Calvin Howes, Pierre Nabat, Gregory R. Carmichael, |
| Arlindo da Silva, Kristina Pistone, Ian Chang, Lan Gao, Robert Wood, and Jens |
| Redemann. |
| <b>Modeled and observed properties related to the direct aerosol |
| radiative effect of biomass burning aerosol over the southeastern Atlantic</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 22(1):1-46, JAN 3 2022. |
| [ <a href="http://dx.doi.org/10.5194/acp-22-1-2022">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000893634400015">215</a>] |
| </td> |
| <td> |
| Adi Vainiger, Omer Shubi, Yoav Y. Schechner, Zhenping Yin, Holger Baars, Birgit |
| Heese, and Dietrich Althausen. |
| <b>ALiDAn: Spatiotemporal and Multiwavelength Atmospheric Lidar |
| Data Augmentation</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 60, 2022. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2022.3201436">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000882844400005">216</a>] |
| </td> |
| <td> |
| V. Anantha Natarajan, M. Sunil Kumar, V. Tamizhazhagan, and R. M. Chevdumoi. |
| <b>PREDICTION OF SOIL PH FROM REMOTE SENSING DATA USING GRADIENT |
| BOOSTED REGRESSION ANALYSIS</b>. |
| <em>JOURNAL OF PHARMACEUTICAL NEGATIVE RESULTS</em>, 13(6):29-36, 2022. |
| [ <a href="http://dx.doi.org/10.47750/pnr.2022.13.S06.005">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000870339900010">217</a>] |
| </td> |
| <td> |
| Yi Zhang, Shunlin Liang, and Tao He. |
| <b>Estimation of Land Surface Downward Shortwave Radiation Using |
| Spectral-Based Convolutional Neural Network Methods: A Case Study From the |
| Visible Infrared Imaging Radiometer Suite Images</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 60, 2022. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2022.3210990">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000791537600006">218</a>] |
| </td> |
| <td> |
| Liang Yuan, Xiaoling Zhang, Yuzhang Che, Xiang'ao Xia, Xuan Liu, Tianliang |
| Zhao, and Minghao Song. |
| <b>Vertical profile and radiative forcing of black carbon in a |
| winter pollution period over Chengdu, China</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 265, JAN 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2021.105896">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000783579800015">219</a>] |
| </td> |
| <td> |
| Jiale Jiang, Qiaofeng Zhang, Wenhui Wang, Yapeng Wu, Hengbiao Zheng, Xia Yao, |
| Yan Zhu, Weixing Cao, and Tao Cheng. |
| <b>MACA: A Relative Radiometric Correction Method for Multiflight |
| Unmanned Aerial Vehicle Images Based on Concurrent Satellite Imagery</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 60, 2022. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2022.3158644">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000788017800005">220</a>] |
| </td> |
| <td> |
| Sun Ju Park, Yun Gon Lee, and Sang Seo Park. |
| <b>Estimation of the SARS-CoV-2 Virus Inactivation Time Using |
| Spectral Ultraviolet Radiation</b>. |
| <em>ATMOSPHERE-KOREA</em>, 32(1):51-60, 2022. |
| [ <a href="http://dx.doi.org/10.14191/Atmos.2022.32.1.051">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000766762800024">221</a>] |
| </td> |
| <td> |
| Jiang Chen, Tao He, and Shunlin Liang. |
| <b>Estimation of Daily All-Wave Surface Net Radiation With |
| Multispectral and Multitemporal Observations From GOES-16 ABI</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 60, 2022. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2022.3140335">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000747829100001">222</a>] |
| </td> |
| <td> |
| Sahar Alwadei, Ashraf Farahat, Moataz Ahmed, and Harry D. Kambezidis. |
| <b>Prediction of Solar Irradiance over the Arabian Peninsula: |
| Satellite Data, Radiative Transfer Model, and Machine Learning Integration |
| Approach</b>. |
| <em>APPLIED SCIENCES-BASEL</em>, 12(2), JAN 2022. |
| [ <a href="http://dx.doi.org/10.3390/app12020717">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000726094900018">223</a>] |
| </td> |
| <td> |
| Yi Zhang, Shunlin Liang, Tao He, Dongdong Wang, Yunyue Yu, and Han Ma. |
| <b>Estimation of Land Surface Incident Shortwave Radiation From |
| Geostationary Advanced Himawari Imager and Advanced Baseline Imager |
| Observations Using an Optimization Method</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, 60, 2022. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2020.3038829">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000753988800006">224</a>] |
| </td> |
| <td> |
| Debayan Paul, Giuseppe De Michele, Behzad Najafi, and Stefano Avesani. |
| <b>Benchmarking clear sky and transposition models for solar |
| irradiance estimation on vertical planes to facilitate glazed facade design</b>. |
| <em>ENERGY AND BUILDINGS</em>, 255, JAN 15 2022. |
| [ <a href="http://dx.doi.org/10.1016/j.enbuild.2021.111622">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000743743000001">225</a>] |
| </td> |
| <td> |
| Frank Baier, Annekatrin Metz-Marconcini, Thomas Esch, and Marion |
| Schroedter-Homscheidt. |
| <b>Impact of higher-resolved satellite-based land cover |
| classificatio on near surface wind speed forecasts</b>. |
| <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 31(2):101-116, 2022. |
| [ <a href="http://dx.doi.org/10.1127/metz/2021/1085">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000650124300002">226</a>] |
| </td> |
| <td> |
| Pramod Kumar Soni, Navin Rajpal, Rajesh Mehta, and Vikash Kumar Mishra. |
| <b>Urban land cover and land use classification using multispectral |
| sentinal-2 imagery</b>. |
| <em>MULTIMEDIA TOOLS AND APPLICATIONS</em>, 81(26):36853-36867, NOV |
| 2022. |
| [ <a href="http://dx.doi.org/10.1007/s11042-021-10991-0">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000651256500001">227</a>] |
| </td> |
| <td> |
| Jiang Chen and Weining Zhu. |
| <b>Comparing Landsat-8 and Sentinel-2 top of atmosphere and surface |
| reflectance in high latitude regions: case study in Alaska</b>. |
| <em>GEOCARTO INTERNATIONAL</em>, 37(20):6052-6071, OCT 18 2022. |
| [ <a href="http://dx.doi.org/10.1080/10106049.2021.1924295">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000783906300007">228</a>] |
| </td> |
| <td> |
| S. Rajakumari, M. Meenambikai, V. Divya, KJ. Sarunjith, and R. Ramesh. |
| <b>Morphological changes in alluvial and coastal plains of |
| Kandaleru river, Andhra Pradesh using RS and GIS</b>. |
| <em>EGYPTIAN JOURNAL OF REMOTE SENSING AND SPACE SCIENCES</em>, 24(3, |
| 2):1071-1081, DEC 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.ejrs.2021.10.008">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000757431900014">229</a>] |
| </td> |
| <td> |
| Clare E. Singer, Ignacio Lopez-Gomez, Xiyue Zhang, and Tapio Schneider. |
| <b>Top-of-Atmosphere Albedo Bias from Neglecting Three-Dimensional |
| Cloud Radiative Effects</b>. |
| <em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 78(12):4053-4069, DEC |
| 2021. |
| [ <a href="http://dx.doi.org/10.1175/JAS-D-21-0032.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000742867300001">230</a>] |
| </td> |
| <td> |
| Changming Yin, Minfeng Xing, Marta Yebra, and Xiangzhuo Liu. |
| <b>Relationships between Burn Severity and Environmental Drivers in |
| the Temperate Coniferous Forest of Northern China</b>. |
| <em>REMOTE SENSING</em>, 13(24), DEC 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13245127">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000735094300001">231</a>] |
| </td> |
| <td> |
| Evelyn Jaekel, Tim Carlsen, Andre Ehrlich, Manfred Wendisch, Michael Schaefer, |
| Sophie Rosenburg, Konstantina Nakoudi, Marco Zanatta, Gerit Birnbaum, Veit |
| Helm, Andreas Herber, Larysa Istomina, Linlu Mei, and Anika Rohde. |
| <b>Measurements and Modeling of Optical-Equivalent Snow Grain Sizes |
| under Arctic Low-Sun Conditions</b>. |
| <em>REMOTE SENSING</em>, 13(23), DEC 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13234904">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000735803200001">232</a>] |
| </td> |
| <td> |
| Tatiana B. Zhuravleva, Ilmir M. Nasrtdinov, Igor B. Konovalov, Nikolai A. |
| Golovushkin, and Matthias Beekmann. |
| <b>Impact of the Atmospheric Photochemical Evolution of the Organic |
| Component of Biomass Burning Aerosol on Its Radiative Forcing Efficiency: A |
| Box Model Analysis</b>. |
| <em>ATMOSPHERE</em>, 12(12), DEC 2021. |
| [ <a href="http://dx.doi.org/10.3390/atmos12121555">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000720995800004">233</a>] |
| </td> |
| <td> |
| Bingwen Wang, Hongyuan Wang, Zhiqiang Yan, Xiang Liu, Wen Kang, and Qianhao |
| Ning. |
| <b>A daytime sky analytical model of the degree of polarization for |
| JHKs bands</b>. |
| <em>INFRARED PHYSICS & TECHNOLOGY</em>, 119, DEC 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.infrared.2021.103960">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000715853600003">234</a>] |
| </td> |
| <td> |
| Romuald Tapimo, Myriam Lazard, Guillaume Lambou Ymeli, and David Yemele. |
| <b>Radiative transfer model for ground surface irradiance |
| estimation: clear sky</b>. |
| <em>JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE |
| AND VISION</em>, 38(11):1640-1646, NOV 1 2021. |
| [ <a href="http://dx.doi.org/10.1364/JOSAA.438775">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000706152600001">235</a>] |
| </td> |
| <td> |
| Marc Schwaerzel, Dominik Brunner, Fabian Jakub, Claudia Emde, Brigitte |
| Buchmann, Alexis Berne, and Gerrit Kuhlmann. |
| <b>Impact of 3D radiative transfer on airborne NO<sub>2</sub> |
| imaging remote sensing over cities with buildings</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 14(10):6469-6482, OCT 8 |
| 2021. |
| [ <a href="http://dx.doi.org/10.5194/amt-14-6469-2021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000706380800038">236</a>] |
| </td> |
| <td> |
| Raul R. Cordero, Sarah Feron, Edgardo Sepulveda, Alessandro Damiani, Juan M. |
| Carrera, Jose Jorquera, Juan A. Alfonso, Rosalino Fuenzalida, Miguel Rivas, |
| Shelley MacDonell, Gunther Seckmeyer, Chenghao Wang, Zutao Ouyang, and Stef |
| Lhermitte. |
| <b>Evaluation of MODIS-derived estimates of the albedo over the |
| Atacama Desert using ground-based spectral measurements</b>. |
| <em>SCIENTIFIC REPORTS</em>, 11(1), OCT 6 2021. |
| [ <a href="http://dx.doi.org/10.1038/s41598-021-98622-4">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000703894400001">237</a>] |
| </td> |
| <td> |
| Jonas Witthuhn, Anja Hunerbein, Florian Filipitsch, Stefan Wacker, Stefanie |
| Meilinger, and Hartwig Deneke. |
| <b>Aerosol properties and aerosol-radiation interactions in |
| clear-sky conditions over Germany</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 21(19):14591-14630, OCT 4 |
| 2021. |
| [ <a href="http://dx.doi.org/10.5194/acp-21-14591-2021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000714657300001">238</a>] |
| </td> |
| <td> |
| Luis A. Reyes Rojas, Italo Moletto-Lobos, Fabio Corradini, Cristian Mattar, |
| Rodrigo Fuster, and Cristian Escobar-Avaria. |
| <b>Determining Actual Evapotranspiration Based on Machine Learning |
| and Sinusoidal Approaches Applied to Thermal High-Resolution Remote Sensing |
| Imagery in a Semi-Arid Ecosystem</b>. |
| <em>REMOTE SENSING</em>, 13(20), OCT 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13204105">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000709470600001">239</a>] |
| </td> |
| <td> |
| Aitor Marzo, Jesus Ballestrin, Joaquin Alonso-Montesinos, Pablo Ferrada, Jesus |
| Polo, Gabriel Lopez, and Javier Barbero. |
| <b>Field Quality Control of Spectral Solar Irradiance Measurements |
| by Comparison with Broadband Measurements</b>. |
| <em>SUSTAINABILITY</em>, 13(19), OCT 2021. |
| [ <a href="http://dx.doi.org/10.3390/su131910585">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000685552600002">240</a>] |
| </td> |
| <td> |
| Song Qing, Tingwei Cui, Quan Lai, Yuhai Bao, Ruixiang Diao, Yalei Yue, and |
| Yanling Hao. |
| <b>Improving remote sensing retrieval of water clarity in complex |
| coastal and inland waters with modified absorption estimation and optical |
| water classification using Sentinel-2 MSI</b>. |
| <em>INTERNATIONAL JOURNAL OF APPLIED EARTH OBSERVATION AND |
| GEOINFORMATION</em>, 102, OCT 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.jag.2021.102377">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000703493000004">241</a>] |
| </td> |
| <td> |
| Huaping Li, Ming Zhang, Lunche Wang, Yingying Ma, Wenmin Qin, and Wei Gong. |
| <b>The effect of aerosol on downward diffuse radiation during |
| winter haze in Wuhan, China</b>. |
| <em>ATMOSPHERIC ENVIRONMENT</em>, 265, NOV 15 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2021.118714">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000695860800001">242</a>] |
| </td> |
| <td> |
| Soma Sugano, Ryo Nitta, Kan Shindo, Akihisa Nomoto, Shu Yoda, Tamaho Shigemura, |
| Masahisa Ishii, and Shin-ichi Tanabe. |
| <b>Spectral irradiance simulation for evaluating light environments |
| for indoor plants</b>. |
| <em>JAPAN ARCHITECTURAL REVIEW</em>, 4(4):649-659, OCT 2021. |
| [ <a href="http://dx.doi.org/10.1002/2475-8876.12246">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000695619200047">243</a>] |
| </td> |
| <td> |
| Desheng Zheng, Christopher Flynn, Razvan I. Stoian, Jiawei Lu, Haimu Cao, David |
| Alexander, and Tomasz S. Tkaczyk. |
| <b>Radiometric and design model for the tunable light-guide image |
| processing snapshot spectrometer (TuLIPSS)</b>. |
| <em>OPTICS EXPRESS</em>, 29(19):30174-30197, SEP 13 2021. |
| [ <a href="http://dx.doi.org/10.1364/OE.435733">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000701470900001">244</a>] |
| </td> |
| <td> |
| Xiangguang Ji, Qihou Hu, Bo Hu, Shuntian Wang, Hanyang Liu, Chengzhi Xing, Hua |
| Lin, and Jinan Lin. |
| <b>Vertical Structure of Air Pollutant Transport Flux as Determined |
| by Ground-Based Remote Sensing Observations in Fen-Wei Plain, China</b>. |
| <em>REMOTE SENSING</em>, 13(18), SEP 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13183664">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000694528000001">245</a>] |
| </td> |
| <td> |
| Bertrand Saulquin. |
| <b>BRDF Estimations and Normalizations of Sentinel 2 Level 2 Data |
| Using a Kalman-Filtering Approach and Comparisons with RadCalNet |
| Measurements</b>. |
| <em>REMOTE SENSING</em>, 13(17), SEP 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13173373">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000696500000006">246</a>] |
| </td> |
| <td> |
| Leonhard Scheck. |
| <b>A neural network based forward operator for visible satellite |
| images and its adjoint</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 274, NOV 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2021.107841">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000687138300001">247</a>] |
| </td> |
| <td> |
| Panagiotis G. Kosmopoulos, Stelios Kazadzis, Alois W. Schmalwieser, Panagiotis |
| Raptis, I, Kyriakoula Papachristopoulou, Ilias Fountoulakis, Akriti Masoom, |
| Alkiviadis F. Bais, Julia Bilbao, Mario Blumthaler, Axel Kreuter, Anna Maria |
| Siani, Kostas Eleftheratos, Chrysanthi Topaloglou, Julian Groebner, Bjorn |
| Johnsen, Tove M. Svendby, Jose Manuel Vilaplana, Lionel Doppler, Ann R. Webb, |
| Marina Khazova, Hugo De Backer, Anu Heikkila, Kaisa Lakkala, Janusz |
| Jaroslawski, Charikleia Meleti, Henri Diemoz, Gregor Huelsen, Barbara Klotz, |
| John Rimmer, and Charalampos Kontoes. |
| <b>Real-time UV index retrieval in Europe using Earth |
| observation-based techniques: system description and quality assessment</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 14(8):5657-5699, AUG 19 |
| 2021. |
| [ <a href="http://dx.doi.org/10.5194/amt-14-5657-2021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000697022000002">248</a>] |
| </td> |
| <td> |
| Muhittin Karaman. |
| <b>Comparison of thresholding methods for shoreline extraction from |
| Sentinel-2 and Landsat-8 imagery: Extreme Lake Salda, track of Mars on |
| Earth</b>. |
| <em>JOURNAL OF ENVIRONMENTAL MANAGEMENT</em>, 298, NOV 15 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.jenvman.2021.113481">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000688405400004">249</a>] |
| </td> |
| <td> |
| Dongdong Wang, Shunlin Liang, Ruohan Li, and Aolin Jia. |
| <b>A synergic study on estimating surface downward shortwave |
| radiation from satellite data</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 264, OCT 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2021.112639">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000681682600001">250</a>] |
| </td> |
| <td> |
| Stefan F. Schreier, Tim Boesch, Andreas Richter, Kezia Lange, Michael Revesz, |
| Philipp Weihs, Mihalis Vrekoussis, and Christoph Lotteraner. |
| <b>Evaluation of UV-visible MAX-DOAS aerosol profiling products by |
| comparison with ceilometer, sun photometer, and in situ observations in |
| Vienna, Austria</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 14(8):5299-5318, AUG 3 |
| 2021. |
| [ <a href="http://dx.doi.org/10.5194/amt-14-5299-2021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000689909600001">251</a>] |
| </td> |
| <td> |
| Umesh Chandra Dumka, Panagiotis G. Kosmopoulos, Shantikumar S. Ningombam, and |
| Akriti Masoom. |
| <b>Impact of Aerosol and Cloud on the Solar Energy Potential over |
| the Central Gangetic Himalayan Region</b>. |
| <em>REMOTE SENSING</em>, 13(16), AUG 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13163248">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000689877700001">252</a>] |
| </td> |
| <td> |
| Dennis Piontek, Luca Bugliaro, Marius Schmidl, Daniel K. Zhou, and Christiane |
| Voigt. |
| <b>The New Volcanic Ash Satellite Retrieval VACOS Using MSG/SEVIRI |
| and Artificial Neural Networks: 1. Development</b>. |
| <em>REMOTE SENSING</em>, 13(16), AUG 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13163112">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000675402300019">253</a>] |
| </td> |
| <td> |
| Xiaoyong Zhuge, Xiaolei Zou, and Yuan Wang. |
| <b>AHI-Derived Daytime Cloud Optical/Microphysical Properties and |
| Their Evaluations With the Collection-6.1 MOD06 Product</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, |
| 59(8):6431-6450, AUG 2021. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2020.3027017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000677578300001">254</a>] |
| </td> |
| <td> |
| Florian Ewald, Silke Gross, Martin Wirth, Julien Delanoe, Stuart Fox, and |
| Bernhard Mayer. |
| <b>Why we need radar, lidar, and solar radiance observations to |
| constrain ice cloud microphysics</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 14(7):5029-5047, JUL 23 |
| 2021. |
| [ <a href="http://dx.doi.org/10.5194/amt-14-5029-2021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000682515100045">255</a>] |
| </td> |
| <td> |
| Yinghui Zhang, Hongliang Fang, Yao Wang, and Sijia Li. |
| <b>Variation of intra-daily instantaneous FAPAR estimated from the |
| geostationary Himawari-8 AHI data</b>. |
| <em>AGRICULTURAL AND FOREST METEOROLOGY</em>, 307, SEP 15 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.agrformet.2021.108535">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000680887700005">256</a>] |
| </td> |
| <td> |
| Rodriguez Yombo Phaka, Alexis Merlaud, Gaia Pinardi, Emmanuel Mahieu, Francois |
| Hendrick, Martina M. Friedrich, Caroline Fayt, Michel Van Roozendael, |
| Buenimio Lomami Djibi, Richard Bopili Mbotia Lepiba, Edmond Phuku Phuati, and |
| Jean-Pierre Mbungu Tsumbu. |
| <b>First Ground-Based DOAS Measurements of NO<sub>2</sub> at |
| Kinshasa and Comparisons with Satellite Observations</b>. |
| <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, |
| 38(7):1291-1304, JUL 2021. |
| [ <a href="http://dx.doi.org/10.1175/JTECH-D-20-0195.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000675922200001">257</a>] |
| </td> |
| <td> |
| Alnilam Fernandes, Aleksander Pietruczuk, Artur Szkop, and Janusz Krzyscin. |
| <b>Aerosol Layering in the Free Troposphere over the Industrial |
| City of Raciborz in Southwest Poland and Its Influence on Surface UV |
| Radiation</b>. |
| <em>ATMOSPHERE</em>, 12(7), JUL 2021. |
| [ <a href="http://dx.doi.org/10.3390/atmos12070812">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000628022800001">258</a>] |
| </td> |
| <td> |
| Mengmeng Cao, Song Qing, Eerdemutu Jin, Yanling Hao, and Wenjing Zhao. |
| <b>A spectral index for the detection of algal blooms using |
| Sentinel-2 Multispectral Instrument (MSI) imagery: a case study of Hulun |
| Lake, China</b>. |
| <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 42(12):4514-4535, JUN |
| 18 2021. |
| [ <a href="http://dx.doi.org/10.1080/01431161.2021.1897186">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000667067100001">259</a>] |
| </td> |
| <td> |
| Ilias Fountoulakis, Panagiotis Kosmopoulos, Kyriakoula Papachristopoulou, |
| Ioannis-Panagiotis Raptis, Rodanthi-Elisavet Mamouri, Argyro Nisantzi, |
| Antonis Gkikas, Jonas Witthuhn, Sebastian Bley, Anna Moustaka, Johannes |
| Buehl, Patric Seifert, Diofantos G. Hadjimitsis, Charalampos Kontoes, and |
| Stelios Kazadzis. |
| <b>Effects of Aerosols and Clouds on the Levels of Surface Solar |
| Radiation and Solar Energy in Cyprus</b>. |
| <em>REMOTE SENSING</em>, 13(12), JUN 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13122319">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000666352500001">260</a>] |
| </td> |
| <td> |
| Clement J. F. Delcourt, Alisha Combee, Brian Izbicki, Michelle C. Mack, Trofim |
| Maximov, Roman Petrov, Brendan M. Rogers, Rebecca C. Scholten, Tatiana A. |
| Shestakova, Dave van Wees, and Sander Veraverbeke. |
| <b>Evaluating the Differenced Normalized Burn Ratio for Assessing |
| Fire Severity Using Sentinel-2 Imagery in Northeast Siberian Larch Forests</b>. |
| <em>REMOTE SENSING</em>, 13(12), JUN 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13122311">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000657306800001">261</a>] |
| </td> |
| <td> |
| Daniel Zawada, Ghislain Franssens, Robert Loughman, Antti Mikkonen, Alexei |
| Rozanov, Claudia Emde, Adam Bourassa, Seth Dueck, Hannakaisa Lindqvist, |
| Didier Ramon, Vladimir Rozanov, Emmanuel Dekemper, Erkki Kyrola, John P. |
| Burrows, Didier Fussen, and Doug Degenstein. |
| <b>Systematic comparison of vectorial spherical radiative transfer |
| models in limb scattering geometry</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 14(5):3953-3972, MAY 28 |
| 2021. |
| [ <a href="http://dx.doi.org/10.5194/amt-14-3953-2021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000655982700004">262</a>] |
| </td> |
| <td> |
| Stefano Pirandola. |
| <b>Satellite quantum communications: Fundamental bounds and |
| practical security</b>. |
| <em>PHYSICAL REVIEW RESEARCH</em>, 3(2), MAY 19 2021. |
| [ <a href="http://dx.doi.org/10.1103/PhysRevResearch.3.023130">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000617946400001">263</a>] |
| </td> |
| <td> |
| Weipeng Xing, Guangyuan Zhang, and Stefan Poslad. |
| <b>Estimation of global horizontal irradiance in China using a deep |
| learning method</b>. |
| <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 42(10):3899-3917, MAY |
| 19 2021. |
| [ <a href="http://dx.doi.org/10.1080/01431161.2021.1887539">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000653621700001">264</a>] |
| </td> |
| <td> |
| Ulrich Schumann, Ian Poll, Roger Teoh, Rainer Koelle, Enrico Spinielli, Jarlath |
| Molloy, George S. Koudis, Robert Baumann, Luca Bugliaro, Marc Stettler, and |
| Christiane Voigt. |
| <b>Air traffic and contrail changes over Europe during COVID-19: a |
| model study</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 21(10):7429-7450, MAY 18 |
| 2021. |
| [ <a href="http://dx.doi.org/10.5194/acp-21-7429-2021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000687161800001">265</a>] |
| </td> |
| <td> |
| Quinten Vanhellemont, Sam Lambrechts, Valentina Savaglia, Bjorn Tytgat, Elie |
| Verleyen, and Wim Vyverman. |
| <b>Towards physical habitat characterisation in the Antarctic Sor |
| Rondane Mountains using satellite remote sensing</b>. |
| <em>REMOTE SENSING APPLICATIONS-SOCIETY AND ENVIRONMENT</em>, 23, AUG |
| 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.rsase.2021.100529">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000662345300001">266</a>] |
| </td> |
| <td> |
| Riyad Mubarak, Holger Schilke, and Gunther Seckmeyer. |
| <b>Improving the Irradiance Data Measured by Silicon-Based |
| Sensors</b>. |
| <em>ENERGIES</em>, 14(10), MAY 2021. |
| [ <a href="http://dx.doi.org/10.3390/en14102766">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000653409200001">267</a>] |
| </td> |
| <td> |
| William Wandji Nyamsi, Philippe Blanc, Dominique Dumortier, Ruben Mouangue, |
| Antti Arola, and Lucien Wald. |
| <b>Using Copernicus Atmosphere Monitoring Service (CAMS) Products |
| to Assess Illuminances at Ground Level under Cloudless Conditions</b>. |
| <em>ATMOSPHERE</em>, 12(5), MAY 2021. |
| [ <a href="http://dx.doi.org/10.3390/atmos12050643">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000656715500005">268</a>] |
| </td> |
| <td> |
| A. Razagui, K. Abdeladim, K. Bouchouicha, N. Bachari, S. Semaoui, and A. Hadj |
| Arab. |
| <b>A new approach to forecast solar irradiances using WRF and |
| libRadtran models, validated with MERRA-2 reanalysis data and pyranometer |
| measures</b>. |
| <em>SOLAR ENERGY</em>, 221:148-161, JUN 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2021.04.024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000652057800009">269</a>] |
| </td> |
| <td> |
| Maelie Coutelier, Daniel Cordier, Benoit Seignovert, Pascal Rannou, Alice |
| Le Gall, Thibaud Cours, Luca Maltagliati, and Sebastien Rodriguez. |
| <b>Distribution and intensity of water ice signature in South |
| Xanadu and Tui Regio</b>. |
| <em>ICARUS</em>, 364, AUG 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.icarus.2021.114464">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000648676100007">270</a>] |
| </td> |
| <td> |
| Tsz Hei Choi, Helen Brindley, N. Ekins-Daukes, and Rodrigo Escobar. |
| <b>Developing automated methods to estimate spectrally resolved |
| direct normal irradiance for solar energy applications</b>. |
| <em>RENEWABLE ENERGY</em>, 173:1070-1086, AUG 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.renene.2021.03.127">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000643255100001">271</a>] |
| </td> |
| <td> |
| Terje Christensen, Bjorn J. Johnsen, and Ellen M. Bruzell. |
| <b>Violet-blue light exposure of the skin: is there need for |
| protection?</b> |
| <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 20(5):615-625, MAY |
| 2021. |
| [ <a href="http://dx.doi.org/10.1007/s43630-021-00043-9">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000663405200006">272</a>] |
| </td> |
| <td> |
| Bingwen Wang, Hongyuan Wang, Xiaonan Mao, Xiang Liu, Zhiqiang Yan, and |
| Shaochong Wu. |
| <b>An analytical model of zenith radiance under different |
| atmosphere and earth-surface conditions for JHKs bands</b>. |
| <em>INFRARED PHYSICS & TECHNOLOGY</em>, 115, JUN 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.infrared.2021.103729">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000633493700013">273</a>] |
| </td> |
| <td> |
| Han Ma, Shunlin Liang, Hanyu Shi, and Yi Zhang. |
| <b>An Optimization Approach for Estimating Multiple Land Surface |
| and Atmospheric Variables From the Geostationary Advanced Himawari Imager |
| Top-of-Atmosphere Observations</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, |
| 59(4):2888-2908, APR 2021. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2020.3007118">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000644666100001">274</a>] |
| </td> |
| <td> |
| Jinfeng Yan, Shiyi Zhao, Fenzhen Su, Jiaxue Du, Pengfei Feng, and Shixun Zhang. |
| <b>Tidal Flat Extraction and Change Analysis Based on the RF-W |
| Model: A Case Study of Jiaozhou Bay, East China</b>. |
| <em>REMOTE SENSING</em>, 13(8), APR 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13081436">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000632221500001">275</a>] |
| </td> |
| <td> |
| Juan C. Antuna-Sanchez, Roberto Roman, Victoria E. Cachorro, Carlos Toledano, |
| Cesar Lopez, Ramiro Gonzalez, David Mateos, Abel Calle, and Angel M. |
de Frutos. | de Frutos. |
<b>Compatibility of different measurement techniques of global | <b>Relative sky radiance from multi-exposure all-sky camera |
solar radiation and application for long-term observations at Izana | images</b>. |
Observatory</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 14(3):2201-2217, MAR 22 |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(3):731--743, | 2021. |
MAR 7 2017. | [ <a href="http://dx.doi.org/10.5194/amt-14-2201-2021">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/amt-10-731-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000398651000019">18</a>] | [<a name="WOS:000629632100001">276</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ravinesh C. Deo, Nathan Downs, Alfio V. Parisi, Jan F. Adamowski, and John M. | K. D. Lamb, H. Matsui, J. M. Katich, A. E. Perring, J. R. Spackman, |
Quilty. | B. Weinzierl, M. Dollner, and J. P. Schwarz. |
<b>Very short-term reactive forecasting of the solar ultraviolet | <b>Global-scale constraints on light-absorbing anthropogenic iron |
index using an extreme learning machine integrated with the solar zenith | oxide aerosols</b>. |
angle</b>. | <em>NPJ CLIMATE AND ATMOSPHERIC SCIENCE</em>, 4(1), MAR 12 2021. |
<em>ENVIRONMENTAL RESEARCH</em>, 155:141--166, MAY 2017. | [ <a href="http://dx.doi.org/10.1038/s41612-021-00171-0">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.envres.2017.01.035}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000401103400003">19</a>] | [<a name="WOS:000636790300007">277</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Theano Drosoglou, Alkiviadis F. Bais, Irene Zyrichidou, Natalia Kouremeti, | P. Weihs, J. Laimighofer, H. Formayer, and M. Olefs. |
Anastasia Poupkou, Natalia Liora, Christos Giannaros, Maria Elissavet | <b>Influence of snow making on albedo and local radiative forcing |
Koukouli, Dimitris Balis, and Dimitrios Melas. | in an alpine area</b>. |
<b>Comparisons of ground-based tropospheric NO2 MAX-DOAS | <em>ATMOSPHERIC RESEARCH</em>, 255, JUN 15 2021. |
measurements to satellite observations with the aid of an air quality model | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2020.105448">DOI</a> ] |
over the Thessaloniki area, Greece</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(9):5829--5849, | |
MAY 11 2017. | |
[ <a href="http://dx.doi.org/{10.5194/acp-17-5829-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000409123500001">20</a>] | [<a name="WOS:000640987800015">278</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Andre Ehrlich, Eike Bierwirth, Larysa Istomina, and Manfred Wendisch. | Matheus Henrique Tavares, Regina Camara Lins, Tristan Harmel, Carlos Ruberto |
<b>Combined retrieval of Arctic liquid water cloud and surface | Fragoso Jr, Jean-Michel Martinez, and David Motta-Marques. |
snow properties using airborne spectral solar remote sensing</b>. | <b>Atmospheric and sunglint correction for retrieving |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(9):3215--3230, | chlorophyll-<i>a</i> in a productive tropical estuarine-lagoon system using |
SEP 4 2017. | Sentinel-2 MSI imagery</b>. |
[ <a href="http://dx.doi.org/{10.5194/amt-10-3215-2017}">DOI</a> ] | <em>ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING</em>, |
| 174:215-236, APR 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.isprsjprs.2021.01.021">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000412231200109">21</a>] | [<a name="WOS:000618694800001">279</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Claudia Emde, Robert Buras-Schnell, Michael Sterzik, and Stefano Bagnulo. | Ines Sanz-Morere, Sebastian D. Eastham, Florian Allroggen, Raymond L. Speth, |
<b>Influence of aerosols, clouds, and sunglint on polarization | and Steven R. H. Barrett. |
spectra of Earthshine</b>. | <b>Impacts of multi-layer overlap on contrail radiative forcing</b>. |
<em>ASTRONOMY & ASTROPHYSICS</em>, 605, SEP 2017. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 21(3):1649-1681, FEB 9 |
[ <a href="http://dx.doi.org/{10.1051/0004-6361/201629948}">DOI</a> ] | 2021. |
| [ <a href="http://dx.doi.org/10.5194/acp-21-1649-2021">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000404453100002">22</a>] | [<a name="WOS:000624439700001">280</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Stefano Federico, Rosa Claudia Torcasio, Paolo Sano, Daniele Casella, Monica | Gillian S. L. Rowan and Margaret Kalacska. |
Campanelli, Jan Fokke Meirink, Ping Wang, Stefania Vergari, Henri Diemoz, and | <b>A Review of Remote Sensing of Submerged Aquatic Vegetation for |
Stefano Dietrich. | Non-Specialists</b>. |
<b>Comparison of hourly surface downwelling solar radiation | <em>REMOTE SENSING</em>, 13(4), FEB 2021. |
estimated from MSG-SEVIRI and forecast by the RAMS model with pyranometers | [ <a href="http://dx.doi.org/10.3390/rs13040623">DOI</a> ] |
over Italy</b>. | |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(6):2337--2352, | |
JUN 27 2017. | |
[ <a href="http://dx.doi.org/{10.5194/amt-10-2337-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000395168200001">23</a>] | [<a name="WOS:000624673500001">281</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Fernando Almansa, Emilio Cuevas, Benjamin Torres, Africa Barreto, Rosa D. | Soi Ahn, Joon-Bum Jee, Kyu-Tae Lee, and Hyun-Jong Oh. |
Garcia, Victoria E. Cachorro, Angel M. de Frutos, Cesar Lopez, and Ramon | <b>Enhanced Accuracy of Airborne Volcanic Ash Detection Using the |
Ramos. | GEOKOMPSAT-2A Satellite</b>. |
<b>A new zenith-looking narrow-band radiometer-based system (ZEN) | <em>SENSORS</em>, 21(4), FEB 2021. |
for dust aerosol optical depth monitoring</b>. | [ <a href="http://dx.doi.org/10.3390/s21041359">DOI</a> ] |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(2):565--579, | |
FEB 20 2017. | |
[ <a href="http://dx.doi.org/{10.5194/amt-10-565-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000405650300001">24</a>] | [<a name="WOS:000624450400001">282</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Linda Forster, Meinhard Seefeldner, Matthias Wiegner, and Bernhard Mayer. | Anca Dabija, Marcin Kluczek, Bogdan Zagajewski, Edwin Raczko, Marlena Kycko, |
<b>Ice crystal characterization in cirrus clouds: a sun-tracking | Ahmed H. Al-Sulttani, Anna Tarda, Lydia Pineda, and Jordi Corbera. |
camera system and automated detection algorithm for halo displays</b>. | <b>Comparison of Support Vector Machines and Random Forests for |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(7):2499--2516, | Corine Land Cover Mapping</b>. |
JUL 17 2017. | <em>REMOTE SENSING</em>, 13(4), FEB 2021. |
[ <a href="http://dx.doi.org/{10.5194/amt-10-2499-2017}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3390/rs13040777">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000622118000001">283</a>] |
| </td> |
| <td> |
| Ioannis-Panagiotis Raptis, Kostas Eleftheratos, Stelios Kazadzis, Panagiotis |
| Kosmopoulos, Kyriakoula Papachristopoulou, and Stavros Solomos. |
| <b>The Combined Effect of Ozone and Aerosols on Erythemal |
| Irradiance in an Extremely Low Ozone Event during May 2020</b>. |
| <em>ATMOSPHERE</em>, 12(2), FEB 2021. |
| [ <a href="http://dx.doi.org/10.3390/atmos12020145">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000615466700001">284</a>] |
| </td> |
| <td> |
| Rosa Delia Garcia, Emilio Cuevas, Victoria Eugenia Cachorro, Omaira E. Garcia, |
| Africa Barreto, A. Fernando Almansa, Pedro M. Romero-Campos, Ramon Ramos, |
| Mario Po, Kees Hoogendijk, and Jochen Gross. |
| <b>Water Vapor Retrievals from Spectral Direct Irradiance Measured |
| with an EKO MS-711 Spectroradiometer-Intercomparison with Other Techniques</b>. |
| <em>REMOTE SENSING</em>, 13(3), FEB 2021. |
| [ <a href="http://dx.doi.org/10.3390/rs13030350">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000614617700137">285</a>] |
| </td> |
| <td> |
| Yi-Ning Shi, Jun Yang, and Fuzhong Weng. |
| <b>Discrete Ordinate Adding Method (DOAM), a new solver for |
| Advanced Radiative transfer Modeling System (ARMS)</b>. |
| <em>OPTICS EXPRESS</em>, 29(3):4700-4720, FEB 1 2021. |
| [ <a href="http://dx.doi.org/10.1364/OE.417153">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000612716100001">286</a>] |
| </td> |
| <td> |
| Kelvin Tsz Hei Choi and Helen Brindley. |
| <b>COVID-19 lockdown air quality change implications for solar |
| energy generation over China</b>. |
| <em>ENVIRONMENTAL RESEARCH LETTERS</em>, 16(2), FEB 2021. |
| [ <a href="http://dx.doi.org/10.1088/1748-9326/abd42f">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000652555600001">287</a>] |
| </td> |
| <td> |
| Corinna Kloss, Gwenael Berthet, Pasquale Sellitto, Felix Ploeger, Ghassan Taha, |
| Mariam Tidiga, Maxim Eremenko, Adriana Bossolasco, Fabrice Jegou, |
| Jean-Baptiste Renard, and Bernard Legras. |
| <b>Stratospheric aerosol layer perturbation caused by the 2019 |
| Raikoke and Ulawun eruptions and their radiative forcing</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 21(1):535-560, JAN 15 2021. |
| [ <a href="http://dx.doi.org/10.5194/acp-21-535-2021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000598164900004">288</a>] |
| </td> |
| <td> |
| Ming Zhang, Shikuan Jin, Yingying Ma, Ruonan Fan, Lunche Wang, Wei Gong, and |
| Boming Liu. |
| <b>Haze events at different levels in winters: A comprehensive |
| study of meteorological factors, Aerosol characteristics and direct radiative |
| forcing in megacities of north and central China</b>. |
| <em>ATMOSPHERIC ENVIRONMENT</em>, 245, JAN 15 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2020.118056">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000594097000008">289</a>] |
| </td> |
| <td> |
| Lan Yu, Ming Zhang, Lunche Wang, Yunbo Lu, and Junli Li. |
| <b>Effects of aerosols and water vapour on spatial-temporal |
| variations of the clear-sky surface solar radiation in China</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 248, JAN 15 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2020.105162">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000797340000067">290</a>] |
| </td> |
| <td> |
| G. A. Kaloshin and S. A. Shishkin. |
| <b>Testing the MaexPro model on compliance of experimental data</b>. |
| In GG Matvienko and OA Romanovskii, editors, <em>27TH INTERNATIONAL |
| SYMPOSIUM ON ATMOSPHERIC AND OCEAN OPTICS, ATMOSPHERIC PHYSICS</em>, volume 11916 |
| of <em>Proceedings of SPIE</em>. Russian Acad Sci, Siberian Branch, V E Zuev |
| Inst Atmospher Opt; Russian Acad Sci, A M Obukhov Inst Atmospher Phys; |
| Russian Acad Sci, M A Sadovsky Inst Geosphere Dynam; Russian Acad Sci, |
| Siberian Branch, Inst Solar Terrestrial Phys; Russian Acad Sci, Siberian |
| Branch, V M Matrosov Inst Syst Dynam & Control Theory; MDPI, Atmosphere Open |
| Access Journal; Solar Laser System; Photon Journal, 2021. |
| 27th International Symposium on Atmospheric and Ocean Optics, |
| Atmospheric Physics, Moscow, RUSSIA, JUL 05-09, 2021. |
| [ <a href="http://dx.doi.org/10.1117/12.2600893">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000646381900010">291</a>] |
| </td> |
| <td> |
| Linda Forster, Anthony B. Davis, David J. Diner, and Bernhard Mayer. |
| <b>Toward Cloud Tomography from Space Using MISR and MODIS: |
| Locating the “Veiled Core” in Opaque Convective Clouds</b>. |
| <em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 78(1):155-166, JAN 2021. |
| [ <a href="http://dx.doi.org/10.1175/JAS-D-19-0262.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000631196200001">292</a>] |
| </td> |
| <td> |
| Tomasz Galaj, Filip Pietrusiak, Marek Galewski, Rafal Ledzion, and Adam |
| Wojciechowski. |
| <b>Hybrid Integration Method for Sunlight Atmospheric Scattering</b>. |
| <em>IEEE ACCESS</em>, 9:40681-40694, 2021. |
| [ <a href="http://dx.doi.org/10.1109/ACCESS.2021.3063279">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000604625100001">293</a>] |
| </td> |
| <td> |
| Laurent Vuilleumier, Todd Harris, Athanasios Nenes, Claudine Backes, and David |
| Vernez. |
| <b>Developing a UV climatology for public health purposes using |
| satellite data</b>. |
| <em>ENVIRONMENT INTERNATIONAL</em>, 146, JAN 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.envint.2020.106177">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000600314700015">294</a>] |
| </td> |
| <td> |
| Ming Zhang, Ruonan Fan, Yingying Ma, Wei Gong, and Yifan Shi. |
| <b>Atmospheric aerosol and black carbon optical properties and |
| associated radiative forcing under haze conditions</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 259, JAN 2021. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2020.107390">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000571178500001">295</a>] |
| </td> |
| <td> |
| Lina Allesson, Birgit Koehler, Jan-Erik Thrane, Tom Andersen, and Dag O. |
| Hessen. |
| <b>The role of photomineralization forCO<sub>2</sub>emissions in |
| boreal lakes along a gradient of dissolved organic matter</b>. |
| <em>LIMNOLOGY AND OCEANOGRAPHY</em>, 66(1):158-170, JAN 2021. |
| [ <a href="http://dx.doi.org/10.1002/lno.11594">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000587335700013">296</a>] |
| </td> |
| <td> |
| Yifan Shi, Ming Zhang, Yingying Ma, Wei Gong, Shihua Chen, Shikuan Jin, and |
| Boming Liu. |
| <b>A novel simplified method for surface albedo together with a |
| look-up table to get an 18-year assessment of surface aerosol direct |
| radiative effect in Central and East China</b>. |
| <em>ATMOSPHERIC ENVIRONMENT</em>, 243, DEC 15 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2020.117858">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000603294800001">297</a>] |
| </td> |
| <td> |
| Yi Zhang, Shunlin Liang, Tao He, Dongdong Wang, and Yunyue Yu. |
| <b>Estimation of Land Surface Incident and Net Shortwave Radiation |
| from Visible Infrared Imaging Radiometer Suite (VIIRS) Using an Optimization |
| Method</b>. |
| <em>REMOTE SENSING</em>, 12(24), DEC 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12244153">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000603049500001">298</a>] |
| </td> |
| <td> |
| Panagiotis Kosmopoulos, Dimitris Kouroutsidis, Kyriakoula Papachristopoulou, |
| Panagiotis Ioannis Raptis, Akriti Masoom, Yves-Marie Saint-Drenan, Philippe |
| Blanc, Charalampos Kontoes, and Stelios Kazadzis. |
| <b>Short-Term Forecasting of Large-Scale Clouds Impact on |
| Downwelling Surface Solar Irradiation</b>. |
| <em>ENERGIES</em>, 13(24), DEC 2020. |
| [ <a href="http://dx.doi.org/10.3390/en13246555">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000581845700004">299</a>] |
| </td> |
| <td> |
| Carmen Cordoba-Jabonero, Laura Gomez-Martin, Ana del Aguila, Jose |
| Manuel Vilaplana, Maria-Angeles Lopez-Cayuela, and Maria-Paz Zorzano. |
| <b>Cirrus-induced shortwave radiative effects depending on their |
| optical and physical properties: Case studies using simulations and |
| measurements</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 246, DEC 1 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2020.105095">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000567544400001">300</a>] |
| </td> |
| <td> |
| Laurent Vuilleumier, Angela Meyer, Reto Stockli, Stefan Wilbert, and Luis F. |
| Zarzalejo. |
| <b>Accuracy of satellite-derived solar direct irradiance in |
| Southern Spain and Switzerland</b>. |
| <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 41(22):8805-8835, NOV |
| 16 2020. |
| [ <a href="http://dx.doi.org/10.1080/01431161.2020.1783712">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000593733300003">301</a>] |
| </td> |
| <td> |
| Bhrigu Rishi Mishra, Natalie Hanrieder, Anish Modi, and Shireesh B. Kedare. |
| <b>Comparison of three models to estimate the slant path |
| atmospheric attenuation in central receiver solar thermal plants under Indian |
| climatic conditions</b>. |
| <em>SOLAR ENERGY</em>, 211:1042-1052, NOV 15 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2020.10.049">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000592468300001">302</a>] |
| </td> |
| <td> |
| Tim Carlsen, Gerit Birnbaum, Andre Ehrlich, Veit Helm, Evelyn Jaekel, Michael |
| Schaefer, and Manfred Wendisch. |
| <b>Parameterizing anisotropic reflectance of snow surfaces from |
| airborne digital camera observations in Antarctica</b>. |
| <em>CRYOSPHERE</em>, 14(11):3959-3978, NOV 12 2020. |
| [ <a href="http://dx.doi.org/10.5194/tc-14-3959-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000654346100005">303</a>] |
| </td> |
| <td> |
| Rosimeri S. Fraga, Hugo A. S. Guedes, Vitor S. Martins, Cassia B. Caballero, |
| Karen G. P. Mendes, Jander L. F. Monks, and Alice C. Fassoni-Andrade. |
| <b>Empirical modelling of suspended solids in a subtropical lagoon |
| (Brazil) using linear spectral mixing algorithm</b>. |
| <em>REMOTE SENSING APPLICATIONS-SOCIETY AND ENVIRONMENT</em>, 20, NOV |
| 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.rsase.2020.100380">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000594610200001">304</a>] |
| </td> |
| <td> |
| Ruben Barragan, Francisco Molero, Maria Jose Granados-Munoz, Pedro Salvador, |
| Manuel Pujadas, and Begona Artinano. |
| <b>Feasibility of Ceilometers Data to Estimate Radiative Forcing |
| Values: Application to Different Conditions around the COVID-19 Lockdown |
| Period</b>. |
| <em>REMOTE SENSING</em>, 12(22), NOV 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12223699">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000589277000001">305</a>] |
| </td> |
| <td> |
| Changming Yin, Binbin He, Xingwen Quan, Marta Yebra, and Gengke Lai. |
| <b>Remote Sensing of Burn Severity Using Coupled Radiative Transfer |
| Model: A Case Study on Chinese Qinyuan Pine Fires</b>. |
| <em>REMOTE SENSING</em>, 12(21), NOV 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12213590">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000583032000002">306</a>] |
| </td> |
| <td> |
| Manuel Gutleben, Silke Gross, Martin Wirth, and Bernhard Mayer. |
| <b>Radiative effects of long-range-transported Saharan air layers |
| as determined from airborne lidar measurements</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(20):12313-12327, OCT 29 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-12313-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000581781000002">307</a>] |
| </td> |
| <td> |
| Li Xie, Knut Asbjorn Solhaug, You Song, Bjorn Johnsen, Jorunn Elisabeth Olsen, |
| and Knut Erik Tollefsen. |
| <b>Effects of artificial ultraviolet B radiation on the |
| macrophyte<i>Lemna minor:</i>a conceptual study for toxicity pathway |
| characterization</b>. |
| <em>PLANTA</em>, 252(5), OCT 14 2020. |
| [ <a href="http://dx.doi.org/10.1007/s00425-020-03482-3">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000577752100001">308</a>] |
| </td> |
| <td> |
| Alois W. Schmalwieser. |
| <b>Possibilities to estimate the personal UV radiation exposure |
| from ambient UV radiation measurements</b>. |
| <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 19(10):1249-1261, |
| OCT 1 2020. |
| [ <a href="http://dx.doi.org/10.1039/d0pp00182a">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000582854500001">309</a>] |
| </td> |
| <td> |
| Natalie Hanrieder, Abdellatif Ghennioui, Stefan Wilbert, Manajit Sengupta, and |
| Luis F. Zarzalejo. |
| <b>AATTENUATION-The Atmospheric Attenuation Model for CSP Tower |
| Plants: A Look-Up Table for Operational Implementation</b>. |
| <em>ENERGIES</em>, 13(20), OCT 2020. |
| [ <a href="http://dx.doi.org/10.3390/en13205248">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000574830100015">310</a>] |
| </td> |
| <td> |
| Sergey Korkin, Eun-Su Yang, Robert Spurr, Claudia Emde, Nickolay Krotkov, |
| Alexander Vasilkov, David Haffner, Jungbin Mok, and Alexei Lyapustin. |
| <b>Revised and extended benchmark results for Rayleigh scattering |
| of sunlight in spherical atmospheres</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 254, OCT 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2020.107181">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000576665600001">311</a>] |
| </td> |
| <td> |
| Yang Wang, Arnoud Apituley, Alkiviadis Bais, Steffen Beirle, Nuria Benavent, |
| Alexander Borovski, Ilya Bruchkouski, Ka Lok Chan, Sebastian Donner, Theano |
| Drosoglou, Henning Finkenzeller, Martina M. Friedrich, Udo Friess, David |
| Garcia-Nieto, Laura Gomez-Martin, Francois Hendrick, Andreas Hilboll, Junli |
| Jin, Paul Johnston, Theodore K. Koenig, Karin Kreher, Vinod Kumar, Aleksandra |
| Kyuberis, Johannes Lampel, Cheng Liu, Haoran Liu, Jianzhong Ma, Oleg L. |
| Polyansky, Oleg Postylyakov, Richard Querel, Alfonso Saiz-Lopez, Stefan |
| Schmitt, Xin Tian, Jan-Lukas Tirpitz, Michel Van Roozendael, Rainer Volkamer, |
| Zhuoru Wang, Pinhua Xie, Chengzhi Xing, Jin Xu, Margarita Yela, Chengxin |
| Zhang, and Thomas Wagner. |
| <b>Inter-comparison of MAX-DOAS measurements of tropospheric HONO |
| slant column densities and vertical profiles during the CINDI-2 campaign</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(9):5087-5116, SEP 29 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-5087-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000573768800032">312</a>] |
| </td> |
| <td> |
| Pasquale Sellitto, Giuseppe Salerno, Alessandro La Spina, Tommaso Caltabiano, |
| Simona Scollo, Antonella Boselli, Giuseppe Leto, Ricardo Zanmar Sanchez, |
| Suzanne Crumeyrolle, Benjamin Hanoune, and Pierre Briole. |
| <b>Small-scale volcanic aerosols variability, processes and direct |
| radiative impact at Mount Etna during the EPL-RADIO campaigns</b>. |
| <em>SCIENTIFIC REPORTS</em>, 10(1), SEP 16 2020. |
| [ <a href="http://dx.doi.org/10.1038/s41598-020-71635-1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000556177600011">313</a>] |
| </td> |
| <td> |
| T. Kotilainen, P. J. Aphalo, C. C. Brelsford, H. Book, S. Devraj, A. Heikkila, |
| R. Hernandez, A. Kylling, A. Lindfors, V, and T. M. Robson. |
| <b>Patterns in the spectral composition of sunlight and |
| biologically meaningful spectral photon ratios as affected by atmospheric |
| factors</b>. |
| <em>AGRICULTURAL AND FOREST METEOROLOGY</em>, 291, SEP 15 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.agrformet.2020.108041">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000571656500001">314</a>] |
| </td> |
| <td> |
| Nina Crnivec and Bernhard Mayer. |
| <b>The incorporation of the Tripleclouds concept into the |
| δ-Eddington two-stream radiation scheme: solver characterization and its |
| application to shallow cumulus clouds</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(17):10733-10755, SEP 14 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-10733-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000576647500011">315</a>] |
| </td> |
| <td> |
| Manoj K. Mishra, Pradyuman S. Rathore, Arundhati Misra, and Raj Kumar. |
| <b>Atmospheric Correction of Multispectral VNIR Remote Sensing |
| Data: Algorithm and Inter-sensor Comparison of Aerosol and Surface |
| Reflectance Products</b>. |
| <em>EARTH AND SPACE SCIENCE</em>, 7(9), SEP 2020. |
| [ <a href="http://dx.doi.org/10.1029/2019EA000710">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000564455700019">316</a>] |
| </td> |
| <td> |
| Guanghui Huang, Xin Li, Ning Lu, Xufeng Wang, and Tao He. |
| <b>A General Parameterization Scheme for the Estimation of Incident |
| Photosynthetically Active Radiation Under Cloudy Skies</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, |
| 58(9):6255-6265, SEPT 2020. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2020.2976103">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000561346200020">317</a>] |
| </td> |
| <td> |
| Jose Estevez, Jorge Vicent, Juan Pablo Rivera-Caicedo, Pablo Morcillo-Pallares, |
| Francesco Vuolo, Neus Sabater, Gustau Camps-Valls, Jose Moreno, and Jochem |
| Verrelst. |
| <b>Gaussian processes retrieval of LAI from Sentinel-2 |
| top-of-atmosphere radiance data</b>. |
| <em>ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING</em>, |
| 167:289-304, SEP 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.isprsjprs.2020.07.004">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000563039800001">318</a>] |
| </td> |
| <td> |
| Ka Lok Chan, Matthias Wiegner, Jos van Geffen, Isabelle De Smedt, Carlos |
| Alberti, Zhibin Cheng, Sheng Ye, and Mark Wenig. |
| <b>MAX-DOAS measurements of tropospheric NO<sub>2</sub><SUP> |
| </SUP>and HCHO in Munich and the comparison to OMI and TROPOMI satellite |
| observations</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(8):4499-4520, AUG 19 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-4499-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000562951600001">319</a>] |
| </td> |
| <td> |
| Marc Schwaerzel, Claudia Emde, Dominik Brunner, Randulph Morales, Thomas |
| Wagner, Alexis Berne, Brigitte Buchmann, and Gerrit Kuhlmann. |
| <b>Three-dimensional radiative transfer effects on airborne and |
| ground-based trace gas remote sensing</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(8):4277-4293, AUG 14 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-4277-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000568108200001">320</a>] |
| </td> |
| <td> |
| Germar Bernhard and Scott Stierle. |
| <b>Trends of UV Radiation in Antarctica</b>. |
| <em>ATMOSPHERE</em>, 11(8), AUG 2020. |
| [ <a href="http://dx.doi.org/10.3390/atmos11080795">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000556891500001">321</a>] |
| </td> |
| <td> |
| Yuta Nakagawa, Takanori Kodama, Masaki Ishiwatari, Hajime Kawahara, Yasushi |
| Suto, Yoshiyuki O. Takahashi, George L. Hashimoto, Kiyoshi Kuramoto, Kensuke |
| Nakajima, Shin-ichi Takehiro, and Yoshi-Yuki Hayashi. |
| <b>Obliquity of an Earth-like Planet from Frequency Modulation of |
| Its Direct-imaged Lightcurve: Mock Analysis from General Circulation Model |
| Simulation</b>. |
| <em>ASTROPHYSICAL JOURNAL</em>, 898(2), AUG 2020. |
| [ <a href="http://dx.doi.org/10.3847/1538-4357/ab9eb8">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000551268300016">322</a>] |
| </td> |
| <td> |
| Heeyeun Yoon and Soyoun Kim. |
| <b>Detecting abandoned farmland using harmonic analysis and machine |
| learning</b>. |
| <em>ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING</em>, |
| 166:201-212, AUG 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.isprsjprs.2020.05.021">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000551268300030">323</a>] |
| </td> |
| <td> |
| Quinten Vanhellemont. |
| <b>Combined land surface emissivity and temperature estimation from |
| Landsat 8 OLI and TIRS</b>. |
| <em>ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING</em>, |
| 166:390-402, AUG 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.isprsjprs.2020.06.007">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000527314900014">324</a>] |
| </td> |
| <td> |
| Qiao Lu, Chao Liu, Delong Zhao, Chen Zeng, Jing Li, Chunsong Lu, Jiandong Wang, |
| and Bin Zhu. |
| <b>Atmospheric heating rate due to black carbon aerosols: |
| Uncertainties and impact factors</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 240, AUG 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2020.104891">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000556876500003">325</a>] |
| </td> |
| <td> |
| Corinna Kloss, Pasquale Sellitto, Bernard Legras, Jean-Paul Vernier, Fabrice |
| Jegou, M. Venkat Ratnam, B. Suneel Kumar, B. Lakshmi Madhavan, and Gwenael |
| Berthet. |
| <b>Impact of the 2018 Ambae Eruption on the Global Stratospheric |
| Aerosol Layer and Climate</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 125(14), JUL 27 |
| 2020. |
| [ <a href="http://dx.doi.org/10.1029/2020JD032410">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000555400600001">326</a>] |
| </td> |
| <td> |
| Linda Forster, Meinhard Seefeldner, Andreas Baumgartner, Tobias Koelling, and |
| Bernhard Mayer. |
| <b>Ice crystal characterization in cirrus clouds II: radiometric |
| characterization of HaloCam for the quantitative analysis of halo displays</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(7):3977-3991, JUL 23 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-3977-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000551507100001">327</a>] |
| </td> |
| <td> |
| Nicolas Bellouin, Will Davies, Keith P. Shine, Johannes Quaas, Johannes |
| Muelmenstaedt, Piers M. Forster, Chris Smith, Lindsay Lee, Leighton Regayre, |
| Guy Brasseur, Natalia Sudarchikova, Idir Bouarar, Olivier Boucher, and Gunnar |
| Myhre. |
| <b>Radiative forcing of climate change from the Copernicus |
| reanalysis of atmospheric composition</b>. |
| <em>EARTH SYSTEM SCIENCE DATA</em>, 12(3):1649-1677, JUL 16 2020. |
| [ <a href="http://dx.doi.org/10.5194/essd-12-1649-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000540873300010">328</a>] |
| </td> |
| <td> |
| Edgar F. M. Abreu, Paulo Canhoto, and Maria Joao Costa. |
| <b>Development of a clear-sky model to determine circumsolar |
| irradiance using widely available solar radiation data</b>. |
| <em>SOLAR ENERGY</em>, 205:88-101, JUL 15 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2020.05.010">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000550800600004">329</a>] |
| </td> |
| <td> |
| Tobias Donth, Evelyn Jaekel, Andre Ehrlich, Bernd Heinold, Jacob Schacht, |
| Andreas Herber, Marco Zanatta, and Manfred Wendisch. |
| <b>Combining atmospheric and snow radiative transfer models to |
| assess the solar radiative effects of black carbon in the Arctic</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(13):8139-8156, JUL 13 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-8139-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000554479600010">330</a>] |
| </td> |
| <td> |
| Michael F. Sterzik, Stefano Bagnulo, Claudia Emde, and Mihail Manev. |
| <b>The cloudbow of planet Earth observed in polarisation</b>. |
| <em>ASTRONOMY & ASTROPHYSICS</em>, 639, JUL 13 2020. |
| [ <a href="http://dx.doi.org/10.1051/0004-6361/202038270">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000550690200003">331</a>] |
| </td> |
| <td> |
| Steven Compernolle, Tijl Verhoelst, Gaia Pinardi, Jose Granville, Daan Hubert, |
| Arno Keppens, Sander Niemeijer, Bruno Rino, Alkis Bais, Steffen Beirle, |
| Folkert Boersma, John P. Burrows, Isabelle De Smedt, Henk Eskes, Florence |
| Goutail, Francois Hendrick, Alba Lorente, Andrea Pazmino, Ankie Piters, Enno |
| Peters, Jean-Pierre Pommereau, Julia Remmers, Andreas Richter, Jos van |
| Geffen, Michel Van Roozendael, Thomas Wagner, and Jean-Christopher Lambert. |
| <b>Validation of Aura-OMI QA4ECV NO<sub>2</sub> climate data |
| records with ground-based DOAS networks: the role of measurement and |
| comparison uncertainties</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(13):8017-8045, JUL 10 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-8017-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000550593100001">332</a>] |
| </td> |
| <td> |
| Carlos M. Fernandez-Peruchena, Jesus Polo, Luis Martin, and Luis Mazorra. |
| <b>Site-Adaptation of Modeled Solar Radiation Data: The SiteAdapt |
| Procedure</b>. |
| <em>REMOTE SENSING</em>, 12(13), JUL 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12132127">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000537071700005">333</a>] |
| </td> |
| <td> |
| Joseph Del Rocco, Paul D. Bourke, Charles B. Patterson, and Joseph T. Kider. |
| <b>Real-time spectral radiance estimation of hemispherical clear |
| skies with machine learned regression models</b>. |
| <em>SOLAR ENERGY</em>, 204:48-63, JUL 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2020.04.006">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000543686900001">334</a>] |
| </td> |
| <td> |
| Arve Kylling, Hamidreza Ardeshiri, Massimo Cassiani, Anna Solvejg Dinger, |
| Soon-Young Park, Ignacio Pisso, Norbert Schmidbauer, Kerstin Stebel, and |
| Andreas Stohl. |
| <b>Can statistics of turbulent tracer dispersion be inferred from |
| camera observations of SO<sub>2</sub> in the ultraviolet? A modelling study</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(6):3303-3318, JUN 22 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-3303-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000541604300001">335</a>] |
| </td> |
| <td> |
| William Wandji Nyamsi, Antti Lipponen, Arturo Sanchez-Lorenzo, Martin Wild, and |
| Antti Arola. |
| <b>A hybrid method for reconstructing the historical evolution of |
| aerosol optical depth from sunshine duration measurements</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(6):3061-3079, JUN 11 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-3061-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000541507400003">336</a>] |
| </td> |
| <td> |
| Ines Sanz-Morere, Sebastian D. Eastham, Raymond L. Speth, and Steven R. H. |
| Barrett. |
| <b>Reducing Uncertainty in Contrail Radiative Forcing Resulting |
| from Uncertainty in Ice Crystal Properties</b>. |
| <em>ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS</em>, 7(6):371-375, JUN |
| 9 2020. |
| [ <a href="http://dx.doi.org/10.1021/acs.estlett.0c00150">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000590534900006">337</a>] |
| </td> |
| <td> |
| Mares Barekzai and Bernhard Mayer. |
| <b>Broadening of the Cloud Droplet Size Distribution due to Thermal |
| Radiative Cooling: Turbulent Parcel Simulations</b>. |
| <em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 77(6):1993-2010, JUN |
| 2020. |
| [ <a href="http://dx.doi.org/10.1175/JAS-D-18-0349.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000553864600001">338</a>] |
| </td> |
| <td> |
| Akriti Masoom, Panagiotis Kosmopoulos, Yashwant Kashyap, Shashi Kumar, and |
| Ankit Bansal. |
| <b>Rooftop Photovoltaic Energy Production Management in India Using |
| Earth-Observation Data and Modeling Techniques</b>. |
| <em>REMOTE SENSING</em>, 12(12), JUN 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12121921">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000552737900306">339</a>] |
| </td> |
| <td> |
| Jasper de Meester and Tobias Storch. |
| <b>Optimized Performance Parameters for Nighttime Multispectral |
| Satellite Imagery to Analyze Lightings in Urban Areas</b>. |
| <em>SENSORS</em>, 20(11), JUN 2020. |
| [ <a href="http://dx.doi.org/10.3390/s20113313">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000550346400001">340</a>] |
| </td> |
| <td> |
| Leli Zong, Sijia He, Jiting Lian, Qiang Bie, Xiaoyun Wang, Jingru Dong, and |
| Yaowen Xie. |
| <b>Detailed Mapping of Urban Land Use Based on Multi-Source Data: A |
| Case Study of Lanzhou</b>. |
| <em>REMOTE SENSING</em>, 12(12), JUN 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12121987">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000537459600001">341</a>] |
| </td> |
| <td> |
| Margit Aun, Kaisa Lakkala, Ricardo Daniel Sanchez, Eija Asmi, Fernando Nollas, |
| Outi Meinander, Larisa Sogacheva, Veerle De Bock, Antti Arola, Gerrit |
| de Leeuw, Veijo Aaltonen, David Bolsee, Klara M. Cizkova, Alexander Mangold, |
| Ladislav Metelka, Erko Jakobson, T. M. Svendby, Didier Gillotay, and Bert |
| Van Opstal. |
| <b>Solar UV radiation measurements in Marambio, Antarctica, during |
| years 2017-2019</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(10):6037-6054, MAY 25 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-6037-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000537211300003">342</a>] |
| </td> |
| <td> |
| Rosa Delia Garcia-Cabrera, Emilio Cuevas-Agullo, Africa Barreto, Victoria |
| Eugenia Cachorro, Mario Po, Ramon Ramos, and Kees Hoogendijk. |
| <b>Aerosol retrievals from the EKO MS-711 spectral direct |
| irradiance measurements and corrections of the circumsolar radiation</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(5):2601-2621, MAY 20 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-2601-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000535177000002">343</a>] |
| </td> |
| <td> |
| Elena Ruiz-Donoso, Andre Ehrlich, Michael Schaefer, Evelyn Jaekel, Vera |
| Schemann, Susanne Crewell, Mario Mech, Birte Solveig Kulla, Leif-Leonard |
| Kliesch, Roland Neuber, and Manfred Wendisch. |
| <b>Small-scale structure of thermodynamic phase in Arctic |
| mixed-phase clouds observed by airborne remote sensing during a cold air |
| outbreak and a warm air advection event</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(9):5487-5511, MAY 12 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-5487-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000543394000071">344</a>] |
| </td> |
| <td> |
| Antonio Fernando Almansa, Emilio Cuevas, Africa Barreto, Benjamin Torres, |
| Omaira Elena Garcia, Rosa Delia Garcia, Cristian Velasco-Merino, Victoria |
| Eugenia Cachorro, Alberto Berjon, Manuel Mallorquin, Cesar Lopez, Ramon |
| Ramos, Carmen Guirado-Fuentes, Ramon Negrillo, and Angel Maximo de Frutos. |
| <b>Column Integrated Water Vapor and Aerosol Load Characterization |
| with the New ZEN-R52 Radiometer</b>. |
| <em>REMOTE SENSING</em>, 12(9), MAY 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12091424">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000529403500001">345</a>] |
| </td> |
| <td> |
| Kaisa Lakkala, Margit Aun, Ricardo Sanchez, Germar Bernhard, Eija Asmi, Outi |
| Meinander, Fernando Nollas, Gregor Huelsen, Tomi Karppinen, Veijo Aaltonen, |
| Antti Arola, and Gerrit de Leeuw. |
| <b>New continuous total ozone, UV, VIS and PAR measurements at |
| Marambio, 64° S, Antarctica</b>. |
| <em>EARTH SYSTEM SCIENCE DATA</em>, 12(2):947-960, APR 28 2020. |
| [ <a href="http://dx.doi.org/10.5194/essd-12-947-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000528486000001">346</a>] |
| </td> |
| <td> |
| Jorge Vicent, Jochem Verrelst, Neus Sabater, Luis Alonso, Juan Pablo |
| Rivera-Caicedo, Luca Martino, Jordi Munoz-Mari, and Jose Moreno. |
| <b>Comparative analysis of atmospheric radiative transfer models |
| using the Atmospheric Look-up table Generator (ALG) toolbox (version 2.0)</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 13(4):1945-1957, APR 20 2020. |
| [ <a href="http://dx.doi.org/10.5194/gmd-13-1945-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000521948300001">347</a>] |
| </td> |
| <td> |
| Renato Kerches Braghiere, Marcia Akemi Yamasoe, Nilton Manuel Evora do Rosario, |
| Humberto Ribeiro da Rocha, Jose de Souza Nogueira, and Alessandro Carioca |
| de Araujo. |
| <b>Characterization of the radiative impact of aerosols on |
| CO<sub>2</sub> and energy fluxes in the Amazon deforestation arch using |
| artificial neural networks</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(6):3439-3458, MAR 24 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-3439-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000521594400002">348</a>] |
| </td> |
| <td> |
| Bjoern Maronga, Sabine Banzhaf, Cornelia Burmeister, Thomas Esch, Renate |
| Forkel, Dominik Froehlich, Vladimir Fuka, Katrin Frieda Gehrke, Jan Geletic, |
| Sebastian Giersch, Tobias Gronemeier, Guenter Gross, Wieke Heldens, Antti |
| Hellsten, Fabian Hoffmann, Atsushi Inagaki, Eckhard Kadasch, Farah |
| Kanani-Suehring, Klaus Ketelsen, Basit Ali Khan, Christoph Knigge, Helge |
| Knoop, Pavel Krc, Mona Kurppa, Halim Maamari, Andreas Matzarakis, Matthias |
| Mauder, Matthias Pallasch, Dirk Pavlik, Jens Pfafferott, Jaroslav Resler, |
| Sascha Rissmann, Emmanuele Russo, Mohamed Salim, Michael Schrempf, Johannes |
| Schwenkel, Gunther Seckmeyer, Sebastian Schubert, Matthias Suehring, Robert |
| von Tils, Lukas Vollmer, Simon Ward, Bjoern Witha, Hauke Wurps, Julian |
| Zeidler, and Siegfried Raasch. |
| <b>Overview of the PALM model system 6.0</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 13(3):1335-1372, MAR 20 2020. |
| [ <a href="http://dx.doi.org/10.5194/gmd-13-1335-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000525763900026">349</a>] |
| </td> |
| <td> |
| Zhian Sun, Jiangnan Li, Guoping Shi, James Manners, and Jiandong Li. |
| <b>Fast scheme for determination of direct normal irradiance. Part |
| II: Parameterization of circumsolar radiation</b>. |
| <em>SOLAR ENERGY</em>, 199:256-267, MAR 15 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2020.02.029">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000525763900029">350</a>] |
| </td> |
| <td> |
| A. Laguarda, G. Giacosa, R. Alonso-Suarez, and G. Abal. |
| <b>Performance of the site-adapted CAMS database and locally |
| adjusted cloud index models for estimating global solar horizontal |
| irradiation over the Pampa Humeda</b>. |
| <em>SOLAR ENERGY</em>, 199:295-307, MAR 15 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2020.02.005">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000518817900001">351</a>] |
| </td> |
| <td> |
| Andrew R. D. Smedley, Geoffrey W. Evatt, Amy Mallinson, and Eleanor Harvey. |
| <b>Solar radiative transfer in Antarctic blue ice: spectral |
| considerations, subsurface enhancement, inclusions, and meteorites</b>. |
| <em>CRYOSPHERE</em>, 14(3):789-809, MAR 5 2020. |
| [ <a href="http://dx.doi.org/10.5194/tc-14-789-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000524527300006">352</a>] |
| </td> |
| <td> |
| Viivi Kallio-Myers, Aku Riihela, Panu Lahtinen, and Anders Lindfors. |
| <b>Global horizontal irradiance forecast for Finland based on |
| geostationary weather satellite data</b>. |
| <em>SOLAR ENERGY</em>, 198:68-80, MAR 1 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2020.01.008">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000518134200001">353</a>] |
| </td> |
| <td> |
| Christine Aebi, Julian Grobner, Stelios Kazadzis, Laurent Vuilleumier, Antonis |
| Gkikas, and Niklaus Kampfer. |
| <b>Estimation of cloud optical thickness, single scattering albedo |
| and effective droplet radius using a shortwave radiative closure study in |
| Payerne</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(2):907-923, FEB 26 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-907-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000516713800002">354</a>] |
| </td> |
| <td> |
| Paul Ockenfuss, Claudia Emde, Bernhard Mayer, and Germar Bernhard. |
| <b>Accurate 3-D radiative transfer simulation of spectral solar |
| irradiance during the total solar eclipse of 21 August 2017</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(4):1961-1976, FEB 21 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-1961-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000518455400009">355</a>] |
| </td> |
| <td> |
| A. Razagui, K. Abdeladim, S. Semaoui, A. Hadj Arab, and S. Boulahchiche. |
| <b>Modeling the forecasted power of a photovoltaic generator using |
| numerical weather prediction and radiative transfer models coupled with a |
| behavioral electrical model</b>. |
| <em>ENERGY REPORTS</em>, 6(1):57-62, FEB 2020. |
| 6th International Conference on Energy and Environment Research |
| (ICEER) - Energy and Environment - Challenges Towards Circular Economy, Univ |
| Aveiro, Aveiro, PORTUGAL, JUL 22-25, 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.egyr.2019.08.018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000515393800095">356</a>] |
| </td> |
| <td> |
| David Mateos and Manuel Anton. |
| <b>Worldwide Evaluation of Ozone Radiative Forcing in the UV-B |
| Range between 1979 and 2014</b>. |
| <em>REMOTE SENSING</em>, 12(3), FEB 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12030436">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000514747600023">357</a>] |
| </td> |
| <td> |
| N. Lindsay, Q. Libois, J. Badosa, A. Migan-Dubois, and V. Bourdin. |
| <b>Errors in PV power modelling due to the lack of spectral and |
| angular details of solar irradiance inputs</b>. |
| <em>SOLAR ENERGY</em>, 197:266-278, FEB 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2019.12.042">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000509819300009">358</a>] |
| </td> |
| <td> |
| Quinten Vanhellemont. |
| <b>Automated water surface temperature retrieval from Landsat |
| 8/TIRS</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 237, FEB 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2019.111518">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000512310600075">359</a>] |
| </td> |
| <td> |
| Miroslav Kocifaj, Frantisek Kundracik, and Ondrej Bily. |
| <b>Emission spectra of light-pollution sources determined from the |
| light-scattering spectrometry of the night sky</b>. |
| <em>MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY</em>, |
| 491(4):5586-5594, FEB 2020. |
| [ <a href="http://dx.doi.org/10.1093/mnras/stz3260">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000512695000001">360</a>] |
| </td> |
| <td> |
| Perushan Rajah, John Odindi, and Onisimo Mutanga. |
| <b>Synergistic potential of dual-polarized synthetic aperture radar |
| and multispectral optical imagery for invasive alien species detection and |
| mapping</b>. |
| <em>JOURNAL OF APPLIED REMOTE SENSING</em>, 14(1), JAN 30 2020. |
| [ <a href="http://dx.doi.org/10.1117/1.JRS.14.014512">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000510415400001">361</a>] |
| </td> |
| <td> |
| Yilun Chen, Guangcan Chen, Chunguang Cui, Aoqi Zhang, Rong Wan, Shengnan Zhou, |
| Dongyong Wang, and Yunfei Fu. |
| <b>Retrieval of the vertical evolution of the cloud effective |
| radius from the Chinese FY-4 (Feng Yun 4) next-generation geostationary |
| satellites</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 20(2):1131-1145, JAN 30 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/acp-20-1131-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000508615800001">362</a>] |
| </td> |
| <td> |
| Christine Pohl, Larysa Istomina, Steffen Tietsche, Evelyn Jaekel, Johannes |
| Stapf, Gunnar Spreen, and Georg Heygster. |
| <b>Broadband albedo of Arctic sea ice from MERIS optical data</b>. |
| <em>CRYOSPHERE</em>, 14(1):165-182, JAN 22 2020. |
| [ <a href="http://dx.doi.org/10.5194/tc-14-165-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000508548300002">363</a>] |
| </td> |
| <td> |
| Hans Grob, Claudia Emde, Matthias Wiegner, Meinhard Seefeldner, Linda Forster, |
| and Bernhard Mayer. |
| <b>The polarized Sun and sky radiometer SSARA: design, calibration, |
| and application for ground-based aerosol remote sensing</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 13(1):239-258, JAN 20 |
| 2020. |
| [ <a href="http://dx.doi.org/10.5194/amt-13-239-2020">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000507898300001">364</a>] |
| </td> |
| <td> |
| Andre Albino, Daniele Bortoli, Mouhaydine Tlemcani, Abdeloawahed Hajjaji, and |
| Antonio Joyce. |
| <b>Sensitivity analysis of atmospheric spectral irradiance model</b>. |
| <em>EUROPEAN PHYSICAL JOURNAL-APPLIED PHYSICS</em>, 88(1), JAN 17 2020. |
| [ <a href="http://dx.doi.org/10.1051/epjap/2019190350">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000506942800001">365</a>] |
| </td> |
| <td> |
| Llorenc Cremonesi, Andrea Passerini, Agostino Tettamanti, Bruno Paroli, Barbara |
| Delmonte, Samuel Albani, Francesco Cavaliere, Daniele Vigano, Giovanni |
| Bettega, Tiziano Sanvito, Alberto Pullia, and Marco A. C. Potenza. |
| <b>Multiparametric optical characterization of airborne dust with |
| single particle extinction and scattering</b>. |
| <em>AEROSOL SCIENCE AND TECHNOLOGY</em>, 54(4):353-366, APR 2 2020. |
| [ <a href="http://dx.doi.org/10.1080/02786826.2019.1699896">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000709431301032">366</a>] |
| </td> |
| <td> |
| Priji Balakrishnan and J. Alstan Jakubiec. |
| <b>Spectral Rendering with Daylight: A Comparison of Two Spectral |
| Daylight Simulation Platforms</b>. |
| In V Corrado, E Fabrizio, A Gasparella, and F Patuzzi, editors, <em> |
| PROCEEDINGS OF BUILDING SIMULATION 2019: 16TH CONFERENCE OF IBPSA</em>, Building |
| Simulation Conference Proceedings, pages 1191-1198. Int Bldg Performance |
| Simulat Assoc, 2020. |
| 16th Conference of the |
| International-Building-Performance-Simulation-Association (IBPSA), Rome, |
| ITALY, SEP 02-04, 2019. |
| [ <a href="http://dx.doi.org/10.26868/25222708.2019.211158">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000677841300010">367</a>] |
| </td> |
| <td> |
| Iuliana Maria Parvu, Iuliana Adriana Cuibac Picu, P. Dragomir, I, and Daniela |
| Poli. |
| <b>URBAN CLASSIFICATION FROM AERIAL AND SATELLITE IMAGES</b>. |
| <em>JOURNAL OF APPLIED ENGINEERING SCIENCES</em>, 10(2):163-172, 2020. |
| [ <a href="http://dx.doi.org/10.2478/jaes-2020-0024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000519733400007">368</a>] |
| </td> |
| <td> |
| Carolin Klinger and Bernhard Mayer. |
| <b>Neighboring Column Approximation-An Improved 3D Thermal |
| Radiative Transfer Approximation for Non-Rectangular Grids</b>. |
| <em>JOURNAL OF ADVANCES IN MODELING EARTH SYSTEMS</em>, 12(1), JAN 2020. |
| [ <a href="http://dx.doi.org/10.1029/2019MS001843">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000515569800053">369</a>] |
| </td> |
| <td> |
| Akriti Masoom, Panagiotis Kosmopoulos, Ankit Bansal, and Stelios Kazadzis. |
| <b>Solar Energy Estimations in India Using Remote Sensing |
| Technologies and Validation with Sun Photometers in Urban Areas</b>. |
| <em>REMOTE SENSING</em>, 12(2), JAN 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12020254">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000515391700168">370</a>] |
| </td> |
| <td> |
| Dongdong Wang, Shunlin Liang, Yi Zhang, Xueyuan Gao, Meredith G. L. Brown, and |
| Aolin Jia. |
| <b>A New Set of MODIS Land Products (MCD18): Downward Shortwave |
| Radiation and Photosynthetically Active Radiation</b>. |
| <em>REMOTE SENSING</em>, 12(1), JAN 2020. |
| [ <a href="http://dx.doi.org/10.3390/rs12010168">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000502894400022">371</a>] |
| </td> |
| <td> |
| Changming Yin, Binbin He, Marta Yebra, Xingwen Quan, Andrew C. Edwards, |
| Xiangzhuo Liu, and Zhanmang Liao. |
| <b>Improving burn severity retrieval by integrating tree canopy |
| cover into radiative transfer model simulation</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 236, JAN 2020. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2019.111454">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000503924500001">372</a>] |
| </td> |
| <td> |
| Manuel Gutleben, Silke Gross, Martin Wirth, Claudia Emde, and Bernhard Mayer. |
| <b>Impacts of Water Vapor on Saharan Air Layer Radiative Heating</b>. |
| <em>GEOPHYSICAL RESEARCH LETTERS</em>, 46(24):14854-14862, DEC 28 2019. |
| [ <a href="http://dx.doi.org/10.1029/2019GL085344">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000502615100001">373</a>] |
| </td> |
| <td> |
| Christiaan T. van Dalum, Willem Jan van de Berg, Quentin Libois, Ghislain |
| Picard, and Michiel R. van den Broeke. |
| <b>A module to convert spectral to narrowband snow albedo for use |
| in climate models: SNOWBAL v1.2</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 12(12):5157-5175, DEC 11 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/gmd-12-5157-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000507333400074">374</a>] |
| </td> |
| <td> |
| Xavier Ceamanos, Suman Moparthy, Dominique Carrer, and Felix C. Seidel. |
| <b>Assessing the Potential of Geostationary Satellites for Aerosol |
| Remote Sensing Based on Critical Surface Albedo</b>. |
| <em>REMOTE SENSING</em>, 11(24), DEC 2 2019. |
| [ <a href="http://dx.doi.org/10.3390/rs11242958">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000507333400119">375</a>] |
| </td> |
| <td> |
| Hyeon-Ju Park, Jin-Soo Park, Sang-Woo Kim, Heesung Chong, Hana Lee, Hyunjae |
| Kim, Joon-Young Ahn, Dai-Gon Kim, Jhoon Kim, and Sang Seo Park. |
| <b>Retrieval of NO<sub>2</sub> Column Amounts from Ground-Based |
| Hyperspectral Imaging Sensor Measurements</b>. |
| <em>REMOTE SENSING</em>, 11(24), DEC 2 2019. |
| [ <a href="http://dx.doi.org/10.3390/rs11243005">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000506851000002">376</a>] |
| </td> |
| <td> |
| A. Guyonnet, S. Dagoret-Campagne, and N. Mondrik. |
| <b>Local Monitoring of Atmospheric Transparency from the NASA |
| MERRA-2 Global Assimilation System</b>. |
| <em>JOURNAL OF ASTRONOMICAL INSTRUMENTATION</em>, 8(4), DEC 2019. |
| [ <a href="http://dx.doi.org/10.1142/S2251171719500132">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000505393600028">377</a>] |
| </td> |
| <td> |
| Yingying Ma, Ming Zhang, Shikuan Jin, Wei Gong, Nan Chen, Zhongyong Chen, |
| Yinbao Jin, and Yifan Shi. |
| <b>Long-Term Investigation of Aerosol Optical and Radiative |
| Characteristics in a Typical Megacity of Central China During Winter Haze |
| Periods</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
| 124(22):12093-12106, NOV 27 2019. |
| [ <a href="http://dx.doi.org/10.1029/2019JD030840">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000620337300030">378</a>] |
| </td> |
| <td> |
| Guo Leili and Wang Mingjun. |
| <b>Polarized Radiative Transfer Characteristics of Ice Cloud |
| Atmospheres at Large Zenith Angles</b>. |
| <em>ACTA OPTICA SINICA</em>, 39(11), NOV 10 2019. |
| [ <a href="http://dx.doi.org/10.3788/A0S201939.1101002">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000496543000002">379</a>] |
| </td> |
| <td> |
| Corinna Kloss, Gwenael Berthet, Pasquale Sellitto, Felix Ploeger, Silvia Bucci, |
| Sergey Khaykin, Fabrice Jegou, Ghassan Taha, Larry W. Thomason, Brice Barret, |
| Eric Le Flochmoen, Marc von Hobe, Adriana Bossolasco, Nelson Begue, and |
| Bernard Legras. |
| <b>Transport of the 2017 Canadian wildfire plume to the tropics via |
| the Asian monsoon circulation</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 19(21):13547-13567, NOV 7 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/acp-19-13547-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000502284300035">380</a>] |
| </td> |
| <td> |
| Dominique Carrer, Suman Moparthy, Chloe Vincent, Xavier Ceamanos, Sandra C. |
| Freitas, and Isabel F. Trigo. |
| <b>Satellite Retrieval of Downwelling Shortwave Surface Flux and |
| Diffuse Fraction under All Sky Conditions in the Framework of the LSA SAF |
| Program (Part 2: Evaluation)</b>. |
| <em>REMOTE SENSING</em>, 11(22), NOV 2 2019. |
| [ <a href="http://dx.doi.org/10.3390/rs11222630">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000501205200209">381</a>] |
| </td> |
| <td> |
| Judith Rosenow and Hartmut Fricke. |
| <b>Individual Condensation Trails in Aircraft Trajectory |
| Optimization</b>. |
| <em>SUSTAINABILITY</em>, 11(21), NOV 2019. |
| [ <a href="http://dx.doi.org/10.3390/su11216082">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000504716700073">382</a>] |
| </td> |
| <td> |
| Dominique Carrer, Xavier Ceamanos, Suman Moparthy, Chloe Vincent, Sandra C. |
| Freitas, and Isabel F. Trigo. |
| <b>Satellite Retrieval of Downwelling Shortwave Surface Flux and |
| Diffuse Fraction under All Sky Conditions in the Framework of the LSA SAF |
| Program (Part 1: Methodology)</b>. |
| <em>REMOTE SENSING</em>, 11(21), NOV 2019. |
| [ <a href="http://dx.doi.org/10.3390/rs11212532">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000497601000017">383</a>] |
| </td> |
| <td> |
| Guanghui Huang, Zhanqing Li, Xin Li, Shunlin Liang, Kun Yang, Dongdong Wang, |
| and Yi Zhang. |
| <b>Estimating surface solar irradiance from satellites: Past, |
| present, and future perspectives</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 233, NOV 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2019.111371">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000492836400003">384</a>] |
| </td> |
| <td> |
| Stephan Nyeki, Stefan Wacker, Christine Aebi, Julian Groebner, Giovanni |
| Martucci, and Laurent Vuilleumier. |
| <b>Trends in surface radiation and cloud radiative effect at four |
| Swiss sites for the 1996-2015 period</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 19(20):13227-13241, OCT 25 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/acp-19-13227-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000498751300031">385</a>] |
| </td> |
| <td> |
| Tatiana Zhuravleva, Ilmir Nasrtdinov, Tatiana Chesnokova, and Igor Ptashnik. |
| <b>Monte Carlo simulation of thermal radiative transfer in |
| spatially inhomogeneous clouds taking into account the atmospheric |
| sphericity</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 236, OCT 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2019.106602">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000491945900060">386</a>] |
| </td> |
| <td> |
| Margit Aun, K. Eerme, I Ansko, and M. Aun. |
| <b>Daily, seasonal, and annual characteristics of UV radiation and |
| its influencing factors in Toravere, Estonia, 2004-2016</b>. |
| <em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 138(1-2):887-897, OCT |
| 2019. |
| [ <a href="http://dx.doi.org/10.1007/s00704-019-02865-1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000489081000019">387</a>] |
| </td> |
| <td> |
| Alois W. Schmalwieser, Barbara Klotz, Michael Schwarzmann, Dietmar J. |
| Baumgartner, Josef Schreder, Guenther Schauberger, and Mario Blumthaler. |
| <b>The Austrian UVA-Network</b>. |
| <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 95(5):1258-1266, SEP 2019. |
| [ <a href="http://dx.doi.org/10.1111/php.13111">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000474677800010">388</a>] |
| </td> |
| <td> |
| Mostafa Hadizadeh, Mehdi Rahnama, Mehdi Kamali, Mona Kazemi, and Ali Mohammadi. |
| <b>A new method to estimate cloud effective radius using Meteosat |
| Second Generation SEVIRI over Middle East</b>. |
| <em>ADVANCES IN SPACE RESEARCH</em>, 64(4):933-943, AUG 15 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.asr.2019.05.035">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000478609400002">389</a>] |
| </td> |
| <td> |
| Cinzia Panigada, Giulia Tagliabue, Eli Zaady, Offer Rozenstein, Roberto |
| Garzonio, Biagio Di Mauro, Mattia De Amicis, Roberto Colombo, Sergio |
| Cogliati, Franco Miglietta, and Micol Rossini. |
| <b>A new approach for biocrust and vegetation monitoring in |
| drylands using multi-temporal Sentinel-2 images</b>. |
| <em>PROGRESS IN PHYSICAL GEOGRAPHY-EARTH AND ENVIRONMENT</em>, |
| 43(4):496-520, AUG 2019. |
| [ <a href="http://dx.doi.org/10.1177/0309133319841903">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000474327400022">390</a>] |
| </td> |
| <td> |
| Christian A. Gueymard. |
| <b>The SMARTS spectral irradiance model after 25 years: New |
| developments and validation of reference spectra</b>. |
| <em>SOLAR ENERGY</em>, 187:233-253, JUL 15 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2019.05.048">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000477049000002">391</a>] |
| </td> |
| <td> |
| Tamas Varnai, Charles Gatebe, Ritesh Gautam, Rajesh Poudyal, and Wenying Su. |
| <b>Developing an Aircraft-Based Angular Distribution Model of Solar |
| Reflection from Wildfire Smoke to Aid Satellite-Based Radiative Flux |
| Estimation</b>. |
| <em>REMOTE SENSING</em>, 11(13), JUL 1 2019. |
| [ <a href="http://dx.doi.org/10.3390/rs11131509">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000472518600003">392</a>] |
| </td> |
| <td> |
| Nina Crnivec and Bernhard Mayer. |
| <b>Quantifying the bias of radiative heating rates in numerical |
| weather prediction models for shallow cumulus clouds</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 19(12):8083-8100, JUN 20 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/acp-19-8083-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000471246200002">393</a>] |
| </td> |
| <td> |
| Helene Birkelund Erlandsen, Lena Merete Tallaksen, and Jorn Kristiansen. |
| <b>Merits of novel high-resolution estimates and existing long-term |
| estimates of humidity and incident radiation in a complex domain</b>. |
| <em>EARTH SYSTEM SCIENCE DATA</em>, 11(2):797-821, JUN 12 2019. |
| [ <a href="http://dx.doi.org/10.5194/essd-11-797-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000470849000028">394</a>] |
| </td> |
| <td> |
| Chuanliang Zhang, Xuejin Sun, Riwei Zhang, Shijun Zhao, Wen Lu, Yanwen Liu, and |
| Zhiqiang Fan. |
| <b>Impact of solar background radiation on the accuracy of wind |
| observations of spaceborne Doppler wind lidars based on their orbits and |
| optical parameters</b>. |
| <em>OPTICS EXPRESS</em>, 27(12):A936-A952, JUN 10 2019. |
| [ <a href="http://dx.doi.org/10.1364/OE.27.00A936">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000463342600026">395</a>] |
| </td> |
| <td> |
| F. Antonanzas-Torres, R. Urraca, J. Polo, O. Perpinan-Lamigueiro, and |
| R. Escobar. |
| <b>Clear sky solar irradiance models: A review of seventy models</b>. |
| <em>RENEWABLE & SUSTAINABLE ENERGY REVIEWS</em>, 107:374-387, JUN |
| 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.rser.2019.02.032">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000466791900002">396</a>] |
| </td> |
| <td> |
| Brian D. Bue, David R. Thompson, Shubhankar Deshpande, Michael Eastwood, |
| Robert O. Green, Vijay Natraj, Terry Mullen, and Mario Parente. |
| <b>Neural network radiative transfer for imaging spectroscopy</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 12(4):2567-2578, MAY 2 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/amt-12-2567-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000472677600036">397</a>] |
| </td> |
| <td> |
| Franz Schreier, Sebastian Gimeno Garcia, Philipp Hochstaffl, and Steffen |
| Staedt. |
| <b>Py4CAtSPYthon for Computational ATmospheric Spectroscopy</b>. |
| <em>ATMOSPHERE</em>, 10(5), MAY 2019. |
| [ <a href="http://dx.doi.org/10.3390/atmos10050262">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000470678200008">398</a>] |
| </td> |
| <td> |
| Manfred Wendisch, Andreas Macke, Andre Ehrlich, Christof Luepkes, Mario Mech, |
| Dmitry Chechin, Klaus Dethloff, Carola Barrientos Velasco, Heiko Bozem, |
| Marlen Brueckner, Hans-Christian Clemen, Susanne Crewell, Tobias Donth, Regis |
| Dupuy, Kerstin Ebell, Ulrike Egerer, Ronny Engelmann, Christa Engler, Oliver |
| Eppers, Martin Gehrmann, Xianda Gong, Matthias Gottschalk, Christophe |
| Gourbeyre, Hannes Griesche, Joerg Hartmann, Markus Hartmann, Bernd Heinold, |
| Andreas Herber, Hartmut Herrmann, Georg Heygster, Peter Hoor, Soheila |
| Jafariserajehlou, Evelyn Jaekel, Emma Jaervinen, Olivier Jourdan, Udo |
| Kaestner, Simonas Kecorius, Erlend M. Knudsen, Franziska Koellner, Jan |
| Kretzschmar, Luca Lelli, Delphine Leroy, Marion Maturilli, Linlu Mei, Stephan |
| Mertes, Guillaume Mioche, Roland Neuber, Marcel Nicolaus, Tatiana Nomokonova, |
| Justus Notholt, Mathias Palm, Manuela van Pinxteren, Johannes Quaas, Philipp |
| Richter, Elena Ruiz-Donoso, Michael Schaefer, Katja Schmieder, Martin |
| Schnaiter, Johannes Schneider, Alfons Schwarzenboeck, Patric Seifert, |
| Matthew D. Shupe, Holger Siebert, Gunnar Spreen, Johannes Stapf, Frank |
| Stratmann, Teresa Vogl, Andre Welti, Heike Wex, Alfred Wiedensohler, Marco |
| Zanatta, and Sebastian Zeppenfeld. |
| <b>The Arctic Cloud Puzzle: Using ACLOUD/PASCAL Multiplatform |
| Observations to Unravel the Role of Clouds and Aerosol Particles in Arctic |
| Amplification</b>. |
| <em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, |
| 100(5):841-872, MAY 2019. |
| [ <a href="http://dx.doi.org/10.1175/BAMS-D-18-0072.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000469763600091">399</a>] |
| </td> |
| <td> |
| Natalie Hanrieder, Abdellatif Ghennioui, Ahmed Alami Merrouni, Stefan Wilbert, |
| Florian Wiesinger, Manajit Sengupta, Luis Zarzalejo, and Alexander Schade. |
| <b>Atmospheric Transmittance Model Validation for CSP Tower |
| Plants</b>. |
| <em>REMOTE SENSING</em>, 11(9), MAY 1 2019. |
| [ <a href="http://dx.doi.org/10.3390/rs11091083">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000464481100006">400</a>] |
| </td> |
| <td> |
| Hans Grob, Claudia Emde, and Bernhard Mayer. |
| <b>Retrieval of aerosol properties from ground-based polarimetric |
| sky-radiance measurements under cloudy conditions</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 228:57-72, MAY 2019. |
| 1st International Workshop on Advancement of Polarimetric |
| Observations - Calibration and Improved Aerosol Retrievals (APOLO), Hefei, |
| PEOPLES R CHINA, OCT 24-27, 2017. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2019.02.025">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000457948900009">401</a>] |
| </td> |
| <td> |
| D. J. Baumgartner, P. Weihs, G. Kubu, S. M. Oswald, W. Poetzi, H. Freislich, |
| H. Strutzmann, U. Foelsche, A. M. Veronig, and H. E. Rieder. |
| <b>Investigating the topographic influence on short-wave irradiance |
| measurements: A case study for Kanzelhohe Observatory, Austria</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 219:106-113, MAY 1 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2018.12.012">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000469071400021">402</a>] |
| </td> |
| <td> |
| Chen Zeng, Chao Liu, Jiangnan Li, Bin Zhu, Yan Yin, and Yuan Wang. |
| <b>Optical Properties and Radiative Forcing of Aged BC due to |
| Hygroscopic Growth: Effects of the Aggregate Structure</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 124(8):4620-4633, |
| APR 27 2019. |
| [ <a href="http://dx.doi.org/10.1029/2018JD029809">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000464352500002">403</a>] |
| </td> |
| <td> |
| Marc Mallet, Pierre Nabat, Paquita Zuidema, Jens Redemann, Andrew Mark Sayer, |
| Martin Stengel, Sebastian Schmidt, Sabrina Cochrane, Sharon Burton, Richard |
| Ferrare, Kerry Meyer, Pablo Saide, Hiren Jethva, Omar Torres, Robert Wood, |
| David Saint Martin, Romain Roehrig, Christina Hsu, and Paola Formenti. |
| <b>Simulation of the transport, vertical distribution, optical |
| properties and radiative impact of smoke aerosols with the ALADIN regional |
| climate model during the ORACLES-2016 and LASIC experiments</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 19(7):4963-4990, APR 12 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/acp-19-4963-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000463900200030">404</a>] |
| </td> |
| <td> |
| Bipasha Paul Shukla, Jinya John, and Sambit Kumar Panda. |
| <b>Cloud microphysical characterization during AVIRIS-NG campaign</b>. |
| <em>CURRENT SCIENCE</em>, 116(7):1196-1200, APR 10 2019. |
| [ <a href="http://dx.doi.org/10.18520/cs/v116/i7/1196-1200">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000467313400058">405</a>] |
| </td> |
| <td> |
| William Wandji Nyamsi, Philippe Blanc, John A. Augustine, Antti Arola, and |
| Lucien Wald. |
| <b>A New Clear-Sky Method for Assessing Photosynthetically Active |
| Radiation at the Surface Level</b>. |
| <em>ATMOSPHERE</em>, 10(4), APR 2019. |
| [ <a href="http://dx.doi.org/10.3390/atmos10040219">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000461049300001">406</a>] |
| </td> |
| <td> |
| A. F. Bais, G. Bernhard, R. L. McKenzie, P. J. Aucamp, P. J. Young, M. Ilyas, |
| P. Jockel, and M. Deushi. |
| <b>Ozone-climate interactions and effects on solar ultraviolet |
| radiation</b>. |
| <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 18(3):602-640, MAR |
| 1 2019. |
| [ <a href="http://dx.doi.org/10.1039/c8pp90059k">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000459868100002">407</a>] |
| </td> |
| <td> |
| Maxence Descheemaecker, Matthieu Plu, Virginie Marecal, Marine Claeyman, |
| Francis Olivier, Youva Aoun, Philippe Blanc, Lucien Wald, Jonathan Guth, |
| Bojan Sic, Jerome Vidot, Andrea Piacentini, and Beatrice Josse. |
| <b>Monitoring aerosols over Europe: an assessment of the potential |
| benefit of assimilating the VIS04 measurements from the future MTG/FCI |
| geostationary imager</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 12(2):1251-1275, FEB 27 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/amt-12-1251-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000459579500001">408</a>] |
| </td> |
| <td> |
| Tobias Zinner, Ulrich Schwarz, Tobias Koelling, Florian Ewald, Evelyn Jaekel, |
| Bernhard Mayer, and Manfred Wendisch. |
| <b>Cloud geometry from oxygen-A-band observations through an |
| aircraft side window</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 12(2):1167-1181, FEB 25 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/amt-12-1167-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000459579500002">409</a>] |
| </td> |
| <td> |
| Florian Ewald, Tobias Zinner, Tobias Koelling, and Bernhard Mayer. |
| <b>Remote sensing of cloud droplet radius profiles using solar |
| reflectance from cloud sides - Part 1: Retrieval development and |
| characterization</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 12(2):1183-1206, FEB 25 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/amt-12-1183-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000459421100003">410</a>] |
| </td> |
| <td> |
| Tobias Koelling, Tobias Zinner, and Bernhard Mayer. |
| <b>Aircraft-based stereographic reconstruction of 3-D cloud |
| geometry</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 12(2):1155-1166, FEB 22 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/amt-12-1155-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000458516900001">411</a>] |
| </td> |
| <td> |
| Rosa Delia Garcia, Emilio Cuevas, Ramon Ramos, Victoria Eugenia Cachorro, |
| Alberto Redondas, and Jose A. Moreno-Ruiz. |
| <b>Description of the Baseline Surface Radiation Network (BSRN) |
| station at the Izana Observatory (2009-2017): measurements and quality |
| control/assurance procedures</b>. |
| <em>GEOSCIENTIFIC INSTRUMENTATION METHODS AND DATA SYSTEMS</em>, |
| 8(1):77-96, FEB 13 2019. |
| [ <a href="http://dx.doi.org/10.5194/gi-8-77-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000460663600005">412</a>] |
| </td> |
| <td> |
| Zhengchao Chen, Jiafei Xu, and Hao Zhang. |
| <b>Evaluation of HJ-1A/B CCD Surface Reflectance Products Using the |
| VNIR and MODIS-Based Atmospheric Correction Approaches</b>. |
| <em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS |
| AND REMOTE SENSING</em>, 12(2, SI):437-449, FEB 2019. |
| [ <a href="http://dx.doi.org/10.1109/JSTARS.2018.2875263">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000457478100002">413</a>] |
| </td> |
| <td> |
| Nikolaos Evangeliou, Arve Kylling, Sabine Eckhardt, Viktor Myroniuk, Kerstin |
| Stebel, Ronan Paugam, Sergiy Zibtsev, and Andreas Stohl. |
| <b>Open fires in Greenland in summer 2017: transport, deposition |
| and radiative effects of BC, OC and BrC emissions</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 19(2):1393-1411, FEB 1 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/acp-19-1393-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000457425800002">414</a>] |
| </td> |
| <td> |
| J. Christopher Kaiser, Johannes Hendricks, Mattia Righi, Patrick Joeckel, |
| Holger Tost, Konrad Kandler, Bernadett Weinzierl, Daniel Sauer, Katharina |
| Heimerl, Joshua P. Schwarz, Anne E. Perring, and Thomas Popp. |
| <b>Global aerosol modeling with MADE3 (v3.0) in EMAC (based on |
| v2.53): model description and evaluation</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 12(1):541-579, FEB 1 2019. |
| [ <a href="http://dx.doi.org/10.5194/gmd-12-541-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000455811100002">415</a>] |
| </td> |
| <td> |
| Frederik Tack, Alexis Merlaud, Andreas C. Meier, Tim Vlemmix, Thomas Ruhtz, |
| Marian-Daniel Iordache, Xinrui Ge, Len van der Wal, Dirk Schuettemeyer, |
| Magdalena Ardelean, Andreea Calcan, Daniel Constantin, Anja Schoenhardt, Koen |
| Meuleman, Andreas Richter, and Michel Van Roozendael. |
| <b>Intercomparison of four airborne imaging DOAS systems for |
| tropospheric NO<sub>2</sub> mapping - the AROMAPEX campaign</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 12(1):211-236, JAN 11 |
| 2019. |
| [ <a href="http://dx.doi.org/10.5194/amt-12-211-2019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000554428500190">416</a>] |
| </td> |
| <td> |
| Edgar F. M. Abreu, Paulo Canhoto, and Maria Joao Costa. |
| <b>Circumsolar Irradiance Modelling Using LibRadtran and AERONET |
| Data</b>. |
| In C Richter, editor, <em>SOLARPACES 2018: INTERNATIONAL CONFERENCE |
| ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS</em>, volume 2126 of |
| <em>AIP Conference Proceedings</em>, 2019. |
| 24th International Conference on Concentrating Solar Power and |
| Chemical Energy Systems (SolarPACES), Casablanca, MOROCCO, OCT 02-05, 2018. |
| [ <a href="http://dx.doi.org/10.1063/1.5117698">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000527367300124">417</a>] |
| </td> |
| <td> |
| G. A. Kaloshin and C. A. Shishkin. |
| <b>Testing MaexPro aerosol model using observations in near-surface |
| layer of the coastal atmosphere</b>. |
| In GG Matvienko and OA Romanovskii, editors, <em>25TH INTERNATIONAL |
| SYMPOSIUM ON ATMOSPHERIC AND OCEAN OPTICS: ATMOSPHERIC PHYSICS</em>, volume 11208 |
| of <em>Proceedings of SPIE</em>. Russian Acad Sci, Siberian Branch, V E Zuev |
| Inst Atmospher Opt; Siberian State University of Geosystems and Technologies; |
| Russian Acad Sci, Siberian Branch, Inst Solar Terrestrial Phys; Russian Fdn |
| Basic Res; Minist Educ & Sci Russian Federat; MDPI, Atmosphere Open Access |
| Journal; Res Inst Precise Mech; Sci Instruments & Syst, 2019. |
| 25th International Symposium On Atmospheric and Ocean Optics - |
| Atmospheric Physics, Novosibirsk, RUSSIA, JUN 30-JUL 05, 2019. |
| [ <a href="http://dx.doi.org/10.1117/12.2539934">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000528920300041">418</a>] |
| </td> |
| <td> |
| Jiafei Xu, Zhengchao Chen, Hao Zhang, Bing Zhang, and Tao Liu. |
| <b>Preliminary Validation of GF-1/GF-2 Surface Reflectance Products |
| Over Land Using VNIR Atmospheric Correction Method</b>. |
| In A Comeron, EI Kassianov, K Schafer, RH Picard, K Weber, and |
| UN Singh, editors, <em>REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE XXIV</em>, |
| volume 11152 of <em>Proceedings of SPIE</em>. SPIE, 2019. |
| Conference on Remote Sensing of Clouds and the Atmosphere XXIV, held |
| at SPIE Remote Sensing Conference, Strasbourg, FRANCE, SEP 11-12, 2019. |
| [ <a href="http://dx.doi.org/10.1117/12.2535792">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000519270602017">419</a>] |
| </td> |
| <td> |
| Congyuan Pei and Tao He. |
| <b>UV RADIATION ESTIMATION IN THE UNITED STATES USING MODIS DATA</b>. |
| In <em>2019 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING |
| SYMPOSIUM (IGARSS 2019)</em>, IEEE International Symposium on Geoscience and |
| Remote Sensing IGARSS, pages 1880-1883. Inst Elect & Elect Engineers; Inst |
| Elect & Elect Engineers, Geoscience & Remote Sensing Soc, 2019. |
| IEEE International Geoscience and Remote Sensing Symposium (IGARSS), |
| Yokohama, JAPAN, JUL 28-AUG 02, 2019. |
| [ <a href="http://dx.doi.org/10.1109/igarss.2019.8900659">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000501529600003">420</a>] |
| </td> |
| <td> |
| Ina Neher, Tina Buchmann, Susanne Crewell, Bernhard Pospichal, and Stefanie |
| Meilinger. |
| <b>Impact of atmospheric aerosols on solar power</b>. |
| <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 28(4):305-321, 2019. |
| [ <a href="http://dx.doi.org/10.1127/metz/2019/0969">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000507248200001">421</a>] |
| </td> |
| <td> |
| Jingyu Lin, Ran Wang, Bo Zhao, and Sanyou Cheng. |
| <b>A comprehensive scheme for lithological mapping using |
| Sentinel-2A and ASTER GDEM in weathered and vegetated coastal zone, Southern |
| China</b>. |
| <em>OPEN GEOSCIENCES</em>, 11(1):982-996, JAN 2019. |
| [ <a href="http://dx.doi.org/10.1515/geo-2019-0076">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000472620600005">422</a>] |
| </td> |
| <td> |
| Benoit Gschwind, Lucien Wald, Philippe Blanc, Mireille Lefevre, Marion |
| Schroedter-Homscheidt, and Antti Arola. |
| <b>Improving the McClear model estimating the downwelling solar |
| radiation at ground level in cloud-free conditions - McClear-v3</b>. |
| <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 28(2):147-163, 2019. |
| [ <a href="http://dx.doi.org/10.1127/metz/2019/0946">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000464043900021">423</a>] |
| </td> |
| <td> |
| Yazhen Jiang, Ronglin Tang, Xiaoguang Jiang, and Zhao-Liang Li. |
| <b>Impact of clouds on the estimation of daily evapotranspiration |
| from MODIS-derived instantaneous evapotranspiration using the constant global |
| shortwave radiation ratio method</b>. |
| <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 40(5-6, |
| SI):1930-1944, 2019. |
| [ <a href="http://dx.doi.org/10.1080/01431161.2018.1482025">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000453338500033">424</a>] |
| </td> |
| <td> |
| Alfio Paris, V, Abdurazaq Amar, Nathan J. Downs, Damien P. Igoe, Simone L. |
| Harrison, and Joanna Turner. |
| <b>Development of a model for calculating the solar ultraviolet |
| protection factor of small to medium sized built shade structures</b>. |
| <em>BUILDING AND ENVIRONMENT</em>, 147:415-421, JAN 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.buildenv.2018.10.010">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000463885600007">425</a>] |
| </td> |
| <td> |
| Norio Narita, Akihiko Fukui, Nobuhiko Kusakabe, Noriharu Watanabe, Enric Palle, |
| Hannu Parviainen, Pilar Montanes-Rodriguez, Felipe Murgas, Matteo Monelli, |
| Marta Aguiar, Jorge Andres Perez Prieto, Alex Oscoz, Jerome de Leon, Mayuko |
| Mori, Motohide Tamura, Tomoyasu Yamamuro, Victor J. S. Bejar, Nicolas |
| Crouzet, Diego Hidalgo, Peter Klagyivik, Rafael Luque, and Taku Nishiumi. |
| <b>MuSCAT2: four-color simultaneous camera for the 1.52-m |
| Telescopio Carlos Sanchez</b>. |
| <em>JOURNAL OF ASTRONOMICAL TELESCOPES INSTRUMENTS AND SYSTEMS</em>, |
| 5(1), JAN 2019. |
| [ <a href="http://dx.doi.org/10.1117/1.JATIS.5.1.015001">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000447568800100">426</a>] |
| </td> |
| <td> |
| Ignacio Garcia, Almudena Garcia, and Jose Luis Torres. |
| <b>A GIS-based methodology for assigning experimental measurements |
| of angular distribution of sky radiance and luminance to selected sky |
| sectors</b>. |
| <em>RENEWABLE ENERGY</em>, 130:1207-1215, JAN 2019. |
| [ <a href="http://dx.doi.org/10.1016/j.renene.2018.08.095">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000453227200002">427</a>] |
| </td> |
| <td> |
| Nuno Pereira, David Bolsee, Peter Sperfeld, Sven Pape, Dominique Sluse, and |
| Gael Cessateur. |
| <b>Metrology of solar spectral irradiance at the top of the |
| atmosphere in the near infrared measured at Mauna Loa Observatory: the |
| PYR-ILIOS campaign</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 11(12):6605-6615, DEC 14 |
| 2018. |
| [ <a href="http://dx.doi.org/10.5194/amt-11-6605-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000455637600012">428</a>] |
| </td> |
| <td> |
| Panagiotis G. Kosmopoulos, Stelios Kazadzis, Hesham El-Askary, Michael Taylor, |
| Antonis Gkikas, Emmanouil Proestakis, Charalampos Kontoes, and |
| Mohamed Mostafa El-Khayat. |
| <b>Earth-Observation-Based Estimation and Forecasting of |
| Particulate Matter Impact on Solar Energy in Egypt</b>. |
| <em>REMOTE SENSING</em>, 10(12), DEC 2018. |
| [ <a href="http://dx.doi.org/10.3390/rs10121870">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000437079600022">429</a>] |
| </td> |
| <td> |
| Alberto Royo, Ignacio Garcia, and Jose Luis Torres. |
| <b>Generation of the site-adapted clearest-sky year of direct |
| normal irradiance for solar concentrating technologies</b>. |
| <em>RENEWABLE ENERGY</em>, 128(A):250-264, DEC 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.renene.2018.04.088">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000442169800021">430</a>] |
| </td> |
| <td> |
| M. A. Obregon, M. J. Costa, A. M. Silva, and A. Serrano. |
| <b>Impact of aerosol and water vapour on SW radiation at the |
| surface: Sensitivity study and applications</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 213:252-263, NOV 15 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2018.06.001">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000448953800038">431</a>] |
| </td> |
| <td> |
| Chuanliang Zhang, Xuejin Sun, Riwei Zhang, and Yanwen Liu. |
| <b>Simulation and assessment of solar background noise for |
| spaceborne lidar</b>. |
| <em>APPLIED OPTICS</em>, 57(31):9471-9479, NOV 1 2018. |
| [ <a href="http://dx.doi.org/10.1364/AO.57.009471">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000451499500042">432</a>] |
| </td> |
| <td> |
| F. Plag, I Kroeger, S. Riechelmann, and S. Winter. |
| <b>Multidimensional model to correct PV device performance |
| measurements taken under diffuse irradiation to reference conditions</b>. |
| <em>SOLAR ENERGY</em>, 174:431-444, NOV 1 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2018.08.072">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000452940800094">433</a>] |
| </td> |
| <td> |
| Nuozhen Gelsor, Norsang Gelsor, Tsoja Wangmo, Yi-Chun Chen, Oyvind Frette, |
| Jakob J. Stamnes, and Borge Hamre. |
| <b>Solar energy on the Tibetan Plateau: Atmospheric influences</b>. |
| <em>SOLAR ENERGY</em>, 173:984-992, OCT 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2018.08.024">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000444455000001">434</a>] |
| </td> |
| <td> |
| Ralf Zuber, Mario Ribnitzky, Mario Tobar, Kezia Lange, Dimitrij Kutscher, |
| Michael Schrempf, Angelika Niedzwiedz, and Gunther Seckmeyer. |
| <b>Global spectral irradiance array spectroradiometer validation |
| according to WMO</b>. |
| <em>MEASUREMENT SCIENCE AND TECHNOLOGY</em>, 29(10), OCT 2018. |
| [ <a href="http://dx.doi.org/10.1088/1361-6501/aada34">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000444357600014">435</a>] |
| </td> |
| <td> |
| Claudia Emde and Bernhard Mayer. |
| <b>Errors induced by the neglect of polarization in radiance |
| calculations for three-dimensional cloudy atmospheres</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 218:151-160, OCT 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2018.07.001">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000444328300002">436</a>] |
| </td> |
| <td> |
| Kaisa Lakkala, Antti Arola, Julian Grobner, Sergio Fabian Leon-Luis, Alberto |
| Redondas, Stelios Kazadzis, Tomi Karppinen, Juha Matti Karhu, Luca Egli, Anu |
| Heikkila, Tapani Koskela, Antonio Serrano, and Jose Manuel Vilaplana. |
| <b>Performance of the FMI cosine error correction method for the |
| Brewer spectral UV measurements</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 11(9):5167-5180, SEP 11 |
| 2018. |
| [ <a href="http://dx.doi.org/10.5194/amt-11-5167-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000440119000013">437</a>] |
| </td> |
| <td> |
| Ming Zhang, Yi Wang, Yingying Ma, Lunche Wang, Wei Gong, and Boming Liu. |
| <b>Spatial distribution and temporal variation of aerosol optical |
| depth and radiative effect in South China and its adjacent area</b>. |
| <em>ATMOSPHERIC ENVIRONMENT</em>, 188:120-128, SEP 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2018.06.028">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000448137500039">438</a>] |
| </td> |
| <td> |
| Ioannis-Panagiotis Raptis, Stelios Kazadzis, Kostas Eleftheratos, Vassilis |
| Amiridis, and Ilias Fountoulakis. |
| <b>Single Scattering Albedo's Spectral Dependence Effect on UV |
| Irradiance</b>. |
| <em>ATMOSPHERE</em>, 9(9), SEP 2018. |
| [ <a href="http://dx.doi.org/10.3390/atmos9090364">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000447113000046">439</a>] |
| </td> |
| <td> |
| Jose A. Ruiz-Arias and Christian A. Gueymar. |
| <b>A multi-model benchmarking of direct and global clear-sky solar |
| irradiance predictions at arid sites using a reference physical radiative |
| transfer model</b>. |
| <em>SOLAR ENERGY</em>, 171:447-465, SEP 1 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2018.06.048">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000443168200163">440</a>] |
| </td> |
| <td> |
| Mario Blumthaler. |
| <b>UV Monitoring for Public Health</b>. |
| <em>INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC |
| HEALTH</em>, 15(8), AUG 2018. |
| [ <a href="http://dx.doi.org/10.3390/ijerph15081723">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000439732000005">441</a>] |
| </td> |
| <td> |
| R. R. Cordero, A. Damiani, J. Jorquera, E. Sepulveda, M. Caballero, |
| S. Fernandez, S. Feron, P. J. Llanillo, J. Carrasco, D. Laroze, and F. Labbe. |
| <b>Ultraviolet radiation in the Atacama Desert</b>. |
| <em>ANTONIE VAN LEEUWENHOEK INTERNATIONAL JOURNAL OF GENERAL AND |
| MOLECULAR MICROBIOLOGY</em>, 111(8, SI):1301-1313, AUG 2018. |
| [ <a href="http://dx.doi.org/10.1007/s10482-018-1075-z">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000439842200001">442</a>] |
| </td> |
| <td> |
| Jay Herman, Guoyong Wen, Alexander Marshak, Karin Blank, Liang Huang, Alexander |
| Cede, Nader Abuhassan, and Matthew Kowalewski. |
| <b>Reduction in 317-780 nm radiance reflected from the sunlit Earth |
| during the eclipse of 21 August 2017</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 11(7):4373-4388, JUL 25 |
| 2018. |
| [ <a href="http://dx.doi.org/10.5194/amt-11-4373-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000439397300046">443</a>] |
| </td> |
| <td> |
| Le Guan, Shiqi Li, Liyuan Zhai, Sheng Liu, Hui Liu, Wei Lin, Yan Cui, Jinkui |
| Chu, and Huikai Xie. |
| <b>Study on skylight polarization patterns over the ocean for |
| polarized light navigation application</b>. |
| <em>APPLIED OPTICS</em>, 57(21):6243-6251, JUL 20 2018. |
| [ <a href="http://dx.doi.org/10.1364/AO.57.006243">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000438302100001">444</a>] |
| </td> |
| <td> |
| Josef Gasteiger and Matthias Wiegner. |
| <b>MOPSMAP v1.0: a versatile tool for the modeling of aerosol |
| optical properties</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 11(7):2739-2762, JUL 11 2018. |
| [ <a href="http://dx.doi.org/10.5194/gmd-11-2739-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000440332500114">445</a>] |
| </td> |
| <td> |
| Helge Aasen, Eija Honkavaara, Arko Lucieer, and Pablo J. Zarco-Tejada. |
| <b>Quantitative Remote Sensing at Ultra-High Resolution with UAV |
| Spectroscopy: A Review of Sensor Technology, Measurement Procedures, and Data |
| Correction Workflows</b>. |
| <em>REMOTE SENSING</em>, 10(7), JUL 2018. |
| [ <a href="http://dx.doi.org/10.3390/rs10071091">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000437814800003">446</a>] |
| </td> |
| <td> |
| Jose A. Ruiz-Arias and Christian A. Gueymard. |
| <b>Worldwide inter-comparison of clear-sky solar radiation models: |
| Consensus based review of direct and global irradiance components simulated |
| at the earth surface</b>. |
| <em>SOLAR ENERGY</em>, 168(SI):10-29, JUL 1 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2018.02.008">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000436911700014">447</a>] |
| </td> |
| <td> |
| F. Zhao, L. Xia, A. Kylling, R. Q. Li, H. Shang, and Ming Xu. |
| <b>Detection flying aircraft from Landsat 8 OLI data</b>. |
| <em>ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING</em>, |
| 141:176-184, JUL 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.isprsjprs.2018.05.001">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000439508000015">448</a>] |
| </td> |
| <td> |
| Michal Segal Rozenhaimer, Neil Barton, Jens Redemann, Sebastian Schmidt, Samuel |
| LeBlanc, Bruce Anderson, Edward Winstead, Chelsea A. Corr, Richard Moore, |
| K. Lee Thornhill, and Richard I. Cullather. |
| <b>Bias and Sensitivity of Boundary Layer Clouds and Surface |
| Radiative Fluxes in MERRA-2 and Airborne Observations Over the Beaufort Sea |
| During the ARISE Campaign</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
| 123(12):6565-6580, JUN 27 2018. |
| [ <a href="http://dx.doi.org/10.1029/2018JD028349">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000434958200001">449</a>] |
| </td> |
| <td> |
| Rosa Delia Garcia, Africa Barreto, Emilio Cuevas, Julian Grobner, Omaira |
| Elena Garcia, Angel Gomez-Pelaez, Pedro Miguel Romero-Campos, Alberto |
| Redondas, Victoria Eugenia Cachorro, and Ramon Ramos. |
| <b>Comparison of observed and modeled cloud-free longwave downward |
| radiation (2010-2016) at the high mountain BSRN Izana station</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 11(6):2139-2152, JUN 12 2018. |
| [ <a href="http://dx.doi.org/10.5194/gmd-11-2139-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000437795000025">450</a>] |
| </td> |
| <td> |
| Yingjie Li, Jing Chen, Qingmiao Ma, Hankui K. Zhang, and Jane Liu. |
| <b>Evaluation of Sentinel-2A Surface Reflectance Derived Using |
| Sen2Cor in North America</b>. |
| <em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS |
| AND REMOTE SENSING</em>, 11(6, SI):1997-2021, JUN 2018. |
| IEEE International Geoscience and Remote Sensing Symposium (IGARSS), |
| Fort Worth, TX, JUL 23-28, 2017. |
| [ <a href="http://dx.doi.org/10.1109/JSTARS.2018.2835823">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000432104700026">451</a>] |
| </td> |
| <td> |
| Ming Zhang, Yingying Ma, Wei Gong, Boming Liu, Yifan Shi, and ZhongYong Chen. |
| <b>Aerosol optical properties and radiative effects: Assessment of |
| urban aerosols in central China using 10-year observations</b>. |
| <em>ATMOSPHERIC ENVIRONMENT</em>, 182:275-285, JUN 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2018.03.040">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000434111700060">452</a>] |
| </td> |
| <td> |
| A. Kylling, C. D. Groot Zwaaftink, and A. Stohl. |
| <b>Mineral Dust Instantaneous Radiative Forcing in the Arctic</b>. |
| <em>GEOPHYSICAL RESEARCH LETTERS</em>, 45(9):4290-4298, MAY 16 2018. |
| [ <a href="http://dx.doi.org/10.1029/2018GL077346">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000430897300034">453</a>] |
| </td> |
| <td> |
| Yi Zhang, Tao He, Shunlin Liang, Dongdong Wang, and Yunyue Yu. |
| <b>Estimation of all-sky instantaneous surface incident shortwave |
| radiation from Moderate Resolution Imaging Spectroradiometer data using |
| optimization method</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 209:468-479, MAY 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2018.02.052">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000435535600014">454</a>] |
| </td> |
| <td> |
| I. M. Nasrtdinov, T. B. Zhuravleva, and T. Yu. Chesnokova. |
| <b>Estimation of Direct Radiative Effects of Background and Smoke |
| Aerosol in the IR Spectral Region for Siberian Summer Conditions</b>. |
| <em>ATMOSPHERIC AND OCEANIC OPTICS</em>, 31(3):317-323, MAY 2018. |
| [ <a href="http://dx.doi.org/10.1134/S1024856018030090">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000430778100007">455</a>] |
| </td> |
| <td> |
| Yu Xie, Manajit Sengupta, and Mike Dooraghi. |
| <b>Assessment of uncertainty in the numerical simulation of solar |
| irradiance over inclined PV panels: New algorithms using measurements and |
| modeling tools</b>. |
| <em>SOLAR ENERGY</em>, 165:55-64, MAY 1 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2018.02.073">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000430822200001">456</a>] |
| </td> |
| <td> |
| Marie Opalkova, Martin Navratil, Vladimir Spunda, Philippe Blanc, and Lucien |
| Wald. |
| <b>A database of 10 min average measurements of solar radiation and |
| meteorological variables in Ostrava, Czech Republic</b>. |
| <em>EARTH SYSTEM SCIENCE DATA</em>, 10(2):837-846, APR 25 2018. |
| [ <a href="http://dx.doi.org/10.5194/essd-10-837-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000430612800019">457</a>] |
| </td> |
| <td> |
| Srikanth Ayyala Somayajula, Emmanuel Devred, Simon Belanger, David Antoine, |
| V. Vellucci, and Marcel Babin. |
| <b>Evaluation of sea-surface photosynthetically available radiation |
| algorithms under various sky conditions and solar elevations</b>. |
| <em>APPLIED OPTICS</em>, 57(12):3088-3105, APR 20 2018. |
| [ <a href="http://dx.doi.org/10.1364/AO.57.003088">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000488490300001">458</a>] |
| </td> |
| <td> |
| Theano Drosoglou, Maria Elissavet Koukouli, Natalia Kouremeti, Alkiviadis F. |
| Bais, Irene Zyrichidou, Dimitris Balis, Ronald J. van der A, Jin Xu, and Ang |
| Li. |
| <b>MAX-DOAS NO<sub>2</sub> observations over Guangzhou, China; |
| ground-based and satellite comparisons</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 11(4):2239-2255, APR 19 |
| 2018. |
| [ <a href="http://dx.doi.org/10.5194/amt-11-2239-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000435187500072">459</a>] |
| </td> |
| <td> |
| Ronald Scheirer, Adam Dybbroe, and Martin Raspaud. |
| <b>A General Approach to Enhance Short Wave Satellite Imagery by |
| Removing Background Atmospheric Effects</b>. |
| <em>REMOTE SENSING</em>, 10(4), APR 2018. |
| [ <a href="http://dx.doi.org/10.3390/rs10040560">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000424144200153">460</a>] |
| </td> |
| <td> |
| K. L. Chan, M. Wiegner, M. Wenig, and D. Poehler. |
| <b>Observations of tropospheric aerosols and NO<sub>2</sub> in Hong |
| Kong over 5 years using ground based MAX-DOAS</b>. |
| <em>SCIENCE OF THE TOTAL ENVIRONMENT</em>, 619:1545-1556, APR 1 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.scitotenv.2017.10.153">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000427688100014">461</a>] |
| </td> |
| <td> |
| Dong Chen, Tatiana V. Loboda, Tao He, Yi Zhang, and Shunlin Liang. |
| <b>Strong cooling induced by stand-replacing fires through albedo |
| in Siberian larch forests</b>. |
| <em>SCIENTIFIC REPORTS</em>, 8, MAR 19 2018. |
| [ <a href="http://dx.doi.org/10.1038/s41598-018-23253-1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000430519400049">462</a>] |
| </td> |
| <td> |
| Yehia Eissa, Philippe Blanc, Hosni Ghedira, Armel Oumbe, and Lucien Wald. |
| <b>A fast and simple model to estimate the contribution of the |
| circumsolar irradiance to measured broadband beam irradiance under cloud-free |
| conditions in desert environment</b>. |
| <em>SOLAR ENERGY</em>, 163:497-509, MAR 15 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2018.02.015">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000428280100081">463</a>] |
| </td> |
| <td> |
| Pierre Ineichen. |
| <b>High Turbidity Solis Clear Sky Model: Development and |
| Validation</b>. |
| <em>REMOTE SENSING</em>, 10(3), MAR 2018. |
| [ <a href="http://dx.doi.org/10.3390/rs10030435">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000427342700027">464</a>] |
| </td> |
| <td> |
| Lang Xia, Fen Zhao, Liping Chen, Ruirui Zhang, Kebiao Mao, Arve Kylling, and |
| Ying Ma. |
| <b>Performance comparison of the MODIS and the VIIRS 1.38 pm cirrus |
| cloud channels using libRadtran and CALIOP data</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 206:363-374, MAR 1 2018. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2017.12.040">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000425208400001">465</a>] |
| </td> |
| <td> |
| Panagiotis G. Kosmopoulos, Stelios Kazadzis, Michael Taylor, Panagiotis I. |
| Raptis, Iphigenia Keramitsoglou, Chris Kiranoudis, and Alkiviadis F. Bais. |
| <b>Assessment of surface solar irradiance derived from real-time |
| modelling techniques and verification with ground-based measurements</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 11(2):907-924, FEB 15 |
| 2018. |
| [ <a href="http://dx.doi.org/10.5194/amt-11-907-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000424327800003">466</a>] |
| </td> |
| <td> |
| Klara Cizkova, Kamil Laska, Ladislav Metelka, and Martin Stanek. |
| <b>Reconstruction and analysis of erythemal UV radiation time |
| series from Hradec Kralove (Czech Republic) over the past 50 years</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 18(3):1805-1818, FEB 7 |
| 2018. |
| [ <a href="http://dx.doi.org/10.5194/acp-18-1805-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000424290900001">467</a>] |
| </td> |
| <td> |
| Mikhail Sofiev, James J. Winebrake, Lasse Johansson, Edward W. Carr, Marje |
| Prank, Joana Soares, Julius Vira, Rostislav Kouznetsov, Jukka-Pekka Jalkanen, |
| and James J. Corbett. |
| <b>Cleaner fuels for ships provide public health benefits with |
| climate tradeoffs</b>. |
| <em>NATURE COMMUNICATIONS</em>, 9, FEB 6 2018. |
| [ <a href="http://dx.doi.org/10.1038/s41467-017-02774-9">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000449173300001">468</a>] |
| </td> |
| <td> |
| Alexis Merlaud, Frederik Tack, Daniel Constantin, Lucian Georgescu, Jeroen |
| Maes, Caroline Fayt, Florin Mingireanu, Dirk Schuettemeyer, Andreas Carlos |
| Meier, Anja Schoenardt, Thomas Ruhtz, Livio Bellegante, Doina Nicolae, Mirjam |
| Den Hoed, Marc Allaart, and Michel Van Roozendael. |
| <b>The Small Whiskbroom Imager for atmospheric compositioN |
| monitorinG (SWING) and its operations from an unmanned aerial vehicle (UAV) |
| during the AROMAT campaign</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 11(1):551-567, JAN 29 |
| 2018. |
| [ <a href="http://dx.doi.org/10.5194/amt-11-551-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000422881100003">469</a>] |
| </td> |
| <td> |
| Myungje Choi, Jhoon Kim, Jaehwa Lee, Mijin Kim, Young-Je Park, Brent Holben, |
| Thomas F. Eck, Zhengqiang Li, and Chul H. Song. |
| <b>GOCI Yonsei aerosol retrieval version 2 products: an improved |
| algorithm and error analysis with uncertainty estimation from 5-year |
| validation over East Asia</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 11(1):385-408, JAN 17 |
| 2018. |
| [ <a href="http://dx.doi.org/10.5194/amt-11-385-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000619417100002">470</a>] |
| </td> |
| <td> |
| Su Wei, Zhang Mingzheng, Jiang Kunping, Zhu Dehai, Huang Jianxi, and Wang |
| Pengxin. |
| <b>Atmospheric Correction Method for Sentinel-2 Satellite Imagery</b>. |
| <em>ACTA OPTICA SINICA</em>, 38(1), JAN 10 2018. |
| [ <a href="http://dx.doi.org/10.3788/AOS201838.0128001">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000467482700004">471</a>] |
| </td> |
| <td> |
| Shikuan Jin, Yingying Ma, Yinbao Jin, Yuting Guan, and Ming Zhang. |
| <b>DIFFERENCES IN AEROSOL OPTICAL PROPERTIES AND CORRESPONDING |
| RADIATIVE EFFECTS OF HAZE EVENTS BETWEEN SUMMER AND WINTER IN A MEGA-CITY OF |
| CENTRAL CHINA</b>. |
| In L Wu, JB Cohen, D Loyola, H Letu, and K Qin, editors, <em>2018 |
| ISPRS WORKSHOP ON REMOTE SENSING AND SYNERGIC ANALYSIS ON ATMOSPHERIC |
| ENVIRONMENT</em>, volume 42-3 of <em>International Archives of the |
| Photogrammetry Remote Sensing and Spatial Information Sciences</em>, pages |
| 25-31. Int Soc Photogrammetry & Remote Sensing, 2018. |
| ISPRS Workshop on Remote Sensing and Synergic Analysis on Atmospheric |
| Environment, Guangzhou, PEOPLES R CHINA, NOV 07-08, 2018. |
| [ <a href="http://dx.doi.org/10.5194/isprs-archives-XLII-3-W5-25-2018">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000451039801097">472</a>] |
| </td> |
| <td> |
| Viivi Kallio and Aku Riihela. |
| <b>COMPARATIVE VALIDATION OF CLEAR SKY IRRADIANCE MODELS OVER |
| FINLAND</b>. |
| In <em>IGARSS 2018 - 2018 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE |
| SENSING SYMPOSIUM</em>, IEEE International Symposium on Geoscience and Remote |
| Sensing IGARSS, pages 1199-1202. Inst Elect & Elect Engineers; Inst Elect |
| & Elect Engineers Geoscience & Remote Sensing Soc; European Space Agcy, |
| 2018. |
| 38th IEEE International Geoscience and Remote Sensing Symposium |
| (IGARSS), Valencia, SPAIN, JUL 22-27, 2018. |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000451039805191">473</a>] |
| </td> |
| <td> |
| I. Sola, J. Alvarez-Mozos, and M. Gonzalez-Audicana. |
| <b>INTER-COMPARISON OF ATMOSPHERIC CORRECTION METHODS ON SENTINEL-2 |
| IMAGES APPLIED TO CROPLANDS</b>. |
| In <em>IGARSS 2018 - 2018 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE |
| SENSING SYMPOSIUM</em>, IEEE International Symposium on Geoscience and Remote |
| Sensing IGARSS, pages 5940-5943. Inst Elect & Elect Engineers; Inst Elect |
| & Elect Engineers Geoscience & Remote Sensing Soc; European Space Agcy, |
| 2018. |
| 38th IEEE International Geoscience and Remote Sensing Symposium |
| (IGARSS), Valencia, SPAIN, JUL 22-27, 2018. |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000451039807105">474</a>] |
| </td> |
| <td> |
| Jing Chen, Yingjie Li, Qingmiao Ma, Xiaoqi Shen, Anjing Zhao, and Jiasheng Li. |
| <b>PRELIMINARY EVALUATION OF SENTINEL-2 BOTTOM OF ATMOSPHERE |
| REFLECTANCE USING THE 6SV CODE IN BEIJING AREA</b>. |
| In <em>IGARSS 2018 - 2018 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE |
| SENSING SYMPOSIUM</em>, IEEE International Symposium on Geoscience and Remote |
| Sensing IGARSS, pages 7760-7763. Inst Elect & Elect Engineers; Inst Elect |
| & Elect Engineers Geoscience & Remote Sensing Soc; European Space Agcy, |
| 2018. |
| 38th IEEE International Geoscience and Remote Sensing Symposium |
| (IGARSS), Valencia, SPAIN, JUL 22-27, 2018. |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000419110000005">475</a>] |
| </td> |
| <td> |
| D. L. Burke, E. S. Rykoff, S. Allam, J. Annis, K. Bechtol, G. M. Bernstein, |
| A. Drlica-Wagner, D. A. Finley, R. A. Gruendl, D. J. James, S. Kent, |
| R. Kessler, S. Kuhlmann, J. Lasker, T. S. Li, D. Scolnic, J. Smith, D. L. |
| Tucker, W. Wester, B. Yanny, T. M. C. Abbott, F. B. Abdalla, A. Benoit-Levy, |
| E. Bertin, A. Carnero Rosell, M. Carrasco Kind, J. Carretero, C. E. Cunha, |
| C. B. D'Andrea, L. N. da Costa, S. Desai, H. T. Diehl, P. Doel, J. Estrada, |
| J. Garcia-Bellido, D. Gruen, G. Gutierrez, K. Honscheid, K. Kuehn, |
| N. Kuropatkin, M. A. G. Maia, M. March, J. L. Marshall, P. Melchior, |
| F. Menanteau, R. Miquel, A. A. Plazas, M. Sako, E. Sanchez, V. Scarpine, |
| R. Schindler, I. Sevilla-Noarbe, M. Smith, R. C. Smith, M. Soares-Santos, |
| F. Sobreira, E. Suchyta, G. Tarle, A. R. Walker, and DES Collaboration. |
| <b>Forward Global Photometric Calibration of the Dark Energy |
| Survey</b>. |
| <em>ASTRONOMICAL JOURNAL</em>, 155(1), JAN 2018. |
| [ <a href="http://dx.doi.org/10.3847/1538-3881/aa9f22">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000427764200001">476</a>] |
| </td> |
| <td> |
| T. Pulli, T. Karppinen, S. Nevas, P. Karha, K. Lakkala, J. M. Karhu, |
| M. Sildoja, A. Vaskuri, M. Shpak, F. Manoocheri, L. Doppler, S. Gross, |
| J. Mes, and E. Ikonen. |
| <b>Out-of-Range Stray Light Characterization of |
| Single-Monochromator Brewer Spectrophotometers</b>. |
| <em>ATMOSPHERE-OCEAN</em>, 56(1):1-11, 2018. |
| [ <a href="http://dx.doi.org/10.1080/07055900.2017.1419335">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000427373300013">477</a>] |
| </td> |
| <td> |
| Mateo Gasparovic and Tomislav Jogun. |
| <b>The effect of fusing Sentinel-2 bands on land-cover |
| classification</b>. |
| <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 39(3):822-841, 2018. |
| [ <a href="http://dx.doi.org/10.1080/01431161.2017.1392640">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000444815300004">478</a>] |
| </td> |
| <td> |
| Gunther Seckmeyer, Christopher Mustert, Michael Schrempf, Richard McKenzie, Ben |
| Liley, Michael Kotkamp, Alkiviadis Bais, Didier Gillotay, Harry Slaper, |
| Anna-Maria Siani, Andrew Smedley, and Ann Webb. |
| <b>Why is it so hard to gain enough Vitamin D by solar exposure in |
| the European winter?</b> |
| <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 27(3):223-233, 2018. |
| [ <a href="http://dx.doi.org/10.1127/metz/2018/0855">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000429961900002">479</a>] |
| </td> |
| <td> |
| A. Kazantzidis, E. Nikitidou, V. Salamalikis, P. Tzoumanikas, and A. Zagouras. |
| <b>New challenges in solar energy resource and forecasting in |
| Greece</b>. |
| <em>INTERNATIONAL JOURNAL OF SUSTAINABLE ENERGY</em>, 37(5):428-435, |
| 2018. |
| [ <a href="http://dx.doi.org/10.1080/14786451.2017.1280495">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000428263200004">480</a>] |
| </td> |
| <td> |
| Abdelhak Razagui, Nour El Islam Bachari, Amar Hadj Arab, M'hammed Boussir, and |
| Kamel Abdeladim. |
| <b>A comparative study of libRadtran and RTTOV predicted satellite |
| images using the WRF forecasting output</b>. |
| <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 39(12):4003-4019, |
| 2018. |
| [ <a href="http://dx.doi.org/10.1080/01431161.2018.1452067">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000418426500001">481</a>] |
| </td> |
| <td> |
| Germar Bernhard, Irina Petropavlovskikh, and Bernhard Mayer. |
| <b>Retrieving vertical ozone profiles from measurements of global |
| spectral irradiance</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(12):4979-4994, DEC 20 |
| 2017. |
| [ <a href="http://dx.doi.org/10.5194/amt-10-4979-2017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000418279200002">482</a>] |
| </td> |
| <td> |
| William Wandji Nyamsi, Mikko R. A. Pitkanen, Youva Aoun, Philippe Blanc, Anu |
| Heikkila, Kaisa Lakkala, Germar Bernhard, Tapani Koskela, Anders V. Lindfors, |
| Antti Arola, and Lucien Wald. |
| <b>A new method for estimating UV fluxes at ground level in |
| cloud-free conditions</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(12), DEC 19 2017. |
| [ <a href="http://dx.doi.org/10.5194/amt-10-4965-2017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000416941000003">483</a>] |
| </td> |
| <td> |
| Axel Kreuter, Mario Blumthaler, Martin Tiefengraber, Richard Kift, and Ann R. |
| Webb. |
| <b>Sky radiance at a coastline and effects of land and ocean |
| reflectivities</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(23):14353-14364, DEC 4 |
| 2017. |
| [ <a href="http://dx.doi.org/10.5194/acp-17-14353-2017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000419235700114">484</a>] |
| </td> |
| <td> |
| Joan-Cristian Padro, Xavier Pons, David Aragones, Ricardo Diaz-Delgado, Diego |
| Garcia, Javier Bustamante, Lluis Pesquer, Cristina Domingo-Marimon, Oscar |
| Gonzalez-Guerrero, Jordi Cristobal, Daniel Doktor, and Maximilian Lange. |
| <b>Radiometric Correction of Simultaneously Acquired |
| Landsat-7/Landsat-8 and Sentinel-2A Imagery Using Pseudoinvariant Areas |
| (PIA): Contributing to the Landsat Time Series Legacy</b>. |
| <em>REMOTE SENSING</em>, 9(12), DEC 2017. |
| [ <a href="http://dx.doi.org/10.3390/rs9121319">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000414393700013">485</a>] |
| </td> |
| <td> |
| Eric Bruneton. |
| <b>A Qualitative and Quantitative Evaluation of 8 Clear Sky |
| Models</b>. |
| <em>IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS</em>, |
| 23(12):2641-2655, DEC 2017. |
| [ <a href="http://dx.doi.org/10.1109/TVCG.2016.2622272">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000416551700001">486</a>] |
| </td> |
| <td> |
| Christine Aebi, Julian Grobner, Niklaus Kampfer, and Laurent Vuilleumier. |
| <b>Cloud radiative effect, cloud fraction and cloud type at two |
| stations in Switzerland using hemispherical sky cameras</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(12):4587-4600, NOV 30 |
| 2017. |
| [ <a href="http://dx.doi.org/10.5194/amt-10-4587-2017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000416266100001">487</a>] |
| </td> |
| <td> |
| Tim Carlsen, Gerit Birnbaum, Andre Ehrlich, Johannes Freitag, Georg Heygster, |
| Larysa Istomina, Sepp Kipfstuhl, Anais Orsi, Michael Schaefer, and Manfred |
| Wendisch. |
| <b>Comparison of different methods to retrieve optical-equivalent |
| snow grain size in central Antarctica</b>. |
| <em>CRYOSPHERE</em>, 11(6):2727-2741, NOV 27 2017. |
| [ <a href="http://dx.doi.org/10.5194/tc-11-2727-2017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000415895200001">488</a>] |
| </td> |
| <td> |
| Ulrich Schumann and Bernhard Mayer. |
| <b>Sensitivity of surface temperature to radiative forcing by |
| contrail cirrus in a radiative-mixing model</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(22):13833-13848, NOV 21 |
| 2017. |
| [ <a href="http://dx.doi.org/10.5194/acp-17-13833-2017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000409290200019">489</a>] |
| </td> |
| <td> |
| R. Roman, A. Cazorla, C. Toledano, F. J. Olmo, V. E. Cachorro, A. de Frutos, |
| and L. Alados-Arboledas. |
| <b>Cloud cover detection combining high dynamic range sky images |
| and ceilometer measurements</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 196:224-236, NOV 1 2017. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2017.06.006">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000413757200001">490</a>] |
| </td> |
| <td> |
| Guadalupe Sanchez, Antonio Serrano, and Maria Luisa Cancillo. |
| <b>Modeling the erythemal surface diffuse irradiance fraction for |
| Badajoz, Spain</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(20):12697-12708, OCT 26 |
| 2017. |
| [ <a href="http://dx.doi.org/10.5194/acp-17-12697-2017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000414650600027">491</a>] |
| </td> |
| <td> |
| Ming Zhang, Lunche Wang, Wei Gong, Yingying Ma, and Boming Liu. |
| <b>Aerosol Optical Properties and Direct Radiative Effects over |
| Central China</b>. |
| <em>REMOTE SENSING</em>, 9(10), OCT 2017. |
| [ <a href="http://dx.doi.org/10.3390/rs9100997">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000417373100015">492</a>] |
| </td> |
| <td> |
| Maria A. Obregon, Maria J. Costa, Ana M. Silva, and Antonio Serrano. |
| <b>Thirteen Years of Aerosol Radiative Forcing in Southwestern |
| Iberian Peninsula</b>. |
| <em>AEROSOL AND AIR QUALITY RESEARCH</em>, 17(10):2509-2521, OCT 2017. |
| [ <a href="http://dx.doi.org/10.4209/aaqr.2017.05.0159">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000411298800002">493</a>] |
| </td> |
| <td> |
| Ming Zhang, Yingying Ma, Wei Gong, Lunche Wang, Xiangao Xia, Huizheng Che, |
| Bo Hu, and Boming Liu. |
| <b>Aerosol radiative effect in UV, VIS, NIR, and SW spectra under |
| haze and high-humidity urban conditions</b>. |
| <em>ATMOSPHERIC ENVIRONMENT</em>, 166:9-21, OCT 2017. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2017.07.006">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000410779500002">25</a>] | [<a name="WOS:000410779500002">494</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Julian Grobner, Ingo Kroeger, Luca Egli, Gregor Hulsen, Stefan Riechelmann, and | Julian Grobner, Ingo Kroeger, Luca Egli, Gregor Hulsen, Stefan Riechelmann, and |
Peter Sperfeld. | Peter Sperfeld. |
<b>The high-resolution extraterrestrial solar spectrum (QASUMEFTS) | <b>The high-resolution extraterrestrial solar spectrum (QASUMEFTS) |
determined from ground-based solar irradiance measurements</b>. | determined from ground-based solar irradiance measurements</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(9):3375--3383, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(9):3375-3383, SEP 15 |
SEP 15 2017. | 2017. |
[ <a href="http://dx.doi.org/{10.5194/amt-10-3375-2017}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/amt-10-3375-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000405534800005">26</a>] | [<a name="WOS:000407525100002">495</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Margit Haberreiter, Micha Scholl, Thierry Dudok de Wit, Matthieu Kretzschmar, | Davide Magurno, Tiziano Maestri, Davide Grassi, Giuseppe Piccioni, and Giuseppe |
Stergios Misios, Kleareti Tourpali, and Werner Schmutz. | Sindoni. |
<b>A new observational solar irradiance composite</b>. | <b>Retrieval of Venus' cloud parameters from VIRTIS nightside |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS</em>, | spectra in the latitude band 25°-55°N</b>. |
122(6):5910--5930, JUN 2017. | <em>PLANETARY AND SPACE SCIENCE</em>, 144:16-31, SEP 15 2017. |
[ <a href="http://dx.doi.org/{10.1002/2016JA023492}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.pss.2017.06.004">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000408286900010">27</a>] | [<a name="WOS:000409039900002">496</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
N. Hanrieder, S. Wilbert, D. Mancera-Guevara, R. Buck, S. Giuliano, and | Birger Bohn and Insa Lohse. |
R. Pitz-Paal. | <b>Calibration and evaluation of CCD spectroradiometers for |
<b>Atmospheric extinction in solar tower plants - A review</b>. | ground-based and airborne measurements of spectral actinic flux densities</b>. |
<em>SOLAR ENERGY</em>, 152(SI):193--207, AUG 2017. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(9):3151-3174, SEP 1 |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2017.01.013}">DOI</a> ] | 2017. |
| [ <a href="http://dx.doi.org/10.5194/amt-10-3151-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000406539100005">28</a>] | [<a name="WOS:000410789900035">497</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Shensen Hu, Shuo Ma, Wei Yan, Jun Jiang, and Yunxian Huang. | Zheng Li-Juan, Cheng Tian-Hai, and Wu Yu. |
<b>A new multichannel threshold algorithm based on radiative | <b>Effect of aggregated black carbon aging on infrared absorption |
transfer characteristics for detecting fog/low stratus using night-time | and longwave radiative forcing</b>. |
NPP/VIIRS data</b>. | <em>ACTA PHYSICA SINICA</em>, 66(16), AUG 20 2017. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | [ <a href="http://dx.doi.org/10.7498/aps.66.169201">DOI</a> ] |
38(21):5919--5933, 2017. | |
[ <a href="http://dx.doi.org/{10.1080/01431161.2016.1265691}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000414949200003">29</a>] | [<a name="WOS:000407335000001">498</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Fabian Jakub and Bernhard Mayer. | Alexander Baklanov, Ulrik Smith Korsholm, Roman Nuterman, Alexander Mahura, |
<b>The role of 1-D and 3-D radiative heating in the organization | Kristian Pagh Nielsen, Bent Hansen Sass, Alix Rasmussen, Ashraf Zakey, Eigil |
of shallow cumulus convection and the formation of cloud streets</b>. | Kaas, Alexander Kurganskiy, Brian Sorensen, and Iratxe Gonzalez-Aparicio. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(21):13317--13327, | <b>Enviro-HIRLAM online integrated meteorology-chemistry modelling |
NOV 9 2017. | system: strategy, methodology, developments and applications (v7.2)</b>. |
[ <a href="http://dx.doi.org/{10.5194/acp-17-13317-2017}">DOI</a> ] | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 10(8):2971-2999, AUG 8 2017. |
| [ <a href="http://dx.doi.org/10.5194/gmd-10-2971-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000401492900045">30</a>] | [<a name="WOS:000408286900010">499</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
H. D. Kambezidis, B. E. Psiloglou, D. Karagiannis, U. C. Dumka, and D. G. | N. Hanrieder, S. Wilbert, D. Mancera-Guevara, R. Buck, S. Giuliano, and |
Kaskaoutis. | R. Pitz-Paal. |
<b>Meteorological Radiation Model (MRM v6.1): Improvements in | <b>Atmospheric extinction in solar tower plants - A review</b>. |
diffuse radiation estimates and a new approach for implementation of cloud | <em>SOLAR ENERGY</em>, 152(SI):193-207, AUG 2017. |
products</b>. | [ <a href="http://dx.doi.org/10.1016/j.solener.2017.01.013">DOI</a> ] |
<em>RENEWABLE & SUSTAINABLE ENERGY REVIEWS</em>, 74:616--637, | |
JUL 2017. | |
[ <a href="http://dx.doi.org/{10.1016/j.rser.2017.02.058}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000392385800167">31</a>] | [<a name="WOS:000405650300001">500</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Kampouris, V. Salamalikis, and A. Kazantzidis. | Linda Forster, Meinhard Seefeldner, Matthias Wiegner, and Bernhard Mayer. |
<b>The Atmospheric Water Vapor Effect on Direct Normal Irradiance | <b>Ice crystal characterization in cirrus clouds: a sun-tracking |
Under Clear Skies</b>. | camera system and automated detection algorithm for halo displays</b>. |
In Karacostas, TS and Bais, AF and Nastos, PT, editor, <em> | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(7):2499-2516, JUL 17 |
PERSPECTIVES ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, | 2017. |
pages 1163--1168. Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher | [ <a href="http://dx.doi.org/10.5194/amt-10-2499-2017">DOI</a> ] |
Phys; Aristotle Univ Thessaloniki, Sch Geol, Dept Meteorol & Climatol; | |
Hellen Meteorol Soc; Mariolopoulos Kanaginis Fdn Environm Sci, 2017. | |
13th International Conference on Meteorology, Climatology and | |
Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, | |
Thessaloniki, GREECE, SEP 19-21, 2016. | |
[ <a href="http://dx.doi.org/{10.1007/978-3-319-35095-0_167}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000392385800165">32</a>] | [<a name="WOS:000403986400009">501</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. G. Kosmopoulos, S. Kazadzis, M. Taylor, Alkiviadis F. Bais, K. Lagouvardos, | M. Anton, R. Roman, A. Sanchez-Lorenzo, J. Calbo, and J. M. Vaquero. |
V. Kotroni, I. Keramitsoglou, and C. Kiranoudis. | <b>Variability analysis of the reconstructed daily global solar |
<b>Estimation of the Solar Energy Potential in Greece Using | radiation under all-sky and cloud-free conditions in Madrid during the period |
Satellite and Ground-Based Observations</b>. | 1887-1950</b>. |
In Karacostas, TS and Bais, AF and Nastos, PT, editor, <em> | <em>ATMOSPHERIC RESEARCH</em>, 191:94-100, JUL 15 2017. |
PERSPECTIVES ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2017.03.013">DOI</a> ] |
pages 1149--1156. Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher | |
Phys; Aristotle Univ Thessaloniki, Sch Geol, Dept Meteorol & Climatol; | |
Hellen Meteorol Soc; Mariolopoulos Kanaginis Fdn Environm Sci, 2017. | |
13th International Conference on Meteorology, Climatology and | |
Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, | |
Thessaloniki, GREECE, SEP 19-21, 2016. | |
[ <a href="http://dx.doi.org/{10.1007/978-3-319-35095-0_165}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000405373900001">33</a>] | [<a name="WOS:000405373900001">502</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Panagiotis G. Kosmopoulos, Stelios Kazadzis, Michael Taylor, Eleni | Panagiotis G. Kosmopoulos, Stelios Kazadzis, Michael Taylor, Eleni |
Athanasopoulou, Orestis Speyer, Panagiotis I. Raptis, Eleni Marinou, | Athanasopoulou, Orestis Speyer, Panagiotis I. Raptis, Eleni Marinou, |
<b>Dust impact on surface solar irradiance assessed with model | <b>Dust impact on surface solar irradiance assessed with model |
simulations, satellite observations and ground-based measurements</b>. | simulations, satellite observations and ground-based measurements</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(7), JUL 11 | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(7), JUL 11 2017. |
2017. | [ <a href="http://dx.doi.org/10.5194/amt-10-2435-2017">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/amt-10-2435-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000394594500002">34</a>] | [<a name="WOS:000405178200001">503</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Tamas Kovacs, Wuhu Feng, Anna Totterdill, John M. C. Plane, Sandip Dhomse, | Laura Rontu, Emily Gleeson, Petri Raisanen, Kristian Pagh Nielsen, Hannu |
Juan Carlos Gomez-Martin, Gabriele P. Stiller, Florian J. Haenel, Christopher | Savijarvi, and Bent Hansen Sass. |
Smith, Piers M. Forster, Rolando R. Garcia, Daniel R. Marsh, and Martyn P. | <b>The HIRLAM fast radiation scheme for mesoscale numerical weather |
Chipperfield. | prediction models</b>. |
<b>Determination of the atmospheric lifetime and global warming | <em>ADVANCES IN SCIENCE AND RESEARCH</em>, 14:195-215, JUL 7 2017. |
potential of sulfur hexafluoride using a three-dimensional model</b>. | 16th EMS Annual Meeting / 11th European Conference on Applied |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(2):883--898, JAN | Climatology (ECAC), Trieste, ITALY, SEP 12-16, 2016. |
20 2017. | [ <a href="http://dx.doi.org/10.5194/asr-14-195-2017">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-17-883-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000416941000003">35</a>] | [<a name="WOS:000404803100003">504</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Axel Kreuter, Mario Blumthaler, Martin Tiefengraber, Richard Kift, and Ann R. | John Faulkner Burkhart, Arve Kylling, Crystal B. Schaaf, Zhuosen Wang, Wiley |
Webb. | Bogren, Rune Storvold, Stian Solbo, Christina A. Pedersen, and Sebastian |
<b>Sky radiance at a coastline and effects of land and ocean | Gerland. |
reflectivities</b>. | <b>Unmanned aerial system nadir reflectance and MODIS nadir |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(23):14353--14364, | BRDF-adjusted surface reflectances intercompared over Greenland</b>. |
DEC 4 2017. | <em>CRYOSPHERE</em>, 11(4):1575-1589, JUL 4 2017. |
[ <a href="http://dx.doi.org/{10.5194/acp-17-14353-2017}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/tc-11-1575-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000404745800010">36</a>] | [<a name="WOS:000404745800010">505</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raymond L. Lee, Jr. and Duncan C. Mollner. | Raymond L. Lee, Jr. and Duncan C. Mollner. |
<b>Tropospheric haze and colors of the clear twilight sky</b>. | <b>Tropospheric haze and colors of the clear twilight sky</b>. |
<em>APPLIED OPTICS</em>, 56(19):G179--G187, JUL 1 2017. | <em>APPLIED OPTICS</em>, 56(19):G179-G187, JUL 1 2017. |
[ <a href="http://dx.doi.org/{10.1364/AO.56.00G179}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1364/AO.56.00G179">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000405069800009">37</a>] | [<a name="WOS:000405069800009">506</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Y. J. Lee, A. Yamazaki, T. Imamura, M. Yamada, S. Watanabe, T. M. Sato, | Y. J. Lee, A. Yamazaki, T. Imamura, M. Yamada, S. Watanabe, T. M. Sato, |
K. Ogohara, G. L. Hashimoto, and S. Murakami. | K. Ogohara, G. L. Hashimoto, and S. Murakami. |
<b>Scattering Properties of the Venusian Clouds Observed by the UV | <b>Scattering Properties of the Venusian Clouds Observed by the UV |
Imager on board Akatsuki</b>. | Imager on board <i>Akatsuki</i></b>. |
<em>ASTRONOMICAL JOURNAL</em>, 154(1), JUL 2017. | <em>ASTRONOMICAL JOURNAL</em>, 154(1), JUL 2017. |
[ <a href="http://dx.doi.org/{10.3847/1538-3881/aa78a5}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3847/1538-3881/aa78a5">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000403043700001">38</a>] | [<a name="WOS:000403043700001">507</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Hui Liu, Bo Hu, Yuesi Wang, Guangren Liu, Liqin Tang, Dongsheng Ji, Yongfei | Hui Liu, Bo Hu, Yuesi Wang, Guangren Liu, Liqin Tang, Dongsheng Ji, Yongfei |
Bai, Weikai Bao, Xin Chen, Yunming Chen, Weixin Ding, Xiaozeng Han, Fei He, | Bai, Weikai Bao, Xin Chen, Yunming Chen, Weixin Ding, Xiaozeng Han, Fei He, |
Guoyi Zhou, and Bo Zhu. | Guoyi Zhou, and Bo Zhu. |
<b>Two Ultraviolet Radiation Datasets that Cover China</b>. | <b>Two Ultraviolet Radiation Datasets that Cover China</b>. |
<em>ADVANCES IN ATMOSPHERIC SCIENCES</em>, 34(7):805--815, JUL | <em>ADVANCES IN ATMOSPHERIC SCIENCES</em>, 34(7):805-815, JUL 2017. |
2017. | [ <a href="http://dx.doi.org/10.1007/s00376-017-6293-1">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1007/s00376-017-6293-1}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000407525100002">39</a>] | [<a name="WOS:000402380900004">508</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Davide Magurno, Tiziano Maestri, Davide Grassi, Giuseppe Piccioni, and Giuseppe | G. Chiodo, L. M. Polvani, and M. Previdi. |
Sindoni. | <b>Large Increase in Incident Shortwave Radiation due to the Ozone |
<b>Retrieval of Venus' cloud parameters from VIRTIS nightside | Hole Offset by High Climatological Albedo over Antarctica</b>. |
spectra in the latitude band 25 degrees-55 degrees N</b>. | <em>JOURNAL OF CLIMATE</em>, 30(13):4883-4890, JUL 2017. |
<em>PLANETARY AND SPACE SCIENCE</em>, 144:16--31, SEP 15 2017. | [ <a href="http://dx.doi.org/10.1175/JCLI-D-16-0842.1">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.pss.2017.06.004}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000399326200004">40</a>] | [<a name="WOS:000401492900045">509</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Mamara, M. Anadranistakis, A. A. Argiriou, T. Szentimrey, T. Kovacs, | H. D. Kambezidis, B. E. Psiloglou, D. Karagiannis, U. C. Dumka, and D. G. |
A. Bezes, and Z. Bihari. | Kaskaoutis. |
<b>High resolution air temperature climatology for Greece for the | <b>Meteorological Radiation Model (MRM v6.1): Improvements in |
period 1971-2000</b>. | diffuse radiation estimates and a new approach for implementation of cloud |
<em>METEOROLOGICAL APPLICATIONS</em>, 24(2):191--205, APR | products</b>. |
2017. | <em>RENEWABLE & SUSTAINABLE ENERGY REVIEWS</em>, 74:616-637, JUL 2017. |
[ <a href="http://dx.doi.org/{10.1002/met.1617}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.rser.2017.02.058">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000399067500009">510</a>] |
| </td> |
| <td> |
| Mate Adamkovics and Imke de Pater. |
| <b>Observations of the global haze redistribution on Titan from |
| 2006 to 2015 with OSIRIS at Keck</b>. |
| <em>ICARUS</em>, 290:134-149, JUL 1 2017. |
| [ <a href="http://dx.doi.org/10.1016/j.icarus.2017.02.015">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000404052800001">41</a>] | [<a name="WOS:000404052800001">511</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Katja Matthes, Bernd Funke, Monika E. Andersson, Luke Barnard, Jurg Beer, Paul | Katja Matthes, Bernd Funke, Monika E. Andersson, Luke Barnard, Jurg Beer, Paul |
Charbonneau, Mark A. Clilverd, Thierry Dudok de Wit, Margit Haberreiter, | Charbonneau, Mark A. Clilverd, Thierry Dudok de Wit, Margit Haberreiter, |
Verronen, and Stefan Versick. | Verronen, and Stefan Versick. |
<b>Solar forcing for CMIP6 (v3.2)</b>. | <b>Solar forcing for CMIP6 (v3.2)</b>. |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 10(6):2247--2302, JUN | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 10(6):2247-2302, JUN 22 2017. |
22 2017. | [ <a href="http://dx.doi.org/10.5194/gmd-10-2247-2017">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/gmd-10-2247-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000395505100006">42</a>] | [<a name="WOS:000403093300005">512</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Alexandra Medl, Stefan Mayr, Hans Peter Rauch, Philipp Weihs, and Florin | J. L. Casado-Rubio, M. A. Revuelta, M. Postigo, I. Martinez-Marco, and |
Florineth. | C. Yague. |
<b>Microclimatic conditions of `Green Walls', a new restoration | <b>A Postprocessing Methodology for Direct Normal Irradiance |
technique for steep slopes based on a steel grid construction</b>. | Forecasting Using Cloud Information and Aerosol Load Forecasts</b>. |
<em>ECOLOGICAL ENGINEERING</em>, 101:39--45, APR 2017. | <em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, |
[ <a href="http://dx.doi.org/{10.1016/j.ecoleng.2017.01.018}">DOI</a> ] | 56(6):1595-1608, JUN 2017. |
| [ <a href="http://dx.doi.org/10.1175/JAMC-D-16-0297.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000412962100030">43</a>] | [<a name="WOS:000404381900017">513</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Michael I. Mishchenko, Nadezhda T. Zakharova, Nikolai G. Khlebtsov, Gorden | Sang Seo Park, Migyoung Kim, Hanlim Lee, Hana Lee, Sang-Min Kim, and Yun Gon |
Videen, and Thomas Wriedt. | Lee. |
<b>Comprehensive thematic T-matrix reference database: A 2015-2017 | <b>Estimating Cloud and Aerosol UV Modification Factors Based on |
update</b>. | Spectral Measurement from the Brewer Spectrophotometer</b>. |
| <em>ATMOSPHERE</em>, 8(6), JUN 2017. |
| [ <a href="http://dx.doi.org/10.3390/atmos8060109">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000400038200008">514</a>] |
| </td> |
| <td> |
| V. V. Rozanov, T. Dinter, A. V. Rozanov, A. Wolanin, A. Bracher, and J. P. |
| Burrows. |
| <b>Radiative transfer modeling through terrestrial atmosphere and |
| ocean accounting for inelastic processes: Software package SCIATRAN</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
202:240--246, NOV 2017. | 194:65-85, JUN 2017. |
16th Conference on Electromagnetic and Light Scattering (ELS), | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2017.03.009">DOI</a> ] |
College Park, MD, MAR 19-25, 2017. | |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2017.08.007}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000401405600001">44</a>] | [<a name="WOS:000401432200002">515</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Antti Arola, Thomas F. Eck, Harri Kokkola, Mikko R. A. Pitkanen, and Sami |
| Romakkaniemi. |
| <b>Assessment of cloud-related fine-mode AOD enhancements based on |
| AERONET SDA product</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(9):5991-6001, MAY 16 |
| 2017. |
| [ <a href="http://dx.doi.org/10.5194/acp-17-5991-2017">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000401405600001">516</a>] |
| </td> |
| <td> |
Nobuhiro Moteki, Kouji Adachi, Sho Ohata, Atsushi Yoshida, Tomoo Harigaya, | Nobuhiro Moteki, Kouji Adachi, Sho Ohata, Atsushi Yoshida, Tomoo Harigaya, |
Makoto Koike, and Yutaka Kondo. | Makoto Koike, and Yutaka Kondo. |
<b>Anthropogenic iron oxide aerosols enhance atmospheric | <b>Anthropogenic iron oxide aerosols enhance atmospheric heating</b>. |
heating</b>. | |
<em>NATURE COMMUNICATIONS</em>, 8, MAY 16 2017. | <em>NATURE COMMUNICATIONS</em>, 8, MAY 16 2017. |
[ <a href="http://dx.doi.org/{10.1038/ncomms15329}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1038/ncomms15329">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000392385800166">45</a>] | [<a name="WOS:000401103400003">517</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Nikitidou, P. Tzoumanikas, Alkiviadis F. Bais, and A. Kazantzidis. | Theano Drosoglou, Alkiviadis F. Bais, Irene Zyrichidou, Natalia Kouremeti, |
<b>The Effect of Clouds on Surface Solar Irradiance, from an | Anastasia Poupkou, Natalia Liora, Christos Giannaros, Maria Elissavet |
All-Sky Camera, in Thessaloniki, Greece</b>. | Koukouli, Dimitris Balis, and Dimitrios Melas. |
In Karacostas, TS and Bais, AF and Nastos, PT, editor, <em> | <b>Comparisons of ground-based tropospheric NO<sub>2</sub> MAX-DOAS |
PERSPECTIVES ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, | measurements to satellite observations with the aid of an air quality model |
pages 1157--1162. Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher | over the Thessaloniki area, Greece</b>. |
Phys; Aristotle Univ Thessaloniki, Sch Geol, Dept Meteorol & Climatol; | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(9):5829-5849, MAY 11 |
Hellen Meteorol Soc; Mariolopoulos Kanaginis Fdn Environm Sci, 2017. | 2017. |
13th International Conference on Meteorology, Climatology and | [ <a href="http://dx.doi.org/10.5194/acp-17-5829-2017">DOI</a> ] |
Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, | |
Thessaloniki, GREECE, SEP 19-21, 2016. | |
[ <a href="http://dx.doi.org/{10.1007/978-3-319-35095-0_166}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000404381900017">46</a>] | [<a name="WOS:000398651000019">518</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sang Seo Park, Migyoung Kim, Hanlim Lee, Hana Lee, Sang-Min Kim, and Yun Gon | Ravinesh C. Deo, Nathan Downs, Alfio V. Parisi, Jan F. Adamowski, and John M. |
Lee. | Quilty. |
<b>Estimating Cloud and Aerosol UV Modification Factors Based on | <b>Very short-term reactive forecasting of the solar ultraviolet |
Spectral Measurement from the Brewer Spectrophotometer</b>. | index using an extreme learning machine integrated with the solar zenith |
<em>ATMOSPHERE</em>, 8(6), JUN 2017. | angle</b>. |
[ <a href="http://dx.doi.org/{10.3390/atmos8060109}">DOI</a> ] | <em>ENVIRONMENTAL RESEARCH</em>, 155:141-166, MAY 2017. |
| [ <a href="http://dx.doi.org/10.1016/j.envres.2017.01.035">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000394368900003">47</a>] | [<a name="WOS:000398186600001">519</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Zhipeng Qu, Armel Oumbe, Philippe Blanc, Bella Espinar, Gerhard Gesell, Benoit | Frances Beckett, Arve Kylling, Guomunda Siguroardottir, Sibylle von Loewis, and |
Gschwind, Lars Klueser, Mireille Lefevre, Laurent Saboret, Marion | Claire Witham. |
Schroedter-Homscheidt, and Lucien Wald. | <b>Quantifying the mass loading of particles in an ash cloud |
<b>Fast radiative transfer parameterisation for assessing the | remobilized from tephra deposits on Iceland</b>. |
surface solar irradiance: The Heliosat-4 method</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(7):4401-4418, APR 3 |
<em>METEOROLOGISCHE ZEITSCHRIFT</em>, 26(1):33--57, 2017. | 2017. |
[ <a href="http://dx.doi.org/{10.1127/metz/2016/0781}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-17-4401-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000409290200019">48</a>] | [<a name="WOS:000404058300015">520</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. Roman, A. Cazorla, C. Toledano, F. J. Olmo, V. E. Cachorro, A. de Frutos, | Daniel-Eduard Constantin, Alexis Merlaud, Mirela Voiculescu, Carmelia Dragomir, |
and L. Alados-Arboledas. | Lucian Georgescu, Francois Hendrick, Gaia Pinardi, and Michel Van Roozendael. |
<b>Cloud cover detection combining high dynamic range sky images | <b>Mobile DOAS Observations of Tropospheric NO<sub>2</sub> Using an |
and ceilometer measurements</b>. | UltraLight Trike and Flux Calculation</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 196:224--236, NOV 1 2017. | <em>ATMOSPHERE</em>, 8(4), APR 2017. |
[ <a href="http://dx.doi.org/{10.1016/j.atmosres.2017.06.006}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3390/atmos8040078">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000402573700009">49</a>] | [<a name="WOS:000399326200004">521</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Filomena Romano, Domenico Cimini, Saverio T. Nilo, Francesco Di Paola, | A. Mamara, M. Anadranistakis, A. A. Argiriou, T. Szentimrey, T. Kovacs, |
Elisabetta Ricciardelli, Ermann Ripepi, and Mariassunta Viggiano. | A. Bezes, and Z. Bihari. |
<b>The Role of Emissivity in the Detection of Arctic Night | <b>High resolution air temperature climatology for Greece for the |
Clouds</b>. | period 1971-2000</b>. |
<em>REMOTE SENSING</em>, 9(5), MAY 2017. | <em>METEOROLOGICAL APPLICATIONS</em>, 24(2):191-205, APR 2017. |
[ <a href="http://dx.doi.org/{10.3390/rs9050406}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/met.1617">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000405178200001">50</a>] | [<a name="WOS:000395505100006">522</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Laura Rontu, Emily Gleeson, Petri Raisanen, Kristian Pagh Nielsen, Hannu | Alexandra Medl, Stefan Mayr, Hans Peter Rauch, Philipp Weihs, and Florin |
Savijarvi, and Bent Hansen Sass. | Florineth. |
<b>The HIRLAM fast radiation scheme for mesoscale numerical | <b>Microclimatic conditions of `Green Walls', a new restoration |
weather prediction models</b>. | technique for steep slopes based on a steel grid construction</b>. |
<em>ADVANCES IN SCIENCE AND RESEARCH</em>, 14:195--215, JUL 7 | <em>ECOLOGICAL ENGINEERING</em>, 101:39-45, APR 2017. |
2017. | [ <a href="http://dx.doi.org/10.1016/j.ecoleng.2017.01.018">DOI</a> ] |
16th EMS Annual Meeting / 11th European Conference on Applied | |
Climatology (ECAC), Trieste, ITALY, SEP 12-16, 2016. | |
[ <a href="http://dx.doi.org/{10.5194/asr-14-195-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000400038200008">51</a>] | [<a name="WOS:000397941100001">523</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
V. V. Rozanov, T. Dinter, A. V. Rozanov, A. Wolanin, A. Bracher, and J. P. | Kevin Wolf, Andre Ehrlich, Tilman Hueneke, Klaus Pfeilsticker, Frank Werner, |
Burrows. | Martin Wirth, and Manfred Wendisch. |
<b>Radiative transfer modeling through terrestrial atmosphere and | <b>Potential of remote sensing of cirrus optical thickness by |
ocean accounting for inelastic processes: Software package SCIATRAN</b>. | airborne spectral radiance measurements at different sideward viewing |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | angles</b>. |
194:65--85, JUN 2017. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(6):4283-4303, MAR 30 |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2017.03.009}">DOI</a> ] | 2017. |
| [ <a href="http://dx.doi.org/10.5194/acp-17-4283-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000410696600002">52</a>] | [<a name="WOS:000397497700017">524</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Marina-Ramona Rujoiu-Mare, Bogdan Olariu, Bogdan-Andrei Mihai, Constantin | Blanka Bartok. |
Nistor, and Ionut Savulescu. | <b>Aerosol radiative effects under clear skies over Europe and |
<b>Land cover classification in Romanian Carpathians and | their changes in the period of 2001-2012</b>. |
Subcarpathians using multi-date Sentinel-2 remote sensing imagery</b>. | <em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, 37(4):1901-1909, MAR 30 |
<em>EUROPEAN JOURNAL OF REMOTE SENSING</em>, 50(1):496--508, | |
2017. | 2017. |
[ <a href="http://dx.doi.org/{10.1080/22797254.2017.1365570}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/joc.4821">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000397319500031">53</a>] | [<a name="WOS:000396128700001">525</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Dongok Ryu, Sug-Whan Kim, and Robert P. Breault. | Rosa Delia Garcia, Emilio Cuevas, Omaira Elena Garcia, Ramon Ramos, Pedro |
<b>New earth system model for optical performance evaluation of | Miguel Romero-Campos, Fernado de Ory, Victoria Eugenia Cachorro, and Angel |
space instruments</b>. | de Frutos. |
<em>OPTICS EXPRESS</em>, 25(5):4926--4944, MAR 6 2017. | <b>Compatibility of different measurement techniques of global |
[ <a href="http://dx.doi.org/{10.1364/OE.25.004926}">DOI</a> ] | solar radiation and application for long-term observations at Izana |
| Observatory</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(3):731-743, MAR 7 2017. |
| [ <a href="http://dx.doi.org/10.5194/amt-10-731-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000394622600010">54</a>] | [<a name="WOS:000395404000004">526</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Vanda Salgueiro, Maria Joao Costa, Ana Maria Silva, Christian Lanconelli, and | Jonas Witthuhn, Hartwig Deneke, Andreas Macke, and Germar Bernhard. |
Daniele Bortoli. | <b>Algorithms and uncertainties for the determination of |
<b>Cloud parameter retrievals from Meteosat and their effects on | multispectral irradiance components and aerosol optical depth from a |
the shortwave radiation at the surface</b>. | shipborne rotating shadowband radiometer</b>. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(2):709-730, MAR 3 2017. |
38(4):1137--1161, 2017. | [ <a href="http://dx.doi.org/10.5194/amt-10-709-2017">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1080/01431161.2017.1280630}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000413757200001">55</a>] | [<a name="WOS:000397550500002">527</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Guadalupe Sanchez, Antonio Serrano, and Maria Luisa Cancillo. | Christopher J. Smith, Jamie M. Bright, and Rolf Crook. |
<b>Modeling the erythemal surface diffuse irradiance fraction for | <b>Cloud cover effect of clear-sky index distributions and |
Badajoz, Spain</b>. | differences between human and automatic cloud observations</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(20):12697--12708, | <em>SOLAR ENERGY</em>, 144:10-21, MAR 1 2017. |
OCT 26 2017. | [ <a href="http://dx.doi.org/10.1016/j.solener.2016.12.055">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-17-12697-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000395130600001">56</a>] | [<a name="WOS:000395168200001">528</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Michael Schaefer, Eike Bierwirth, Andre Ehrlich, Evelyn Jaekel, Frank Werner, | A. Fernando Almansa, Emilio Cuevas, Benjamin Torres, Africa Barreto, Rosa D. |
and Manfred Wendisch. | Garcia, Victoria E. Cachorro, Angel M. de Frutos, Cesar Lopez, and Ramon |
<b>Directional, horizontal inhomogeneities of cloud optical | Ramos. |
thickness fields retrieved from ground-based and airbornespectral imaging</b>. | <b>A new zenith-looking narrow-band radiometer-based system (ZEN) |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(3):2359--2372, | for dust aerosol optical depth monitoring</b>. |
FEB 15 2017. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(2):565-579, FEB 20 |
[ <a href="http://dx.doi.org/{10.5194/acp-17-2359-2017}">DOI</a> ] | 2017. |
| [ <a href="http://dx.doi.org/10.5194/amt-10-565-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000415895200001">57</a>] | [<a name="WOS:000395130600001">529</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ulrich Schumann and Bernhard Mayer. | Michael Schaefer, Eike Bierwirth, Andre Ehrlich, Evelyn Jaekel, Frank Werner, |
<b>Sensitivity of surface temperature to radiative forcing by | and Manfred Wendisch. |
contrail cirrus in a radiative-mixing model</b>. | <b>Directional, horizontal inhomogeneities of cloud optical |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(22):13833--13848, | thickness fields retrieved from ground-based and airbornespectral imaging</b>. |
NOV 21 2017. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(3):2359-2372, FEB 15 |
[ <a href="http://dx.doi.org/{10.5194/acp-17-13833-2017}">DOI</a> ] | 2017. |
| [ <a href="http://dx.doi.org/10.5194/acp-17-2359-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000395101600002">58</a>] | [<a name="WOS:000395101600002">530</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Tobias Sirch, Luca Bugliaro, Tobias Zinner, Matthias Moehrlein, and Margarita | Tobias Sirch, Luca Bugliaro, Tobias Zinner, Matthias Moehrlein, and Margarita |
Vazquez-Navarro. | Vazquez-Navarro. |
<b>Cloud and DNI nowcasting with MSG/SEVIRI for the optimized | <b>Cloud and DNI nowcasting with MSG/SEVIRI for the optimized |
operation of concentrating solar power plants</b>. | operation of concentrating solar power plants</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(2):409--429, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(2):409-429, FEB 2 2017. |
FEB 2 2017. | [ <a href="http://dx.doi.org/10.5194/amt-10-409-2017">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/amt-10-409-2017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000406091200017">59</a>] | [<a name="WOS:000390499100003">531</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Brian Slovick, Zachary Flom, Lucas Zipp, and Srini Krishnamurthy. | Vojtech Bliznak, Zbynek Sokol, and Petr Zacharov. |
<b>Transfer matrix method for four-flux radiative transfer</b>. | <b>Nowcasting of deep convective clouds and heavy precipitation: |
<em>APPLIED OPTICS</em>, 56(21):5890--5896, JUL 20 2017. | Comparison study between NWP model simulation and extrapolation</b>. |
[ <a href="http://dx.doi.org/{10.1364/AO.56.005890}">DOI</a> ] | <em>ATMOSPHERIC RESEARCH</em>, 184:24-34, FEB 1 2017. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2016.10.003">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000397550500002">60</a>] | [<a name="WOS:000394597600004">532</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Christopher J. Smith, Jamie M. Bright, and Rolf Crook. | Holger Tost. |
<b>Cloud cover effect of clear-sky index distributions and | <b>Chemistry-climate interactions of aerosol nitrate from |
differences between human and automatic cloud observations</b>. | lightning</b>. |
<em>SOLAR ENERGY</em>, 144:10--21, MAR 1 2017. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(2):1125-1142, JAN 24 |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2016.12.055}">DOI</a> ] | 2017. |
| [ <a href="http://dx.doi.org/10.5194/acp-17-1125-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000394597600004">61</a>] | [<a name="WOS:000394594500002">533</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Holger Tost. | Tamas Kovacs, Wuhu Feng, Anna Totterdill, John M. C. Plane, Sandip Dhomse, |
<b>Chemistry-climate interactions of aerosol nitrate from | Juan Carlos Gomez-Martin, Gabriele P. Stiller, Florian J. Haenel, Christopher |
lightning</b>. | Smith, Piers M. Forster, Rolando R. Garcia, Daniel R. Marsh, and Martyn P. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(2):1125--1142, | Chipperfield. |
JAN 24 2017. | <b>Determination of the atmospheric lifetime and global warming |
[ <a href="http://dx.doi.org/{10.5194/acp-17-1125-2017}">DOI</a> ] | potential of sulfur hexafluoride using a three-dimensional model</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(2):883-898, JAN 20 2017. |
| [ <a href="http://dx.doi.org/10.5194/acp-17-883-2017">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000392385800102">62</a>] | [<a name="WOS:000410696600002">534</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Tzoumanikas, E. Nikitidou, V. Salamalikis, Alkiviadis F. Bais, and | Marina-Ramona Rujoiu-Mare, Bogdan Olariu, Bogdan-Andrei Mihai, Constantin |
A. Kazantzidis. | Nistor, and Ionut Savulescu. |
<b>Climatological Maps of Solar Energy in Greece from the Hellenic | <b>Land cover classification in Romanian Carpathians and |
Network of Solar Energy</b>. | Subcarpathians using multi-date Sentinel-2 remote sensing imagery</b>. |
In Karacostas, TS and Bais, AF and Nastos, PT, editor, <em> | <em>EUROPEAN JOURNAL OF REMOTE SENSING</em>, 50(1):496-508, 2017. |
PERSPECTIVES ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, | [ <a href="http://dx.doi.org/10.1080/22797254.2017.1365570">DOI</a> ] |
pages 713--718. Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher Phys; | |
Aristotle Univ Thessaloniki, Sch Geol, Dept Meteorol & Climatol; Hellen | |
Meteorol Soc; Mariolopoulos Kanaginis Fdn Environm Sci, 2017. | |
13th International Conference on Meteorology, Climatology and | |
Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, | |
Thessaloniki, GREECE, SEP 19-21, 2016. | |
[ <a href="http://dx.doi.org/{10.1007/978-3-319-35095-0_102}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000392385800168">63</a>] | [<a name="WOS:000394622600010">535</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. Vamvakas and A. Kazantzidis. | Vanda Salgueiro, Maria Joao Costa, Ana Maria Silva, Christian Lanconelli, and |
<b>On the Enhancement of Solar Irradiance Due to the Presence of | Daniele Bortoli. |
Clouds at Patras, Greece</b>. | <b>Cloud parameter retrievals from Meteosat and their effects on |
In Karacostas, TS and Bais, AF and Nastos, PT, editor, <em> | the shortwave radiation at the surface</b>. |
PERSPECTIVES ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 38(4):1137-1161, |
pages 1169--1174. Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher | 2017. |
Phys; Aristotle Univ Thessaloniki, Sch Geol, Dept Meteorol & Climatol; | [ <a href="http://dx.doi.org/10.1080/01431161.2017.1280630">DOI</a> ] |
Hellen Meteorol Soc; Mariolopoulos Kanaginis Fdn Environm Sci, 2017. | |
13th International Conference on Meteorology, Climatology and | |
Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, | |
Thessaloniki, GREECE, SEP 19-21, 2016. | |
[ <a href="http://dx.doi.org/{10.1007/978-3-319-35095-0_168}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000395404000004">64</a>] | [<a name="WOS:000438846300026">536</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Jonas Witthuhn, Hartwig Deneke, Andreas Macke, and Germar Bernhard. | A. Ramkilowan and D. J. Griffith. |
<b>Algorithms and uncertainties for the determination of | <b>MORTICIA, a statistical analysis software package for |
multispectral irradiance components and aerosol optical depth from a | determining optical surveillance system effectiveness.</b> |
shipborne rotating shadowband radiometer</b>. | In MS Potgieter, editor, <em>28TH ANNUAL IUPAP CONFERENCE ON |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 10(2):709--730, | COMPUTATIONAL PHYSICS (CCP2016)</em>, volume 905 of <em>Journal of Physics |
MAR 3 2017. | Conference Series</em>. Int Union Pure & Appl Chem, Commiss Computat Phys; Natl |
[ <a href="http://dx.doi.org/{10.5194/amt-10-709-2017}">DOI</a> ] | Res Fdn S Africa; Ctr High Performance Comp; DST NRF Ctr Strong Mat; Amer |
| Phys Soc Div Computat Phys, 2017. |
| 28th Annual IUPAP Conference on Computational Physics (CCP), S |
| African Inst Phys, Pretoria, SOUTH AFRICA, JUL 10-14, 2016. |
| [ <a href="http://dx.doi.org/10.1088/1742-6596/905/1/012026">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000397941100001">65</a>] | [<a name="WOS:000426987500076">537</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Kevin Wolf, Andre Ehrlich, Tilman Hueneke, Klaus Pfeilsticker, Frank Werner, | Yi Zhang, Tao He, Shunlin Liang, and Dongdong Wang. |
Martin Wirth, and Manfred Wendisch. | <b>Estimation of All-Sky Instantaneous Photosynthetically Active |
<b>Potential of remote sensing of cirrus optical thickness by | Radiation from Visible Infrared Imaging Radiometer Suite Data Using |
airborne spectral radiance measurements at different sideward viewing | Optimization Method</b>. |
angles</b>. | In <em>2017 6TH INTERNATIONAL CONFERENCE ON AGRO-GEOINFORMATICS</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(6):4283--4303, | International Conference on Agro-Geoinformatics, pages 393-397. George Mason |
MAR 30 2017. | Univ, Ctr Spatial Informat Sci & Syst; IEEE Geoscience & Remote Sensing |
[ <a href="http://dx.doi.org/{10.5194/acp-17-4283-2017}">DOI</a> ] | Soc; Agr & Agri-food Canada; United States Dept Agr; CSISS Fdn Inc; Natl |
| Inst Food Agr, United States Dept Agr; PIESAT; Chinese Acad Agr Sci; Minist |
| Agr China, Key Lab Agri Informat; Open Geospatial Consortium; TARBIL Agrl |
| Informat Appl Res Ctr; Natl Agrl Stat Serv, U S Dept Agr, 2017. |
| 6th International Conference on Agro-Geoinformatics, Fairfax, VA, AUG |
| 07-10, 2017. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000393877800022">66</a>] | [<a name="WOS:000425842700008">538</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. A. Yamasoe, N. M. E. do Rosario, and K. M. Barros. | Olivier Liandrat, Sylvain Cros, Antonin Braun, Laurent Saint-Antonin, Jacques |
<b>Downward solar global irradiance at the surface in Sao Paulo | Decroix, and Nicolas Schmutz. |
city-The climatological effects of aerosol and clouds</b>. | <b>Cloud cover forecast from a ground-based all sky infrared |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | thermal camera</b>. |
122(1):391--404, JAN 2017. | In A Comeron, EI Kassianov, K Schafer, RH Picard, and K Weber, |
[ <a href="http://dx.doi.org/{10.1002/2016JD025585}">DOI</a> ] | editors, <em>REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE XXII</em>, volume 10424 |
| of <em>Proceedings of SPIE</em>. SPIE, 2017. |
| Conference on Remote Sensing of Clouds and the Atmosphere XXII, |
| Warsaw, POLAND, SEP 12-14, 2017. |
| [ <a href="http://dx.doi.org/10.1117/12.2278636">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000399511800010">67</a>] | [<a name="WOS:000417377900194">539</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Melina Maria Zempila, Michael Taylor, Maria Elissavet Koukouli, Christophe | Natalie Hanrieder, Stefan Wilbert, Marion Schroedter-Homscheidt, Franziska |
Lerot, Konstantinos Fragkos, Ilias Fountoulakis, Alkiviadis Bais, Dimitrios | Schnell, Diana Mancera Guevara, Reiner Buck, Stefano Giuliano, and Robert |
Balis, and Michel van Roozendael. | Pitz-Paal. |
<b>NILU-UV multi-filter radiometer total ozone columns: Comparison | <b>Atmospheric Extinction in Simulation Tools for Solar Tower |
with satellite observations over Thessaloniki, Greece</b>. | Plants</b>. |
<em>SCIENCE OF THE TOTAL ENVIRONMENT</em>, 590:92--106, JUL 15 | In A AlObaidli, N Calvet, and C Richter, editors, <em>INTERNATIONAL |
2017. | CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS |
[ <a href="http://dx.doi.org/{10.1016/j.scitotenv.2017.02.174}">DOI</a> ] | (SOLARPACES 2016)</em>, volume 1850 of <em>AIP Conference Proceedings</em>. UAE |
| Minist Energy, 2017. |
| 22nd International Conference on Concentrating Solar Power and |
| Chemical Energy Systems (SOLARPACES), Masdar Inst Sci & Technol, Abu Dhabi, |
| U ARAB EMIRATES, OCT 11-14, 2016. |
| [ <a href="http://dx.doi.org/10.1063/1.4984519">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000403779200001">68</a>] | [<a name="WOS:000417377900195">540</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Melina-Maria Zempila, Jos H. G. M. van Geffen, Michael Taylor, Ilias | Andreas Kazantzidis, Panagiotis Tzoumanikas, Efterpi Nikitidou, Vasileios |
Fountoulakis, Maria-Elissavet Koukouli, Michiel van Weele, Ronald J. van der | Salamalikis, Stefan Wilbert, and Christoph Prahl. |
A, Alkiviadis Bais, Charikleia Meleti, and Dimitrios Balis. | <b>Application of Simple All-sky Imagers for the Estimation of |
<b>TEMIS UV product validation using NILU-UV ground-based | Aerosol Optical Depth</b>. |
measurements in Thessaloniki, Greece</b>. | In A AlObaidli, N Calvet, and C Richter, editors, <em>INTERNATIONAL |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 17(11):7157--7174, | CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS |
JUN 16 2017. | (SOLARPACES 2016)</em>, volume 1850 of <em>AIP Conference Proceedings</em>. UAE |
[ <a href="http://dx.doi.org/{10.5194/acp-17-7157-2017}">DOI</a> ] | Minist Energy, 2017. |
| 22nd International Conference on Concentrating Solar Power and |
| Chemical Energy Systems (SOLARPACES), Masdar Inst Sci & Technol, Abu Dhabi, |
| U ARAB EMIRATES, OCT 11-14, 2016. |
| [ <a href="http://dx.doi.org/10.1063/1.4984520">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000411298800002">69</a>] | [<a name="WOS:000406539100005">541</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ming Zhang, Yingying Ma, Wei Gong, Lunche Wang, Xiangao Xia, Huizheng Che, | Shensen Hu, Shuo Ma, Wei Yan, Jun Jiang, and Yunxian Huang. |
Bo Hu, and Boming Liu. | <b>A new multichannel threshold algorithm based on radiative |
<b>Aerosol radiative effect in UV, VIS, NIR, and SW spectra under | transfer characteristics for detecting fog/low stratus using night-time |
haze and high-humidity urban conditions</b>. | NPP/VIIRS data</b>. |
<em>ATMOSPHERIC ENVIRONMENT</em>, 166:9--21, OCT 2017. | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 38(21):5919-5933, |
[ <a href="http://dx.doi.org/{10.1016/j.atmosenv.2017.07.006}">DOI</a> ] | 2017. |
| [ <a href="http://dx.doi.org/10.1080/01431161.2016.1265691">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000414650600027">70</a>] | [<a name="WOS:000393877800022">542</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ming Zhang, Lunche Wang, Wei Gong, Yingying Ma, and Boming Liu. | M. A. Yamasoe, N. M. E. do Rosario, and K. M. Barros. |
<b>Aerosol Optical Properties and Direct Radiative Effects over | <b>Downward solar global irradiance at the surface in Sao Paulo |
Central China</b>. | city-The climatological effects of aerosol and clouds</b>. |
<em>REMOTE SENSING</em>, 9(10), OCT 2017. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 122(1):391-404, |
[ <a href="http://dx.doi.org/{10.3390/rs9100997}">DOI</a> ] | JAN 2017. |
| [ <a href="http://dx.doi.org/10.1002/2016JD025585">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000410789900035">71</a>] | [<a name="WOS:000392385800073">543</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Zheng Li-Juan, Cheng Tian-Hai, and Wu Yu. | M. Anadranistakis, A. Mamara, and A. A. Argiriou. |
<b>Effect of aggregated black carbon aging on infrared absorption | <b>Spatial Analysis of the Air Temperature in Greece for the Normal |
and longwave radiative forcing</b>. | Period 1971-2000</b>. |
<em>ACTA PHYSICA SINICA</em>, 66(16), AUG 20 2017. | In TS Karacostas, AF Bais, and PT Nastos, editors, <em>PERSPECTIVES |
[ <a href="http://dx.doi.org/{10.7498/aps.66.169201}">DOI</a> ] | ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, pages 509-514. |
| Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher Phys; Aristotle Univ |
| Thessaloniki, Sch Geol, Dept Meteorol & Climatol; Hellen Meteorol Soc; |
| Mariolopoulos Kanaginis Fdn Environm Sci, 2017. |
| 13th International Conference on Meteorology, Climatology and |
| Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, |
| Thessaloniki, GREECE, SEP 19-21, 2016. |
| [ <a href="http://dx.doi.org/10.1007/978-3-319-35095-0\_73">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000416029200001">72</a>] | [<a name="WOS:000392385800102">544</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ralf Zuber, Ansgar Stuehrmann, Anton Gugg-Helminger, and Gunther Seckmeyer. | P. Tzoumanikas, E. Nikitidou, V. Salamalikis, Alkiviadis F. Bais, and |
<b>Technology for detecting spectral radiance by a snapshot | A. Kazantzidis. |
multi-imaging spectroradiometer</b>. | <b>Climatological Maps of Solar Energy in Greece from the Hellenic |
<em>MEASUREMENT SCIENCE AND TECHNOLOGY</em>, 28(12), DEC 2017. | Network of Solar Energy</b>. |
[ <a href="http://dx.doi.org/{10.1088/1361-6501/aa9409}">DOI</a> ] | In TS Karacostas, AF Bais, and PT Nastos, editors, <em>PERSPECTIVES |
| ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, pages 713-718. |
| Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher Phys; Aristotle Univ |
| Thessaloniki, Sch Geol, Dept Meteorol & Climatol; Hellen Meteorol Soc; |
| Mariolopoulos Kanaginis Fdn Environm Sci, 2017. |
| 13th International Conference on Meteorology, Climatology and |
| Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, |
| Thessaloniki, GREECE, SEP 19-21, 2016. |
| [ <a href="http://dx.doi.org/10.1007/978-3-319-35095-0\_102">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2016</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000392385800165">545</a>] |
| </td> |
| <td> |
| P. G. Kosmopoulos, S. Kazadzis, M. Taylor, Alkiviadis F. Bais, K. Lagouvardos, |
| V. Kotroni, I. Keramitsoglou, and C. Kiranoudis. |
| <b>Estimation of the Solar Energy Potential in Greece Using |
| Satellite and Ground-Based Observations</b>. |
| In TS Karacostas, AF Bais, and PT Nastos, editors, <em>PERSPECTIVES |
| ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, pages 1149-1156. |
| Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher Phys; Aristotle Univ |
| Thessaloniki, Sch Geol, Dept Meteorol & Climatol; Hellen Meteorol Soc; |
| Mariolopoulos Kanaginis Fdn Environm Sci, 2017. |
| 13th International Conference on Meteorology, Climatology and |
| Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, |
| Thessaloniki, GREECE, SEP 19-21, 2016. |
| [ <a href="http://dx.doi.org/10.1007/978-3-319-35095-0\_165">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000386091300118">1</a>] | [<a name="WOS:000392385800166">546</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
X. Ai, A. Perez-Serrano, M. Quatrevalet, R. W. Nock, N. Dahnoun, G. Ehret, | E. Nikitidou, P. Tzoumanikas, Alkiviadis F. Bais, and A. Kazantzidis. |
I. Esquivias, and J. G. Rarity. | <b>The Effect of Clouds on Surface Solar Irradiance, from an |
<b>Analysis of a random modulation single photon counting | All-Sky Camera, in Thessaloniki, Greece</b>. |
differential absorption lidar system for space-borne atmospheric CO2 | In TS Karacostas, AF Bais, and PT Nastos, editors, <em>PERSPECTIVES |
sensing</b>. | ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, pages 1157-1162. |
<em>OPTICS EXPRESS</em>, 24(18):21119--21133, SEP 5 2016. | Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher Phys; Aristotle Univ |
[ <a href="http://dx.doi.org/{10.1364/OE.24.021119}">DOI</a> ] | Thessaloniki, Sch Geol, Dept Meteorol & Climatol; Hellen Meteorol Soc; |
| Mariolopoulos Kanaginis Fdn Environm Sci, 2017. |
| 13th International Conference on Meteorology, Climatology and |
| Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, |
| Thessaloniki, GREECE, SEP 19-21, 2016. |
| [ <a href="http://dx.doi.org/10.1007/978-3-319-35095-0\_166">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000381935100034">2</a>] | [<a name="WOS:000392385800167">547</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Federico Amato, Federico Martellozzo, Beniamino Murgante, and Gabriele Nole. | E. Kampouris, V. Salamalikis, and A. Kazantzidis. |
<b>Urban Solar Energy Potential in Europe</b>. | <b>The Atmospheric Water Vapor Effect on Direct Normal Irradiance |
In Gervasi, O and Murgante, B and Misra, S and Rocha, AMAC and | Under Clear Skies</b>. |
Torre, CM and Tanier, D and Apduhan, BO and Stankova, E and Wang, S, editor, | In TS Karacostas, AF Bais, and PT Nastos, editors, <em>PERSPECTIVES |
<em>COMPUTATIONAL SCIENCE AND ITS APPLICATIONS - ICCSA 2016, PT III</em>, | ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, pages 1163-1168. |
volume 9788 of <em>Lecture Notes in Computer Science</em>, pages 443--453. | Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher Phys; Aristotle Univ |
Beijing Univ Post & Telecommunicat; Univ Perugia; Monash Univ; Kyushu | Thessaloniki, Sch Geol, Dept Meteorol & Climatol; Hellen Meteorol Soc; |
Sangyo Univ; Univ Basilicata; Univ Minho; State Key Lab Networking & | Mariolopoulos Kanaginis Fdn Environm Sci, 2017. |
Switching Technol; Springer Int Publishing AG; NVidia Co, 2016. | 13th International Conference on Meteorology, Climatology and |
16th International Conference on Computational Science and Its | Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, |
Applications (ICCSA), Beijing, PEOPLES R CHINA, JUL 04-07, 2016. | Thessaloniki, GREECE, SEP 19-21, 2016. |
[ <a href="http://dx.doi.org/{10.1007/978-3-319-42111-7_34}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/978-3-319-35095-0\_167">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000372766100005">3</a>] | [<a name="WOS:000392385800168">548</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Margit Aun, Kalju Eerme, Martin Aun, and Ilmar Ansko. | I. Vamvakas and A. Kazantzidis. |
<b>Reconstruction of UVB and UVA radiation at Toravere, Estonia, | <b>On the Enhancement of Solar Irradiance Due to the Presence of |
for the years 1955-2003</b>. | Clouds at Patras, Greece</b>. |
<em>PROCEEDINGS OF THE ESTONIAN ACADEMY OF SCIENCES</em>, | In TS Karacostas, AF Bais, and PT Nastos, editors, <em>PERSPECTIVES |
65(1):50--57, 2016. | ON ATMOSPHERIC SCIENCES</em>, Springer Atmospheric Sciences, pages 1169-1174. |
[ <a href="http://dx.doi.org/{10.3176/proc.2016.1.05}">DOI</a> ] | Aristotle Univ Thessaloniki, Sch Phys, Lab Atmospher Phys; Aristotle Univ |
| Thessaloniki, Sch Geol, Dept Meteorol & Climatol; Hellen Meteorol Soc; |
| Mariolopoulos Kanaginis Fdn Environm Sci, 2017. |
| 13th International Conference on Meteorology, Climatology and |
| Atmospheric Physics (COMECAP), Aristotle Univ Res Disseminat Ctr, |
| Thessaloniki, GREECE, SEP 19-21, 2016. |
| [ <a href="http://dx.doi.org/10.1007/978-3-319-35095-0\_168">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000381083500009">4</a>] | [<a name="WOS:000455636000035">549</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Viorel Badescu and Alexandru Dumitrescu. | Yu Xie, Manajit Sengupta, and Chris Deline. |
<b>CMSAF products Cloud Fraction Coverage and Cloud Type used for | <b>Recent Advancements in the Numerical Simulation of Surface |
solar global irradiance estimation</b>. | Irradiance for Solar Energy Applications</b>. |
<em>METEOROLOGY AND ATMOSPHERIC PHYSICS</em>, 128(4):525--535, | In <em>2017 IEEE 44TH PHOTOVOLTAIC SPECIALIST CONFERENCE (PVSC)</em>, |
AUG 2016. | IEEE Photovoltaic Specialists Conference, pages 116-119, 2017. |
[ <a href="http://dx.doi.org/{10.1007/s00703-015-0424-y}">DOI</a> ] | IEEE 44th Photovoltaic Specialist Conference (PVSC), Washington, DC, |
| JUN 25-30, 2017. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000373143600012">5</a>] | [<a name="WOS:000447851300006">550</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Viorel Badescu and Alexandru Dumitrescu. | Michael J. Wolff, Miguel Lopez-Valverde, Jean-Baptiste Madeleine, R. John |
<b>Simple solar radiation modelling for different cloud types and | Wilson, Michael D. Smith, Thierry Fouchet, and Gregory T. Delory. |
climatologies</b>. | <b>Radiative Process: Techniques and Applications</b>. |
<em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 124(1-2):141--160, | In <em>ATMOSPHERE AND CLIMATE OF MARS</em>, Cambridge Planetary Science |
APR 2016. | Series, pages 106-171. 2017. |
[ <a href="http://dx.doi.org/{10.1007/s00704-015-1400-7}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000384823000007">6</a>] | [<a name="WOS:000419173400022">551</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ruben Barragan, Salvatore Romano, Michael Sicard, Pasquale Burlizzi, Maria Rita | Ina Neher, Tina Buchmann, Susanne Crewell, Bernd Evers-Dietze, Klaus |
Perrone, and Adolfo Comeron. | Pfeilsticker, Berhard Pospichal, Christoper Schirrmeister, and Stefanie |
<b>Estimation of mineral dust direct radiative forcing at the | Meilinger. |
European Aerosol Research Lidar NETwork site of Lecce, Italy, during the | <b>Impact of atmospheric aerosols on photovoltaic energy production |
ChArMEx/ADRIMED summer 2013 campaign: Impact of radiative transfer model | Scenario for the Sahel zone</b>. |
spectral resolutions</b>. | In S Martens, C Juhlin, S Hangx, and M Kuhn, editors, <em>EUROPEAN |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | GEOSCIENCES UNION GENERAL ASSEMBLY 2017, EGU DIVISION ENERGY, RESOURCES & |
121(17):10237--10261, SEP 2016. | ENVIRONMENT (ERE)</em>, volume 125 of <em>Energy Procedia</em>, pages 170-179. |
[ <a href="http://dx.doi.org/{10.1002/2016JD025016}">DOI</a> ] | European Geosciences Union, Energy Resources & Environm; European |
| Geosciences Union, 2017. |
| General Assembly of |
| European-Geosciences-Union-Energy-Resources-and-Environment-Division, Vienna, |
| AUSTRIA, APR 23-28, 2017. |
| [ <a href="http://dx.doi.org/10.1016/j.egypro.2017.08.168">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000377311400048">7</a>] | [<a name="WOS:000457690600360">552</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Giorgio Belluardo, Grazia Barchi, Dietmar Baumgartner, Marcus Rennhofer, | John D. Hedley, Brandon J. Russell, Kaylan Randolph, Miguel A. Perez-Castro, |
Philipp Weihs, and David Moser. | Roman M. Vasquez-Elizondo, Susana Enriquez, and Heidi M. Dierssen. |
<b>Uncertainty analysis of a radiative transfer model using Monte | <b>Remote Sensing of Seagrass Leaf Area Index and Species: The |
Carlo method within 280-2500 nm region</b>. | Capability of a Model Inversion Method Assessed by Sensitivity Analysis and |
<em>SOLAR ENERGY</em>, 132:558--569, JUL 2016. | Hyperspectral Data of Florida Bay</b>. |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2016.03.050}">DOI</a> ] | <em>FRONTIERS IN MARINE SCIENCE</em>, 4, 2017. |
| [ <a href="http://dx.doi.org/10.3389/fmars.2017.00362">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000379411800010">8</a>] | [<a name="WOS:000419754400004">553</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Wiley Steven Bogren, John Faulkner Burkhart, and Arve Kylling. | Ulrich Schumann and Andrew J. Heymsfield. |
<b>Tilt error in cryospheric surface radiation measurements at | <b>On the Life Cycle of Individual Contrails and Contrail Cirrus</b>. |
high latitudes: a model study</b>. | In D Baumgardner, GM McFarquhar, and AJ Heymsfield, editors, <em>ICE |
<em>CRYOSPHERE</em>, 10(2):613--622, 2016. | FORMATION AND EVOLUTION IN CLOUDS AND PRECIPITATION: MEASUREMENT AND MODELING |
[ <a href="http://dx.doi.org/{10.5194/tc-10-613-2016}">DOI</a> ] | CHALLENGES</em>, volume 58 of <em>Meteorological Monographs</em>. 2017. |
| [ <a href="http://dx.doi.org/10.1175/AMSMONOGRAPHS-D-16-0005.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000368323100032">9</a>] | [<a name="WOS:000425842500003">554</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Dominik Benjamin Bucher, Corinna Lucia Kufner, Alexander Schlueter, Thomas | Magdalena Main-Knorn, Bringfried Pflug, Jerome Louis, Vincent Debaecker, Uwe |
Carell, and Wolfgang Zinth. | Muller-Wilm, and Ferran Gascon. |
<b>UV-Induced Charge Transfer States in DNA Promote Sequence | <b>Sen2Cor for Sentinel-2</b>. |
Selective Self-Repair</b>. | In L Bruzzone and F Bovolo, editors, <em>IMAGE AND SIGNAL PROCESSING |
<em>JOURNAL OF THE AMERICAN CHEMICAL SOCIETY</em>, | FOR REMOTE SENSING XXIII</em>, volume 10427 of <em>Proceedings of SPIE</em>. SPIE, |
138(1):186--190, JAN 13 2016. | 2017. |
[ <a href="http://dx.doi.org/{10.1021/jacs.5b09753}">DOI</a> ] | Conference on Image and Signal Processing for Remote Sensing XXIII, |
| Warsaw, POLAND, SEP 11-13, 2017. |
| [ <a href="http://dx.doi.org/10.1117/12.2278218">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000374354000006">10</a>] | [<a name="WOS:000394368900003">555</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Robert Buras-Schnell, Franziska Schnell, and Allan Buras. | Zhipeng Qu, Armel Oumbe, Philippe Blanc, Bella Espinar, Gerhard Gesell, Benoit |
<b>GORRAM: Introducing accurate operational-speed radiative | Gschwind, Lars Klueser, Mireille Lefevre, Laurent Saboret, Marion |
transfer Monte Carlo solvers</b>. | Schroedter-Homscheidt, and Lucien Wald. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <b>Fast radiative transfer parameterisation for assessing the |
176:50--61, JUN 2016. | surface solar irradiance: The Heliosat-4 method</b>. |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2016.01.033}">DOI</a> ] | <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 26(1):33-57, 2017. |
| [ <a href="http://dx.doi.org/10.1127/metz/2016/0781">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000375613600034">11</a>] | [<a name="WOS:000481407400005">556</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Myungje Choi, Jhoon Kim, Jaehwa Lee, Mijin Kim, Young-Je Park, Ukkyo Jeong, | Brian Diffey. |
Woogyung Kim, Hyunkee Hong, Brent Holben, Thomas F. Eck, Chul H. Song, | <b>Factors that influence the quality and quantity of terrestrial |
Jae-Hyun Lim, and Chang-Keun Song. | solar UV radiation</b>. |
<b>GOCI Yonsei Aerosol Retrieval (YAER) algorithm and validation | In <em>SUN PROTECTION: A RISK MANAGEMENT APPROACH</em>, IOP Expanding |
during the DRAGON-NE Asia 2012 campaign</b>. | Physics. 2017. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(3):1377--1398, | [ <a href="http://dx.doi.org/10.1088/978-0-7503-1377-3ch3">DOI</a> ] |
2016. | |
[ <a href="http://dx.doi.org/{10.5194/amt-9-1377-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000371624600001">12</a>] | [<a name="WOS:000389731800007">557</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. R. Cordero, A. Damiani, G. Seckmeyer, J. Jorquera, M. Caballero, P. Rowe, | Guanghui Huang, Xin Li, Mingguo Ma, Hongyi Li, and Chunlin Huang. |
J. Ferrer, R. Mubarak, J. Carrasco, R. Rondanelli, M. Matus, and D. Laroze. | <b>High resolution surface radiation products for studies of |
<b>The Solar Spectrum in the Atacama Desert</b>. | regional energy, hydrologic and ecological processes over Heihe river basin, |
<em>SCIENTIFIC REPORTS</em>, 6, MAR 2 2016. | northwest China</b>. |
[ <a href="http://dx.doi.org/{10.1038/srep22457}">DOI</a> ] | <em>AGRICULTURAL AND FOREST METEOROLOGY</em>, 230:67-78, DEC 15 2016. |
| [ <a href="http://dx.doi.org/10.1016/j.agrformet.2016.04.007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000387118700003">13</a>] | [<a name="WOS:000391279600003">558</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Agnieszka E. Czerwinska, JanuszW. Krzyscin, Janusz Jaroslawski, and Michal | Stelios Kazadzis, Panagiotis Raptis, Natalia Kouremeti, Vassilis Amiridis, |
Posyniak. | Antti Arola, Evangelos Gerasopoulos, and Gregory L. Schuster. |
<b>Effects of urban agglomeration on surface-UV doses: a | <b>Aerosol absorption retrieval at ultraviolet wavelengths in a |
comparison of Brewer measurements in Warsaw and Belsk, Poland, for the period | complex environment</b>. |
2013-2015</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(12):5997-6011, DEC 13 |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(21):13641--13651, | 2016. |
NOV 3 2016. | [ <a href="http://dx.doi.org/10.5194/amt-9-5997-2016">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-16-13641-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000374390300008">14</a>] | [<a name="WOS:000390649800002">559</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Davide D'Alimonte and Tamito Kajiyama. | Frank Werner, Galina Wind, Zhibo Zhang, Steven Platnick, Larry Di Girolamo, |
<b>Effects of light polarization and waves slope statistics on the | Guangyu Zhao, Nandana Amarasinghe, and Kerry Meyer. |
reflectance factor of the sea surface</b>. | <b>Marine boundary layer cloud property retrievals from |
<em>OPTICS EXPRESS</em>, 24(8):7922--7942, APR 18 2016. | high-resolution ASTER observations: case studies and comparison with Terra |
[ <a href="http://dx.doi.org/{10.1364/OE.24.007922}">DOI</a> ] | MODIS</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(12):5869-5894, DEC 8 |
| 2016. |
| [ <a href="http://dx.doi.org/10.5194/amt-9-5869-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000375616100031">15</a>] | [<a name="WOS:000389178200001">560</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Henri Diemoz, Kostas Eleftheratos, Stelios Kazadzis, Vassilis Amiridis, and | Yu Wu, Tianhai Cheng, Lijuan Zheng, and Hao Chen. |
Christos S. Zerefos. | <b>Black carbon radiative forcing at TOA decreased during aging</b>. |
<b>Retrieval of aerosol optical depth in the visible range with a | <em>SCIENTIFIC REPORTS</em>, 6, DEC 5 2016. |
Brewer spectrophotometer in Athens</b>. | [ <a href="http://dx.doi.org/10.1038/srep38592">DOI</a> ] |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(4):1871--1888, | |
2016. | |
[ <a href="http://dx.doi.org/{10.5194/amt-9-1871-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000379404000011">16</a>] | [<a name="WOS:000392489400046">561</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Simone Dietmueller, Patrick Joeckel, Holger Tost, Markus Kunze, Catrin | Gerrit Kuhlmann, Andreas Hueni, Alexander Damm, and Dominik Brunner. |
Gellhorn, Sabine Brinkop, Christine Froemming, Michael Ponater, Benedikt | <b>An Algorithm for In-Flight Spectral Calibration of Imaging |
Steil, Axel Lauer, and Johannes Hendricks. | Spectrometers</b>. |
<b>A new radiation infrastructure for the Modular Earth Submodel | <em>REMOTE SENSING</em>, 8(12), DEC 2016. |
System (MESSy, based on version 2.51)</b>. | [ <a href="http://dx.doi.org/10.3390/rs8121017">DOI</a> ] |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 9(6):2209--2222, | |
2016. | |
[ <a href="http://dx.doi.org/{10.5194/gmd-9-2209-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000375616100010">17</a>] | [<a name="WOS:000388820700005">562</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Luca Egli, Julian Groebner, Gregor Huelsen, Luciano Bachmann, Mario Blumthaler, | Akihiko Fukui, John Livingston, Norio Narita, Teruyuki Hirano, Masahiro |
Jimmy Dubard, Marina Khazova, Richard Kift, Kees Hoogendijk, Antonio Serrano, | Onitsuka, Tsuguru Ryu, and Nobuhiko Kusakabe. |
Andrew Smedley, and Jose-Manuel Vilaplana. | <b>GROUND-BASED TRANSIT OBSERVATION OF THE HABITABLE-ZONE |
<b>Quality assessment of solar UV irradiance measured with array | SUPER-EARTH K2-3D</b>. |
spectroradiometers</b>. | <em>ASTRONOMICAL JOURNAL</em>, 152(6), DEC 2016. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(4):1553--1567, | [ <a href="http://dx.doi.org/10.3847/0004-6256/152/6/171">DOI</a> ] |
2016. | |
[ <a href="http://dx.doi.org/{10.5194/amt-9-1553-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000376937800001">18</a>] | [<a name="WOS:000387861500002">563</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Claudia Emde, Robert Buras-Schnell, Arve Kylling, Bernhard Mayer, Josef | Laura Riuttanen, Marja Bister, Veli-Matti Kerminen, Viju O. John, Anu-Maija |
Gasteiger, Ulrich Hamann, Jonas Kylling, Bettina Richter, Christian Pause, | Sundstrom, Miikka Dal Maso, Jouni Raisanen, Victoria A. Sinclair, Risto |
Timothy Dowling, and Luca Bugliaro. | Makkonen, Filippo Xausa, Gerrit de Leeuw, and Markku Kulmala. |
<b>The libRadtran software package for radiative transfer | <b>Observational evidence for aerosols increasing upper |
calculations (version 2.0.1)</b>. | tropospheric humidity</b>. |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 9(5):1647--1672, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(22):14331-14342, NOV 17 |
2016. | 2016. |
[ <a href="http://dx.doi.org/{10.5194/gmd-9-1647-2016}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-16-14331-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000379417300013">19</a>] | [<a name="WOS:000385231600073">564</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Fanny Finger, Frank Werner, Marcus Klingebiel, Andre Ehrlich, Evelyn Jaekel, | V. Kornilov, M. Kornilov, O. Voziakova, N. Shatsky, B. Safonov, I. Gorbunov, |
Matthias Voigt, Stephan Borrmann, Peter Spichtinger, and Manfred Wendisch. | S. Potanin, D. Cheryasov, and V. Senik. |
<b>Spectral optical layer properties of cirrus from collocated | <b>Night-sky brightness and extinction at Mt Shatdzhatmaz</b>. |
airborne measurements and simulations</b>. | <em>MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(12):7681--7693, | 462(4):4464-4472, NOV 11 2016. |
2016. | [ <a href="http://dx.doi.org/10.1093/mnras/stw1839">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-16-7681-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000372971500039">20</a>] | [<a name="WOS:000387453400001">565</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ilias Fountoulakis, Alkiviadis F. Bais, Konstantinos Fragkos, Charickleia | Shi Song, K. Sebastian Schmidt, Peter Pilewskie, Michael D. King, Andrew K. |
Meleti, Kleareti Tourpali, and Melina Maria Zempila. | Heidinger, Andi Walther, Hironobu Iwabuchi, Gala Wind, and Odele M. |
<b>Short- and long-term variability of spectral solar UV | Coddington. |
irradiance at Thessaloniki, Greece: effects of changes in aerosols, total | <b>The spectral signature of cloud spatial structure in shortwave |
ozone and clouds</b>. | irradiance</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(4):2493--2505, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(21):13791-13806, NOV 8 |
2016. | 2016. |
[ <a href="http://dx.doi.org/{10.5194/acp-16-2493-2016}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-16-13791-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000388820700005">21</a>] | [<a name="WOS:000387118700003">566</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Akihiko Fukui, John Livingston, Norio Narita, Teruyuki Hirano, Masahiro | Agnieszka E. Czerwinska, JanuszW. Krzyscin, Janusz Jaroslawski, and Michal |
Onitsuka, Tsuguru Ryu, and Nobuhiko Kusakabe. | Posyniak. |
<b>GROUND-BASED TRANSIT OBSERVATION OF THE HABITABLE-ZONE | <b>Effects of urban agglomeration on surface-UV doses: a comparison |
SUPER-EARTH K2-3D</b>. | of Brewer measurements in Warsaw and Belsk, Poland, for the period |
<em>ASTRONOMICAL JOURNAL</em>, 152(6), DEC 2016. | 2013-2015</b>. |
[ <a href="http://dx.doi.org/{10.3847/0004-6256/152/6/171}">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(21):13641-13651, NOV 3 |
| 2016. |
| [ <a href="http://dx.doi.org/10.5194/acp-16-13641-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000367734800026">22</a>] | [<a name="WOS:000381246700016">567</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. D. Garcia, V. E. Cachorro, E. Cuevas, C. Toledano, A. Redondas, | F. Oliva, A. Adriani, M. L. Moriconi, G. L. Liberti, E. D'Aversa, and |
M. Blumthaler, and Y. Benounna. | G. Filacchione. |
<b>Comparison of measured and modelled spectral UV irradiance at | <b>Clouds and hazes vertical structure of a Saturn's giant vortex |
Izana high mountain station: estimation of the underlying effective albedo</b>. | from Cassini/VIMS-V data analysis</b>. |
<em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, 36(1):377--388, | <em>ICARUS</em>, 278:215-237, NOV 1 2016. |
JAN 2016. | [ <a href="http://dx.doi.org/10.1016/j.icarus.2016.06.021">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1002/joc.4355}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000386726600072">23</a>] | [<a name="WOS:000386205900006">568</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Josef Gasteiger, Matthias Wiegner, Carlos Toledano, Silke Gross, and Volker | Yulan Hong, Guosheng Liu, and J. L. F. Li. |
Freudenthaler. | <b>Assessing the Radiative Effects of Global Ice Clouds Based on |
<b>CASE STUDY ON COMBINED LIDAR-PHOTOMETER RETRIEVAL OF VOLCANIC | <i>CloudSat</i> and <i>CALIPSO</i> Measurements</b>. |
ASH PROPERTIES</b>. | <em>JOURNAL OF CLIMATE</em>, 29(21):7651-7674, NOV 2016. |
In Gross, B and Moshary, F and Arend, M, editor, <em>27TH | [ <a href="http://dx.doi.org/10.1175/JCLI-D-15-0799.1">DOI</a> ] |
INTERNATIONAL LASER RADAR CONFERENCE (ILRC 27)</em>, volume 119 of <em>EPJ | |
Web of Conferences</em>. City Univ New York, City Coll, 2016. | |
27th International Laser Radar Conference (ILRC), Natl Ocean & | |
Atmospher Adm, Cooperat Remote Sensing Sci & Technol Ctr, New York City, NY, | |
JUL 05-10, 2015. | |
[ <a href="http://dx.doi.org/{10.1051/epjconf/201611907004}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000376938100026">24</a>] | [<a name="WOS:000387112200001">569</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Emily Gleeson, Velle Toll, Kristian Pagh Nielsen, Laura Rontu, and Jan Masek. | Joana Soares, Mikhail Sofiev, Camilla Geels, Jens H. Christensen, Camilla |
<b>Effects of aerosols on clear-sky solar radiation in the | Andersson, Svetlana Tsyro, and Joakim Langner. |
ALADIN-HIRLAM NWP system</b>. | <b>Impact of climate change on the production and transport of sea |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(9):5933--5948, | salt aerosol on European seas</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(20):13081-13104, OCT 26 |
2016. | 2016. |
[ <a href="http://dx.doi.org/{10.5194/acp-16-5933-2016}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-16-13081-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000388510000011">25</a>] | [<a name="WOS:000397623800001">570</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Oystein Godoy. | Vinay K. Kayetha and Richard L. Collins. |
<b>Operational high latitude surface irradiance products from | <b>Optically thin midlevel ice clouds derived from Cloud Aerosol |
polar orbiting satellites</b>. | Lidar and Infrared Pathfinder Satellite Observations</b>. |
<em>POLAR SCIENCE</em>, 10(4):564--575, DEC 2016. | <em>JOURNAL OF APPLIED REMOTE SENSING</em>, 10, OCT 24 2016. |
[ <a href="http://dx.doi.org/{10.1016/j.polar.2016.10.001}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1117/1.JRS.10.046007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000381099900007">26</a>] | [<a name="WOS:000390652500001">571</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Marloes Groeneveld, Lars Tranvik, Sivakiruthika Natchimuthu, and Birgit | Zhian Sun, Jiangnan Li, Yongjian He, Jiandong Li, Aixia Liu, and Feng Zhang. |
Koehler. | <b>Determination of direct normal irradiance including circumsolar |
<b>Photochemical mineralisation in a boreal brown water lake: | radiation in climate/NWP models</b>. |
considerable temporal variability and minor contribution to carbon dioxide | <em>QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY</em>, 142(700, |
production</b>. | PT A):2591-2598, OCT 2016. |
<em>BIOGEOSCIENCES</em>, 13(13):3931--3943, 2016. | [ <a href="http://dx.doi.org/10.1002/qj.2848">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/bg-13-3931-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000373866800023">27</a>] | [<a name="WOS:000381321600022">572</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
N. Hanrieder, M. Sengupta, Y. Xie, S. Wilbert, and R. Pitz-Paal. | Melina-Maria Zempila, Michael Taylor, Alkiviadis Bais, and Stelios Kazadzis. |
<b>Modeling beam attenuation in solar tower plants using common | <b>Modeling the relationship between photosynthetically active |
DNI measurements</b>. | radiation and global horizontal irradiance using singular spectrum analysis</b>. |
<em>SOLAR ENERGY</em>, 129:244--255, MAY 2016. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2016.01.051}">DOI</a> ] | 182:240-263, OCT 2016. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2016.06.003">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000368746800011">28</a>] | [<a name="WOS:000384407900003">573</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
John Hedley, Brandon Russell, Kaylan Randolph, and Heidi Dierssen. | Tobias Zinner, Petra Hausmann, Florian Ewald, Luca Bugliaro, Claudia Emde, and |
<b>A physics-based method for the remote sensing of seagrasses</b>. | Bernhard Mayer. |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 174:134--147, MAR 1 | <b>Ground-based imaging remote sensing of ice clouds: uncertainties |
| caused by sensor, method and atmosphere</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(9):4615-4632, SEP 20 |
2016. | 2016. |
[ <a href="http://dx.doi.org/{10.1016/j.rse.2015.12.001}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/amt-9-4615-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000381632100026">29</a>] | [<a name="WOS:000424328300001">574</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Robin J. Hogan, Sophia A. K. Schafer, Carolin Klinger, J. Christine Chiu, and | Anna Totterdill, Tamas Kovacs, Wuhu Feng, Sandip Dhomse, Christopher J. Smith, |
Bernhard Mayer. | Juan Carlos Gomez-Martin, Martyn P. Chipperfield, Piers M. Forster, and John |
<b>Representing 3-D cloud radiation effects in two-stream schemes: | M. C. Plane. |
2. Matrix formulation and broadband evaluation</b>. | <b>Atmospheric lifetimes, infrared absorption spectra, radiative |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | forcings and global warming potentials of NF<sub>3</sub> and |
121(14):8583--8599, JUL 27 2016. | CF<sub>3</sub>CF<sub>2</sub>Cl (CFC-115)</b>. |
[ <a href="http://dx.doi.org/{10.1002/2016JD024875}">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(17):11451-11463, SEP 14 |
| 2016. |
| [ <a href="http://dx.doi.org/10.5194/acp-16-11451-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000386205900006">30</a>] | [<a name="WOS:000386091300118">575</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Yulan Hong, Guosheng Liu, and J. L. F. Li. | X. Ai, A. Perez-Serrano, M. Quatrevalet, R. W. Nock, N. Dahnoun, G. Ehret, |
<b>Assessing the Radiative Effects of Global Ice Clouds Based on | I. Esquivias, and J. G. Rarity. |
CloudSat and CALIPSO Measurements</b>. | <b>Analysis of a random modulation single photon counting |
<em>JOURNAL OF CLIMATE</em>, 29(21):7651--7674, NOV 2016. | differential absorption lidar system for space-borne atmospheric |
[ <a href="http://dx.doi.org/{10.1175/JCLI-D-15-0799.1}">DOI</a> ] | CO<sub>2</sub> sensing</b>. |
| <em>OPTICS EXPRESS</em>, 24(18):21119-21133, SEP 5 2016. |
| [ <a href="http://dx.doi.org/10.1364/OE.24.021119">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000370940200010">31</a>] | [<a name="WOS:000385913400008">576</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Hu Shuai, Gao Tai-Chang, Li Hao, Cheng Tian-Ji, Liu Lei, Huang Wei, and Jiang | Anders V. Lindfors and Lasse Ylianttila. |
Shi-Yang. | <b>Visualizing Rayleigh Scattering through UV Photography</b>. |
<b>Atmospheric polarization pattern simulation for small solar | <em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, 97(9):1561+, |
elevation angles and the analysis of atmospheric effect</b>. | SEP 2016. |
<em>ACTA PHYSICA SINICA</em>, 65(1), JAN 5 2016. | [ <a href="http://dx.doi.org/10.1175/BAMS-D-14-00260.1">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.7498/aps.65.014203}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000373598700019">32</a>] | [<a name="WOS:000384823000007">577</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Shuai Hu, Tai-chang Gao, Hao Li, Lei Liu, Xi-chuan Liu, Ting Zhang, Tian-ji | Ruben Barragan, Salvatore Romano, Michael Sicard, Pasquale Burlizzi, Maria Rita |
Cheng, Wan-tong Li, Zhong-hua Dai, and Xiaojian Su. | Perrone, and Adolfo Comeron. |
<b>Effect of atmospheric refraction on radiative transfer in | <b>Estimation of mineral dust direct radiative forcing at the |
visible and near-infrared band: Model development, validation, and | European Aerosol Research Lidar NETwork site of Lecce, Italy, during the |
applications</b>. | ChArMEx/ADRIMED summer 2013 campaign: Impact of radiative transfer model |
| spectral resolutions</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
121(5):2349--2368, MAR 16 2016. | 121(17):10237-10261, SEP 2016. |
[ <a href="http://dx.doi.org/{10.1002/2015JD024105}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2016JD025016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000389731800007">33</a>] | [<a name="WOS:000378360700010">578</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Guanghui Huang, Xin Li, Mingguo Ma, Hongyi Li, and Chunlin Huang. | Vanda Salgueiro, Maria Joao Costa, Ana Maria Silva, and Daniele Bortoli. |
<b>High resolution surface radiation products for studies of | <b>Effects of clouds on the surface shortwave radiation at a rural |
regional energy, hydrologic and ecological processes over Heihe river basin, | inland mid-latitude site</b>. |
northwest China</b>. | <em>ATMOSPHERIC RESEARCH</em>, 178:95-101, SEP 1 2016. |
<em>AGRICULTURAL AND FOREST METEOROLOGY</em>, 230:67--78, DEC 15 | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2016.03.020">DOI</a> ] |
2016. | |
[ <a href="http://dx.doi.org/{10.1016/j.agrformet.2016.04.007}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000373866800008">34</a>] | [<a name="WOS:000385534000016">579</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Isabelle Huber, Luca Bugliaro, Michael Ponater, Hella Gamy, Claudia Emde, and | Colette M. O'Neill, Andreas Kazantzidis, Mary J. Ryan, Niamh Barber, |
Bernhard Mayer. | Christopher T. Sempos, Ramon A. Durazo-Arvizu, Rolf Jorde, Guri Grimnes, |
<b>Do climate models project changes in solar resources?</b> | Gudny Eiriksdottir, Vilmundur Gudnason, Mary Frances Cotch, Mairead Kiely, |
<em>SOLAR ENERGY</em>, 129:65--84, MAY 2016. | Ann R. Webb, and Kevin D. Cashman. |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2015.12.016}">DOI</a> ] | <b>Seasonal Changes in Vitamin D-Effective UVB Availability in |
| Europe and Associations with Population Serum 25-Hydroxyvitamin D</b>. |
| <em>NUTRIENTS</em>, 8(9), SEP 2016. |
| [ <a href="http://dx.doi.org/10.3390/nu8090533">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000377311400029">35</a>] | [<a name="WOS:000377311000028">580</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Pierre Ineichen. | P. Tzoumanikas, E. Nikitidou, A. F. Bais, and A. Kazantzidis. |
<b>Validation of models that estimate the clear sky global and | <b>The effect of clouds on surface solar irradiance, based on data |
beam solar irradiance</b>. | from an all-sky imaging system</b>. |
<em>SOLAR ENERGY</em>, 132:332--344, JUL 2016. | <em>RENEWABLE ENERGY</em>, 95:314-322, SEP 2016. |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2016.03.017}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.renene.2016.04.026">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000397623800001">36</a>] | [<a name="WOS:000384443800048">581</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Vinay K. Kayetha and Richard L. Collins. | Rawad Saleh, Peter J. Adams, Neil M. Donahue, and Allen L. Robinson. |
<b>Optically thin midlevel ice clouds derived from Cloud Aerosol | <b>The interplay between assumed morphology and the direct |
Lidar and Infrared Pathfinder Satellite Observations</b>. | radiative effect of light-absorbing organic aerosol</b>. |
<em>JOURNAL OF APPLIED REMOTE SENSING</em>, 10, OCT 24 2016. | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 43(16):8735-8743, AUG 28 2016. |
[ <a href="http://dx.doi.org/{10.1117/1.JRS.10.046007}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2016GL069786">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000391279600003">37</a>] | [<a name="WOS:000383372400026">582</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Stelios Kazadzis, Panagiotis Raptis, Natalia Kouremeti, Vassilis Amiridis, | David R. Thompson, Ian McCubbin, Bo Cai Gao, Robert O. Green, Alyssa A. |
Antti Arola, Evangelos Gerasopoulos, and Gregory L. Schuster. | Matthews, Fan Mei, Kerry G. Meyer, Steven Platnick, Beat Schmid, Jason |
<b>Aerosol absorption retrieval at ultraviolet wavelengths in a | Tomlinson, and Eric Wilcox. |
complex environment</b>. | <b>Measuring cloud thermodynamic phase with shortwave infrared |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(12):5997--6011, | imaging spectroscopy</b>. |
DEC 13 2016. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
[ <a href="http://dx.doi.org/{10.5194/amt-9-5997-2016}">DOI</a> ] | 121(15):9174-9190, AUG 16 2016. |
| [ <a href="http://dx.doi.org/10.1002/2016JD024999">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000366007000003">38</a>] | [<a name="WOS:000381083500009">583</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Carolin Klinger and Bernhard Mayer. | Viorel Badescu and Alexandru Dumitrescu. |
<b>The Neighboring Column Approximation (NCA) - A fast approach | <b>CMSAF products Cloud Fraction Coverage and Cloud Type used for |
for the calculation of 3D thermal heating rates in cloud resolving models</b>. | solar global irradiance estimation</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>METEOROLOGY AND ATMOSPHERIC PHYSICS</em>, 128(4):525-535, AUG 2016. |
168:17--28, JAN 2016. | [ <a href="http://dx.doi.org/10.1007/s00703-015-0424-y">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2015.08.020}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000385231600073">39</a>] | [<a name="WOS:000380593300019">584</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
V. Kornilov, M. Kornilov, O. Voziakova, N. Shatsky, B. Safonov, I. Gorbunov, | Daniele Scaglione, Danilo Giulietti, and Marco Morelli. |
S. Potanin, D. Cheryasov, and V. Senik. | <b>Evaluation of the impact of atmospheric ozone and aerosols on |
<b>Night-sky brightness and extinction at Mt Shatdzhatmaz</b>. | the horizontal global/diffuse UV Index at Livorno (Italy)</b>. |
<em>MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY</em>, | <em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, |
462(4):4464--4472, NOV 11 2016. | 146:194-204, AUG 2016. |
[ <a href="http://dx.doi.org/{10.1093/mnras/stw1839}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jastp.2016.06.005">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000373848400001">40</a>] | [<a name="WOS:000381632100026">585</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Krishnamoorthy, Deo Kumar, and C. Balaji. | Robin J. Hogan, Sophia A. K. Schafer, Carolin Klinger, J. Christine Chiu, and |
<b>Retrieval of humidity and temperature profiles over the oceans | Bernhard Mayer. |
from INSAT 3D satellite radiances</b>. | <b>Representing 3-D cloud radiation effects in two-stream schemes: |
<em>JOURNAL OF EARTH SYSTEM SCIENCE</em>, 125(2):217--230, MAR | 2. Matrix formulation and broadband evaluation</b>. |
2016. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
[ <a href="http://dx.doi.org/{10.1007/s12040-016-0667-0}">DOI</a> ] | 121(14):8583-8599, JUL 27 2016. |
| [ <a href="http://dx.doi.org/10.1002/2016JD024875">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000392489400046">41</a>] | [<a name="WOS:000376408600007">586</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Gerrit Kuhlmann, Andreas Hueni, Alexander Damm, and Dominik Brunner. | Sang Seo Park, Yeonjin Jung, and Yun Gon Lee. |
<b>An Algorithm for In-Flight Spectral Calibration of Imaging | <b>Spectral dependence on the correction factor of erythemal UV for |
Spectrometers</b>. | cloud, aerosol, total ozone, and surface properties: A modeling study</b>. |
<em>REMOTE SENSING</em>, 8(12), DEC 2016. | <em>ADVANCES IN ATMOSPHERIC SCIENCES</em>, 33(7):865-874, JUL 2016. |
[ <a href="http://dx.doi.org/{10.3390/rs8121017}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/s00376-016-5201-4">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000377855300010">42</a>] | [<a name="WOS:000377311400029">587</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Arve Kylling. | Pierre Ineichen. |
<b>Ash and ice clouds during the Mt Kelud February 2014 eruption | <b>Validation of models that estimate the clear sky global and beam |
as interpreted from IASI and AVHRR/3 observations</b>. | solar irradiance</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(5):2103--2117, | <em>SOLAR ENERGY</em>, 132:332-344, JUL 2016. |
2016. | [ <a href="http://dx.doi.org/10.1016/j.solener.2016.03.017">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/amt-9-2103-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000391362900002">43</a>] | [<a name="WOS:000377311400048">588</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Nathaniel Levitan and Barry Gross. | Giorgio Belluardo, Grazia Barchi, Dietmar Baumgartner, Marcus Rennhofer, |
<b>Improved MODIS aerosol retrieval in urban areas using a | Philipp Weihs, and David Moser. |
land-classification approach and empirical orthogonal functions</b>. | <b>Uncertainty analysis of a radiative transfer model using Monte |
In Erbertseder, T and Esch, T and Chrysoulakis, N, editor, <em> | Carlo method within 280-2500 nm region</b>. |
REMOTE SENSING TECHNOLOGIES AND APPLICATIONS IN URBAN ENVIRONMENTS</em>, volume | <em>SOLAR ENERGY</em>, 132:558-569, JUL 2016. |
10008 of <em>Proceedings of SPIE</em>. SPIE, 2016. | [ <a href="http://dx.doi.org/10.1016/j.solener.2016.03.050">DOI</a> ] |
Conference on Remote Sensing Technologies and Applications for Urban | |
Environments, Edinburgh, SCOTLAND, SEP 26-27, 2016. | </td> |
[ <a href="http://dx.doi.org/{10.1117/12.2241563}">DOI</a> ] | </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000378065100035">589</a>] |
| </td> |
| <td> |
| Xin Wang, Jun Gao, Zhiguo Fan, and Nicholas W. Roberts. |
| <b>An analytical model for the celestial distribution of polarized |
| light, accounting for polarization singularities, wavelength and atmospheric |
| turbidity</b>. |
| <em>JOURNAL OF OPTICS</em>, 18(6), JUN 2016. |
| [ <a href="http://dx.doi.org/10.1088/2040-8978/18/6/065601">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000377990300024">44</a>] | [<a name="WOS:000377990300024">590</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. S. Li, D. L. DePoy, J. L. Marshall, D. Tucker, R. Kessler, J. Annis, G. M. | T. S. Li, D. L. DePoy, J. L. Marshall, D. Tucker, R. Kessler, J. Annis, G. M. |
Bernstein, S. Boada, D. L. Burke, D. A. Finley, D. J. James, S. Kent, H. Lin, | Bernstein, S. Boada, D. L. Burke, D. A. Finley, D. J. James, S. Kent, H. Lin, |
PHOTOMETRIC PRECISION IN LARGE-AREA SKY SURVEYS</b>. | PHOTOMETRIC PRECISION IN LARGE-AREA SKY SURVEYS</b>. |
<em>ASTRONOMICAL JOURNAL</em>, 151(6), JUN 2016. | <em>ASTRONOMICAL JOURNAL</em>, 151(6), JUN 2016. |
[ <a href="http://dx.doi.org/{10.3847/0004-6256/151/6/157}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3847/0004-6256/151/6/157">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000385913400008">45</a>] | [<a name="WOS:000374354000006">591</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anders V. Lindfors and Lasse Ylianttila. | Robert Buras-Schnell, Franziska Schnell, and Allan Buras. |
<b>Visualizing Rayleigh Scattering through UV Photography</b>. | <b>GORRAM: Introducing accurate operational-speed radiative |
<em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, | transfer Monte Carlo solvers</b>. |
97(9):1561+, SEP 2016. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
[ <a href="http://dx.doi.org/{10.1175/BAMS-D-14-00260.1}">DOI</a> ] | 176:50-61, JUN 2016. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2016.01.033">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000377855300026">46</a>] | [<a name="WOS:000381629900055">592</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ronny Lutz, Diego Loyola, Sebastian Gimeno Garcia, and Fabian Romahn. | Timofei Sukhodolov, Eugene Rozanov, William T. Ball, Alkiviadis Bais, Kleareti |
<b>OCRA radiometric cloud fractions for GOME-2 on MetOp-A/B</b>. | Tourpali, Alexander I. Shapiro, Paul Telford, Sergey Smyshlyaev, Boris Fomin, |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(5):2357--2379, | Rolf Sander, Sebastien Bossay, Slimane Bekki, Marion Marchand, Martyn P. |
2016. | Chipperfield, Sandip Dhomse, Joanna D. Haigh, Thomas Peter, and Werner |
[ <a href="http://dx.doi.org/{10.5194/amt-9-2357-2016}">DOI</a> ] | Schmutz. |
| <b>Evaluation of simulated photolysis rates and their response to |
| solar irradiance variability</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
| 121(10):6066-6084, MAY 27 2016. |
| [ <a href="http://dx.doi.org/10.1002/2015JD024277">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000378207600016">47</a>] | [<a name="WOS:000373249000029">593</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Jakke Sakari Makela, Kaisa Lakkala, Tapani Koskela, Tomi Karppinen, Juha Matti | R. A. West, A. D. Del Genio, J. M. Barbara, D. Toledo, P. Lavvas, P. Rannou, |
Karhu, Vladimir Savastiouk, Hanne Suokanerva, Jussi Kaurola, Antti Arola, | E. P. Turtle, and J. Perry. |
Anders Vilhelm Lindfors, Outi Meinander, Gerrit de Leeuw, and Anu Heikkila. | <b>Cassini Imaging Science Subsystem observations of Titan's south |
<b>Data flow of spectral UV measurements at Sodankyla and | polar cloud</b>. |
Jokioinen</b>. | <em>ICARUS</em>, 270:399-408, MAY 15 2016. |
<em>GEOSCIENTIFIC INSTRUMENTATION METHODS AND DATA SYSTEMS</em>, | [ <a href="http://dx.doi.org/10.1016/j.icarus.2014.11.038">DOI</a> ] |
5(1):193--203, 2016. | |
[ <a href="http://dx.doi.org/{10.5194/gi-5-193-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000383868700010">48</a>] | [<a name="WOS:000373866800008">594</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Morelli, A. Masini, E. Simeone, and M. Khazova. | Isabelle Huber, Luca Bugliaro, Michael Ponater, Hella Gamy, Claudia Emde, and |
<b>Validation and in vivo assessment of an innovative | Bernhard Mayer. |
satellite-based solar UV dosimeter for a mobile app dedicated to skin | <b>Do climate models project changes in solar resources?</b> |
health</b>. | <em>SOLAR ENERGY</em>, 129:65-84, MAY 2016. |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, | [ <a href="http://dx.doi.org/10.1016/j.solener.2015.12.016">DOI</a> ] |
15(9):1170--1175, 2016. | |
[ <a href="http://dx.doi.org/{10.1039/c6pp00129g}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000370471800023">49</a>] | [<a name="WOS:000373866800023">595</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Nunez, M. J. Marin, D. Serrano, M. P. Utrillas, K. Fienberg, and J. A. | N. Hanrieder, M. Sengupta, Y. Xie, S. Wilbert, and R. Pitz-Paal. |
Martinez-Lozano. | <b>Modeling beam attenuation in solar tower plants using common DNI |
<b>Sensitivity of UVER enhancement to broken liquid water clouds: | measurements</b>. |
A Monte Carlo approach</b>. | <em>SOLAR ENERGY</em>, 129:244-255, MAY 2016. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | [ <a href="http://dx.doi.org/10.1016/j.solener.2016.01.051">DOI</a> ] |
121(2):949--964, JAN 27 2016. | |
[ <a href="http://dx.doi.org/{10.1002/2015JD024000}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000385534000016">50</a>] | [<a name="WOS:000373542700006">596</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Colette M. O'Neill, Andreas Kazantzidis, Mary J. Ryan, Niamh Barber, | Leonhard Scheck, Pascal Frerebeau, Robert Buras-Schnell, and Bernhard Mayer. |
Christopher T. Sempos, Ramon A. Durazo-Arvizu, Rolf Jorde, Guri Grimnes, | <b>A fast radiative transfer method for the simulation of visible |
Gudny Eiriksdottir, Vilmundur Gudnason, Mary Frances Cotch, Mairead Kiely, | satellite imagery</b>. |
Ann R. Webb, and Kevin D. Cashman. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
<b>Seasonal Changes in Vitamin D-Effective UVB Availability in | 175:54-67, MAY 2016. |
Europe and Associations with Population Serum 25-Hydroxyvitamin D</b>. | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2016.02.008">DOI</a> ] |
<em>NUTRIENTS</em>, 8(9), SEP 2016. | |
[ <a href="http://dx.doi.org/{10.3390/nu8090533}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000381246700016">51</a>] | [<a name="WOS:000374390300008">597</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Oliva, A. Adriani, M. L. Moriconi, G. L. Liberti, E. D'Aversa, and | Davide D'Alimonte and Tamito Kajiyama. |
G. Filacchione. | <b>Effects of light polarization and waves slope statistics on the |
<b>Clouds and hazes vertical structure of a Saturn's giant vortex | reflectance factor of the sea surface</b>. |
from Cassini/VIMS-V data analysis</b>. | <em>OPTICS EXPRESS</em>, 24(8):7922-7942, APR 18 2016. |
<em>ICARUS</em>, 278:215--237, NOV 1 2016. | [ <a href="http://dx.doi.org/10.1364/OE.24.007922">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.icarus.2016.06.021}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000375868800018">52</a>] | [<a name="WOS:000375868800018">598</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Taha B. M. J. Ouarda, Christian Charron, Prashanth R. Marpu, and Fateh Chebana. | Taha B. M. J. Ouarda, Christian Charron, Prashanth R. Marpu, and Fateh Chebana. |
<b>The Generalized Additive Model for the Assessment of the | <b>The Generalized Additive Model for the Assessment of the Direct, |
Direct, Diffuse, and Global Solar Irradiances Using SEVIRI Images, With | Diffuse, and Global Solar Irradiances Using SEVIRI Images, With Application |
Application to the UAE</b>. | to the UAE</b>. |
<em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS | <em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS |
AND REMOTE SENSING</em>, 9(4):1553--1566, APR 2016. | AND REMOTE SENSING</em>, 9(4):1553-1566, APR 2016. |
[ <a href="http://dx.doi.org/{10.1109/JSTARS.2016.2522764}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1109/JSTARS.2016.2522764">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000376408600007">53</a>] | [<a name="WOS:000373143600012">599</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sang Seo Park, Yeonjin Jung, and Yun Gon Lee. | Viorel Badescu and Alexandru Dumitrescu. |
<b>Spectral dependence on the correction factor of erythemal UV | <b>Simple solar radiation modelling for different cloud types and |
for cloud, aerosol, total ozone, and surface properties: A modeling study</b>. | climatologies</b>. |
<em>ADVANCES IN ATMOSPHERIC SCIENCES</em>, 33(7):865--874, JUL | <em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 124(1-2):141-160, APR |
2016. | 2016. |
[ <a href="http://dx.doi.org/{10.1007/s00376-016-5201-4}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/s00704-015-1400-7">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000389451900197">54</a>] | [<a name="WOS:000373598700019">600</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Arianna Religi, Laurent Moccozet, Meghdad Farahmand, Laurent Vuilleumier, David | Shuai Hu, Tai-chang Gao, Hao Li, Lei Liu, Xi-chuan Liu, Ting Zhang, Tian-ji |
Vernez, Antoine Milon, Jean-Luc Bulliard, and Claudine Backes. | Cheng, Wan-tong Li, Zhong-hua Dai, and Xiaojian Su. |
<b>SimUVEx v2: A Numeric Model to Predict Anatomical Solar | <b>Effect of atmospheric refraction on radiative transfer in |
Ultraviolet Exposure</b>. | visible and near-infrared band: Model development, validation, and |
In <em>Proceedings of the 2016 SAI Computing Conference (SAI)</em>, | applications</b>. |
pages 1344--1348. IEEE; Inst Engn & Technol; Usenix; Deutsche Telekom; | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 121(5):2349-2368, |
Deep ER; iMinds; Cancer Res UK; BCS; Sci & Informat Org, 2016. | MAR 16 2016. |
SAI Computing Conference (SAI), London, ENGLAND, JUL 13-15, 2016. | [ <a href="http://dx.doi.org/10.1002/2015JD024105">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000391459700096">55</a>] | [<a name="WOS:000371624600001">601</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Arianna Religi, Laurent Moccozet, David Vernez, Antoine Milon, Claudine Backes, | R. R. Cordero, A. Damiani, G. Seckmeyer, J. Jorquera, M. Caballero, P. Rowe, |
Jean-Luc Bulliard, Claudine Backes, and Laurent Vuilleumier. | J. Ferrer, R. Mubarak, J. Carrasco, R. Rondanelli, M. Matus, and D. Laroze. |
<b>Prediction of anatomical exposure to solar UV: a case study for | <b>The Solar Spectrum in the Atacama Desert</b>. |
the head using SimUVEx v2</b>. | <em>SCIENTIFIC REPORTS</em>, 6, MAR 2 2016. |
In <em>2016 IEEE 18TH INTERNATIONAL CONFERENCE ON E-HEALTH | [ <a href="http://dx.doi.org/10.1038/srep22457">DOI</a> ] |
NETWORKING, APPLICATIONS AND SERVICES (HEALTHCOM)</em>, pages 535--540. | |
IEEE, 2016. | |
18th IEEE International Conference on e-Health Networking, | |
Applications and Services (Healthcom), Munich, GERMANY, SEP 14-16, 2016. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000387861500002">56</a>] | [<a name="WOS:000373848400001">602</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Laura Riuttanen, Marja Bister, Veli-Matti Kerminen, Viju O. John, Anu-Maija | C. Krishnamoorthy, Deo Kumar, and C. Balaji. |
Sundstrom, Miikka Dal Maso, Jouni Raisanen, Victoria A. Sinclair, Risto | <b>Retrieval of humidity and temperature profiles over the oceans |
Makkonen, Filippo Xausa, Gerrit de Leeuw, and Markku Kulmala. | from INSAT 3D satellite radiances</b>. |
<b>Observational evidence for aerosols increasing upper | <em>JOURNAL OF EARTH SYSTEM SCIENCE</em>, 125(2):217-230, MAR 2016. |
tropospheric humidity</b>. | [ <a href="http://dx.doi.org/10.1007/s12040-016-0667-0">DOI</a> ] |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(22):14331--14342, | |
NOV 17 2016. | |
[ <a href="http://dx.doi.org/{10.5194/acp-16-14331-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000384443800048">57</a>] | [<a name="WOS:000368746800011">603</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Rawad Saleh, Peter J. Adams, Neil M. Donahue, and Allen L. Robinson. | John Hedley, Brandon Russell, Kaylan Randolph, and Heidi Dierssen. |
<b>The interplay between assumed morphology and the direct | <b>A physics-based method for the remote sensing of seagrasses</b>. |
radiative effect of light-absorbing organic aerosol</b>. | <em>REMOTE SENSING OF ENVIRONMENT</em>, 174:134-147, MAR 1 2016. |
<em>GEOPHYSICAL RESEARCH LETTERS</em>, 43(16):8735--8743, AUG | [ <a href="http://dx.doi.org/10.1016/j.rse.2015.12.001">DOI</a> ] |
28 2016. | |
[ <a href="http://dx.doi.org/{10.1002/2016GL069786}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000378360700010">58</a>] | [<a name="WOS:000371427100026">604</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Vanda Salgueiro, Maria Joao Costa, Ana Maria Silva, and Daniele Bortoli. | David R. Thompson, Dar A. Roberts, Bo Cai Gao, Robert O. Green, Liane Guild, |
<b>Effects of clouds on the surface shortwave radiation at a rural | Kendra Hayashi, Raphael Kudela, and Sherry Palacios. |
inland mid-latitude site</b>. | <b>Atmospheric correction with the Bayesian empirical line</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 178:95--101, SEP 1 2016. | <em>OPTICS EXPRESS</em>, 24(3):2134-2144, FEB 8 2016. |
[ <a href="http://dx.doi.org/{10.1016/j.atmosres.2016.03.020}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1364/OE.24.002134">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000380593300019">59</a>] | [<a name="WOS:000369192100006">605</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Daniele Scaglione, Danilo Giulietti, and Marco Morelli. | F. A. Stap, O. P. Hasekamp, C. Emde, and T. Rockmann. |
<b>Evaluation of the impact of atmospheric ozone and aerosols on | <b>Influence of 3D effects on 1D aerosol retrievalsin synthetic, |
the horizontal global/diffuse UV Index at Livorno (Italy)</b>. | partially clouded scenes</b>. |
<em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
146:194--204, AUG 2016. | 170:54-68, FEB 2016. |
[ <a href="http://dx.doi.org/{10.1016/j.jastp.2016.06.005}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2015.10.008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000373542700006">60</a>] | [<a name="WOS:000364248300082">606</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Leonhard Scheck, Pascal Frerebeau, Robert Buras-Schnell, and Bernhard Mayer. | Melina-Maria Zempila, Theodore M. Giannaros, Alkiviadis Bais, Dimitris Melas, |
<b>A fast radiative transfer method for the simulation of visible | and Andreas Kazantzidis. |
satellite imagery</b>. | <b>Evaluation of WRF shortwave radiation parameterizations in |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | predicting Global Horizontal Irradiance in Greece</b>. |
175:54--67, MAY 2016. | <em>RENEWABLE ENERGY</em>, 86:831-840, FEB 2016. |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2016.02.008}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.renene.2015.08.057">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000378354600012">61</a>] | [<a name="WOS:000370471800023">607</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Pasquale Sellitto, Alcide di Sarra, Stefano Corradini, Marie Boichu, Herve | M. Nunez, M. J. Marin, D. Serrano, M. P. Utrillas, K. Fienberg, and J. A. |
Herbin, Philippe Dubuisson, Genevieve Seze, Daniela Meloni, Francesco | Martinez-Lozano. |
Monteleone, Luca Merucci, Justin Rusalem, Giuseppe Salerno, Pierre Briole, | <b>Sensitivity of UVER enhancement to broken liquid water clouds: A |
and Bernard Legras. | Monte Carlo approach</b>. |
<b>Synergistic use of Lagrangian dispersion and radiative transfer | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 121(2):949-964, |
modelling with satellite and surface remote sensing measurements for the | JAN 27 2016. |
investigation of volcanic plumes: the Mount Etna eruption of 25-27 October | [ <a href="http://dx.doi.org/10.1002/2015JD024000">DOI</a> ] |
2013</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(11):6841--6861, | |
2016. | |
[ <a href="http://dx.doi.org/{10.5194/acp-16-6841-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000368204600009">62</a>] | [<a name="WOS:000368323100032">608</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Christopher J. Smith, Piers M. Forster, and Rolf Crook. | Dominik Benjamin Bucher, Corinna Lucia Kufner, Alexander Schlueter, Thomas |
<b>An all-sky radiative transfer method to predict optimal tilt | Carell, and Wolfgang Zinth. |
and azimuth angle of a solar collector</b>. | <b>UV-Induced Charge Transfer States in DNA Promote Sequence |
<em>SOLAR ENERGY</em>, 123:88--101, JAN 2016. | Selective Self-Repair</b>. |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2015.11.013}">DOI</a> ] | <em>JOURNAL OF THE AMERICAN CHEMICAL SOCIETY</em>, 138(1):186-190, JAN |
| 13 2016. |
| [ <a href="http://dx.doi.org/10.1021/jacs.5b09753">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000387112200001">63</a>] | [<a name="WOS:000370940200010">609</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Joana Soares, Mikhail Sofiev, Camilla Geels, Jens H. Christensen, Camilla | Hu Shuai, Gao Tai-Chang, Li Hao, Cheng Tian-Ji, Liu Lei, Huang Wei, and Jiang |
Andersson, Svetlana Tsyro, and Joakim Langner. | Shi-Yang. |
<b>Impact of climate change on the production and transport of sea | <b>Atmospheric polarization pattern simulation for small solar |
salt aerosol on European seas</b>. | elevation angles and the analysis of atmospheric effect</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(20):13081--13104, | <em>ACTA PHYSICA SINICA</em>, 65(1), JAN 5 2016. |
OCT 26 2016. | [ <a href="http://dx.doi.org/10.7498/aps.65.014203">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-16-13081-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000387453400001">64</a>] | [<a name="WOS:000391362900002">610</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Shi Song, K. Sebastian Schmidt, Peter Pilewskie, Michael D. King, Andrew K. | Nathaniel Levitan and Barry Gross. |
Heidinger, Andi Walther, Hironobu Iwabuchi, Gala Wind, and Odele M. | <b>Improved MODIS aerosol retrieval in urban areas using a |
Coddington. | land-classification approach and empirical orthogonal functions</b>. |
<b>The spectral signature of cloud spatial structure in shortwave | In T Erbertseder, T Esch, and N Chrysoulakis, editors, <em>REMOTE |
irradiance</b>. | SENSING TECHNOLOGIES AND APPLICATIONS IN URBAN ENVIRONMENTS</em>, volume 10008 of |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(21):13791--13806, | <em>Proceedings of SPIE</em>. SPIE, 2016. |
NOV 8 2016. | Conference on Remote Sensing Technologies and Applications for Urban |
[ <a href="http://dx.doi.org/{10.5194/acp-16-13791-2016}">DOI</a> ] | Environments, Edinburgh, SCOTLAND, SEP 26-27, 2016. |
| [ <a href="http://dx.doi.org/10.1117/12.2241563">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000369192100006">65</a>] | [<a name="WOS:000389451900197">611</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. A. Stap, O. P. Hasekamp, C. Emde, and T. Rockmann. | Arianna Religi, Laurent Moccozet, Meghdad Farahmand, Laurent Vuilleumier, David |
<b>Influence of 3D effects on 1D aerosol retrievalsin synthetic, | Vernez, Antoine Milon, Jean-Luc Bulliard, and Claudine Backes. |
partially clouded scenes</b>. | <b>SimUVEx v2: A Numeric Model to Predict Anatomical Solar |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | Ultraviolet Exposure</b>. |
170:54--68, FEB 2016. | In <em>PROCEEDINGS OF THE 2016 SAI COMPUTING CONFERENCE (SAI)</em>, |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2015.10.008}">DOI</a> ] | pages 1344-1348. IEEE; Inst Engn & Technol; Usenix; Deutsche Telekom; Deep |
| ER; iMinds; Cancer Res UK; BCS; Sci & Informat Org, 2016. |
| SAI Computing Conference (SAI), London, ENGLAND, JUL 13-15, 2016. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000388960600020">66</a>] | [<a name="WOS:000386726600072">612</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. A. Stap, O. P. Hasekamp, C. Emde, and T. Rockmann. | Josef Gasteiger, Matthias Wiegner, Carlos Toledano, Silke Gross, and Volker |
<b>Multiangle photopolarimetric aerosol retrievals in the vicinity | Freudenthaler. |
of clouds: Synthetic study based on a large eddy simulation</b>. | <b>CASE STUDY ON COMBINED LIDAR-PHOTOMETER RETRIEVAL OF VOLCANIC |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | ASH PROPERTIES</b>. |
121(21):12914--12935, NOV 16 2016. | In B Gross, F Moshary, and M Arend, editors, <em>27TH INTERNATIONAL |
[ <a href="http://dx.doi.org/{10.1002/2016JD024787}">DOI</a> ] | LASER RADAR CONFERENCE (ILRC 27)</em>, volume 119 of <em>EPJ Web of |
| Conferences</em>. City Univ New York, City Coll, 2016. |
| 27th International Laser Radar Conference (ILRC), Natl Ocean & |
| Atmospher Adm, Cooperat Remote Sensing Sci & Technol Ctr, New York City, NY, |
| JUL 05-10, 2015. |
| [ <a href="http://dx.doi.org/10.1051/epjconf/201611907004">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000381629900055">67</a>] | [<a name="WOS:000381935100034">613</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Timofei Sukhodolov, Eugene Rozanov, William T. Ball, Alkiviadis Bais, Kleareti | Federico Amato, Federico Martellozzo, Beniamino Murgante, and Gabriele Nole. |
Tourpali, Alexander I. Shapiro, Paul Telford, Sergey Smyshlyaev, Boris Fomin, | <b>Urban Solar Energy Potential in Europe</b>. |
Rolf Sander, Sebastien Bossay, Slimane Bekki, Marion Marchand, Martyn P. | In O Gervasi, B Murgante, S Misra, AMAC Rocha, CM Torre, D Tanier, |
Chipperfield, Sandip Dhomse, Joanna D. Haigh, Thomas Peter, and Werner | BO Apduhan, E Stankova, and S Wang, editors, <em>COMPUTATIONAL SCIENCE AND |
Schmutz. | ITS APPLICATIONS - ICCSA 2016, PT III</em>, volume 9788 of <em>Lecture Notes in |
<b>Evaluation of simulated photolysis rates and their response to | Computer Science</em>, pages 443-453. Beijing Univ Post & Telecommunicat; Univ |
solar irradiance variability</b>. | Perugia; Monash Univ; Kyushu Sangyo Univ; Univ Basilicata; Univ Minho; State |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | Key Lab Networking & Switching Technol; Springer Int Publishing AG; NVidia |
121(10):6066--6084, MAY 27 2016. | Co, 2016. |
[ <a href="http://dx.doi.org/{10.1002/2015JD024277}">DOI</a> ] | 16th International Conference on Computational Science and Its |
| Applications (ICCSA), Beijing, PEOPLES R CHINA, JUL 04-07, 2016. |
| [ <a href="http://dx.doi.org/10.1007/978-3-319-42111-7\_34">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000390652500001">68</a>] | [<a name="WOS:000379411800010">614</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Zhian Sun, Jiangnan Li, Yongjian He, Jiandong Li, Aixia Liu, and Feng Zhang. | Wiley Steven Bogren, John Faulkner Burkhart, and Arve Kylling. |
<b>Determination of direct normal irradiance including circumsolar | <b>Tilt error in cryospheric surface radiation measurements at high |
radiation in climate/NWP models</b>. | latitudes: a model study</b>. |
<em>QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY</em>, | <em>CRYOSPHERE</em>, 10(2):613-622, 2016. |
142(700, PT A):2591--2598, OCT 2016. | [ <a href="http://dx.doi.org/10.5194/tc-10-613-2016">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1002/qj.2848}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000366007000015">69</a>] | [<a name="WOS:000379417300013">615</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Taylor, P. G. Kosmopoulos, S. Kazadzis, I. Keramitsoglou, and C. T. | Fanny Finger, Frank Werner, Marcus Klingebiel, Andre Ehrlich, Evelyn Jaekel, |
Kiranoudis. | Matthias Voigt, Stephan Borrmann, Peter Spichtinger, and Manfred Wendisch. |
<b>Neural network radiative transfer solvers for the generation of | <b>Spectral optical layer properties of cirrus from collocated |
high resolution solar irradiance spectra parameterized by cloud and aerosol | airborne measurements and simulations</b>. |
parameters</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(12):7681-7693, 2016. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | [ <a href="http://dx.doi.org/10.5194/acp-16-7681-2016">DOI</a> ] |
168:176--192, JAN 2016. | |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2015.08.018}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000383372400026">70</a>] | [<a name="WOS:000378207600016">616</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
David R. Thompson, Ian McCubbin, Bo Cai Gao, Robert O. Green, Alyssa A. | Jakke Sakari Makela, Kaisa Lakkala, Tapani Koskela, Tomi Karppinen, Juha Matti |
Matthews, Fan Mei, Kerry G. Meyer, Steven Platnick, Beat Schmid, Jason | Karhu, Vladimir Savastiouk, Hanne Suokanerva, Jussi Kaurola, Antti Arola, |
Tomlinson, and Eric Wilcox. | Anders Vilhelm Lindfors, Outi Meinander, Gerrit de Leeuw, and Anu Heikkila. |
<b>Measuring cloud thermodynamic phase with shortwave infrared | <b>Data flow of spectral UV measurements at Sodankyla and |
imaging spectroscopy</b>. | Jokioinen</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | <em>GEOSCIENTIFIC INSTRUMENTATION METHODS AND DATA SYSTEMS</em>, |
121(15):9174--9190, AUG 16 2016. | 5(1):193-203, 2016. |
[ <a href="http://dx.doi.org/{10.1002/2016JD024999}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/gi-5-193-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000371427100026">71</a>] | [<a name="WOS:000377855300010">617</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
David R. Thompson, Dar A. Roberts, Bo Cai Gao, Robert O. Green, Liane Guild, | Arve Kylling. |
Kendra Hayashi, Raphael Kudela, and Sherry Palacios. | <b>Ash and ice clouds during the Mt Kelud February 2014 eruption as |
<b>Atmospheric correction with the Bayesian empirical line</b>. | interpreted from IASI and AVHRR/3 observations</b>. |
<em>OPTICS EXPRESS</em>, 24(3):2134--2144, FEB 8 2016. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(5):2103-2117, 2016. |
[ <a href="http://dx.doi.org/{10.1364/OE.24.002134}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/amt-9-2103-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000377311000028">72</a>] | [<a name="WOS:000377855300026">618</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Tzoumanikas, E. Nikitidou, A. F. Bais, and A. Kazantzidis. | Ronny Lutz, Diego Loyola, Sebastian Gimeno Garcia, and Fabian Romahn. |
<b>The effect of clouds on surface solar irradiance, based on data | <b>OCRA radiometric cloud fractions for GOME-2 on MetOp-A/B</b>. |
from an all-sky imaging system</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(5):2357-2379, 2016. |
<em>RENEWABLE ENERGY</em>, 95:314--322, SEP 2016. | [ <a href="http://dx.doi.org/10.5194/amt-9-2357-2016">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.renene.2016.04.026}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000378065100035">73</a>] | [<a name="WOS:000376938100026">619</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Xin Wang, Jun Gao, Zhiguo Fan, and Nicholas W. Roberts. | Emily Gleeson, Velle Toll, Kristian Pagh Nielsen, Laura Rontu, and Jan Masek. |
<b>An analytical model for the celestial distribution of polarized | <b>Effects of aerosols on clear-sky solar radiation in the |
light, accounting for polarization singularities, wavelength and atmospheric | ALADIN-HIRLAM NWP system</b>. |
turbidity</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(9):5933-5948, 2016. |
<em>JOURNAL OF OPTICS</em>, 18(6), JUN 2016. | [ <a href="http://dx.doi.org/10.5194/acp-16-5933-2016">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1088/2040-8978/18/6/065601}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000390649800002">74</a>] | [<a name="WOS:000375616100031">620</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Frank Werner, Galina Wind, Zhibo Zhang, Steven Platnick, Larry Di Girolamo, | Henri Diemoz, Kostas Eleftheratos, Stelios Kazadzis, Vassilis Amiridis, and |
Guangyu Zhao, Nandana Amarasinghe, and Kerry Meyer. | Christos S. Zerefos. |
<b>Marine boundary layer cloud property retrievals from | <b>Retrieval of aerosol optical depth in the visible range with a |
high-resolution ASTER observations: case studies and comparison with Terra | Brewer spectrophotometer in Athens</b>. |
MODIS</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(4):1871-1888, 2016. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(12):5869--5894, | [ <a href="http://dx.doi.org/10.5194/amt-9-1871-2016">DOI</a> ] |
DEC 8 2016. | |
[ <a href="http://dx.doi.org/{10.5194/amt-9-5869-2016}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000373249000029">75</a>] | [<a name="WOS:000372971500039">621</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. A. West, A. D. Del Genio, J. M. Barbara, D. Toledo, P. Lavvas, P. Rannou, | Ilias Fountoulakis, Alkiviadis F. Bais, Konstantinos Fragkos, Charickleia |
E. P. Turtle, and J. Perry. | Meleti, Kleareti Tourpali, and Melina Maria Zempila. |
<b>Cassini Imaging Science Subsystem observations of Titan's south | <b>Short- and long-term variability of spectral solar UV irradiance |
polar cloud</b>. | at Thessaloniki, Greece: effects of changes in aerosols, total ozone and |
<em>ICARUS</em>, 270:399--408, MAY 15 2016. | clouds</b>. |
[ <a href="http://dx.doi.org/{10.1016/j.icarus.2014.11.038}">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(4):2493-2505, 2016. |
| [ <a href="http://dx.doi.org/10.5194/acp-16-2493-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000389178200001">76</a>] | [<a name="WOS:000372766100005">622</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Yu Wu, Tianhai Cheng, Lijuan Zheng, and Hao Chen. | Margit Aun, Kalju Eerme, Martin Aun, and Ilmar Ansko. |
<b>Black carbon radiative forcing at TOA decreased during aging</b>. | <b>Reconstruction of UVB and UVA radiation at Toravere, Estonia, |
<em>Scientific Reports</em>, 6, DEC 5 2016. | for the years 1955-2003</b>. |
[ <a href="http://dx.doi.org/{10.1038/srep38592}">DOI</a> ] | <em>PROCEEDINGS OF THE ESTONIAN ACADEMY OF SCIENCES</em>, 65(1):50-57, |
| 2016. |
| [ <a href="http://dx.doi.org/10.3176/proc.2016.1.05">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000364248300082">77</a>] | [<a name="WOS:000367734800026">623</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Melina-Maria Zempila, Theodore M. Giannaros, Alkiviadis Bais, Dimitris Melas, | R. D. Garcia, V. E. Cachorro, E. Cuevas, C. Toledano, A. Redondas, |
and Andreas Kazantzidis. | M. Blumthaler, and Y. Benounna. |
<b>Evaluation of WRF shortwave radiation parameterizations in | <b>Comparison of measured and modelled spectral UV irradiance at |
predicting Global Horizontal Irradiance in Greece</b>. | Izana high mountain station: estimation of the underlying effective albedo</b>. |
<em>RENEWABLE ENERGY</em>, 86:831--840, FEB 2016. | <em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, 36(1):377-388, JAN 2016. |
[ <a href="http://dx.doi.org/{10.1016/j.renene.2015.08.057}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/joc.4355">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000381321600022">78</a>] | [<a name="WOS:000391459700096">624</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Melina-Maria Zempila, Michael Taylor, Alkiviadis Bais, and Stelios Kazadzis. | Arianna Religi, Laurent Moccozet, David Vernez, Antoine Milon, Claudine Backes, |
<b>Modeling the relationship between photosynthetically active | Jean-Luc Bulliard, Claudine Backes, and Laurent Vuilleumier. |
radiation and global horizontal irradiance using singular spectrum | <b>Prediction of anatomical exposure to solar UV: a case study for |
analysis</b>. | the head using SimUVEx v2</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | In <em>2016 IEEE 18TH INTERNATIONAL CONFERENCE ON E-HEALTH |
182:240--263, OCT 2016. | NETWORKING, APPLICATIONS AND SERVICES (HEALTHCOM)</em>, pages 535-540. IEEE, |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2016.06.003}">DOI</a> ] | 2016. |
| 18th IEEE International Conference on e-Health Networking, |
| Applications and Services (Healthcom), Munich, GERMANY, SEP 14-16, 2016. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000384407900003">79</a>] | [<a name="WOS:000378354600012">625</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Tobias Zinner, Petra Hausmann, Florian Ewald, Luca Bugliaro, Claudia Emde, and | Pasquale Sellitto, Alcide di Sarra, Stefano Corradini, Marie Boichu, Herve |
Bernhard Mayer. | Herbin, Philippe Dubuisson, Genevieve Seze, Daniela Meloni, Francesco |
<b>Ground-based imaging remote sensing of ice clouds: | Monteleone, Luca Merucci, Justin Rusalem, Giuseppe Salerno, Pierre Briole, |
uncertainties caused by sensor, method and atmosphere</b>. | and Bernard Legras. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(9):4615--4632, | <b>Synergistic use of Lagrangian dispersion and radiative transfer |
SEP 20 2016. | modelling with satellite and surface remote sensing measurements for the |
[ <a href="http://dx.doi.org/{10.5194/amt-9-4615-2016}">DOI</a> ] | investigation of volcanic plumes: the Mount Etna eruption of 25-27 October |
| 2013</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 16(11):6841-6861, 2016. |
| [ <a href="http://dx.doi.org/10.5194/acp-16-6841-2016">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2015</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000375613600034">626</a>] |
| </td> |
| <td> |
| Myungje Choi, Jhoon Kim, Jaehwa Lee, Mijin Kim, Young-Je Park, Ukkyo Jeong, |
| Woogyung Kim, Hyunkee Hong, Brent Holben, Thomas F. Eck, Chul H. Song, |
| Jae-Hyun Lim, and Chang-Keun Song. |
| <b>GOCI Yonsei Aerosol Retrieval (YAER) algorithm and validation |
| during the DRAGON-NE Asia 2012 campaign</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(3):1377-1398, 2016. |
| [ <a href="http://dx.doi.org/10.5194/amt-9-1377-2016">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000356879600010">1</a>] | [<a name="WOS:000375616100010">627</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ana Maria Gracia Amillo, Thomas Huld, Paraskevi Vourlioti, Richard Mueller, and | Luca Egli, Julian Groebner, Gregor Huelsen, Luciano Bachmann, Mario Blumthaler, |
Matthew Norton. | Jimmy Dubard, Marina Khazova, Richard Kift, Kees Hoogendijk, Antonio Serrano, |
<b>Application of Satellite-Based Spectrally-Resolved Solar | Andrew Smedley, and Jose-Manuel Vilaplana. |
Radiation Data to PV Performance Studies</b>. | <b>Quality assessment of solar UV irradiance measured with array |
<em>ENERGIES</em>, 8(5):3455--3488, MAY 2015. | spectroradiometers</b>. |
[ <a href="http://dx.doi.org/{10.3390/en8053455}">DOI</a> ] | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 9(4):1553-1567, 2016. |
| [ <a href="http://dx.doi.org/10.5194/amt-9-1553-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357125000006">2</a>] | [<a name="WOS:000381099900007">628</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Arabas, A. Jaruga, H. Pawlowska, and W. W. Grabowski. | Marloes Groeneveld, Lars Tranvik, Sivakiruthika Natchimuthu, and Birgit |
<b>libcloudph++1.0: a single-moment bulk, double-moment bulk, and | Koehler. |
particle-based warm-rain microphysics library in C plus</b>. | <b>Photochemical mineralisation in a boreal brown water lake: |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 8(6):1677--1707, | considerable temporal variability and minor contribution to carbon dioxide |
2015. | production</b>. |
[ <a href="http://dx.doi.org/{10.5194/gmd-8-1677-2015}">DOI</a> ] | <em>BIOGEOSCIENCES</em>, 13(13):3931-3943, 2016. |
| [ <a href="http://dx.doi.org/10.5194/bg-13-3931-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000365977100003">3</a>] | [<a name="WOS:000376937800001">629</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Arola, G. L. Schuster, M. R. A. Pitkanen, O. Dubovik, H. Kokkola, A. V. | Claudia Emde, Robert Buras-Schnell, Arve Kylling, Bernhard Mayer, Josef |
Lindfors, T. Mielonen, T. Raatikainen, S. Romakkaniemi, S. N. Tripathi, and | Gasteiger, Ulrich Hamann, Jonas Kylling, Bettina Richter, Christian Pause, |
H. Lihavainen. | Timothy Dowling, and Luca Bugliaro. |
<b>Direct radiative effect by brown carbon over the Indo-Gangetic | <b>The libRadtran software package for radiative transfer |
Plain</b>. | calculations (version 2.0.1)</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(22):12731--12740, | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 9(5):1647-1672, 2016. |
2015. | [ <a href="http://dx.doi.org/10.5194/gmd-9-1647-2016">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-15-12731-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357978300015">4</a>] | [<a name="WOS:000379404000011">630</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Bernhard, A. Arola, A. Dahlback, V. Fioletov, A. Heikkila, B. Johnsen, | Simone Dietmueller, Patrick Joeckel, Holger Tost, Markus Kunze, Catrin |
T. Koskela, K. Lakkala, T. Svendby, and J. Tamminen. | Gellhorn, Sabine Brinkop, Christine Froemming, Michael Ponater, Benedikt |
<b>Comparison of OMI UV observations with ground-based | Steil, Axel Lauer, and Johannes Hendricks. |
measurements at high northern latitudes</b>. | <b>A new radiation infrastructure for the Modular Earth Submodel |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(13):7391--7412, | System (MESSy, based on version 2.51)</b>. |
2015. | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 9(6):2209-2222, 2016. |
[ <a href="http://dx.doi.org/{10.5194/acp-15-7391-2015}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/gmd-9-2209-2016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000367316600007">5</a>] | [<a name="WOS:000368204600009">631</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Clement Bertin, Sylvain Cros, Laurent Saint-Antonin, and Nicolas Schmutz. | Christopher J. Smith, Piers M. Forster, and Rolf Crook. |
<b>Prediction of optical communication link availability: | <b>An all-sky radiative transfer method to predict optimal tilt and |
real-time observation of cloud patterns using a ground-based thermal infrared | azimuth angle of a solar collector</b>. |
camera</b>. | <em>SOLAR ENERGY</em>, 123:88-101, JAN 2016. |
In Stein, KU and Gonglewski, JD, editor, <em>OPTICS IN | [ <a href="http://dx.doi.org/10.1016/j.solener.2015.11.013">DOI</a> ] |
ATMOSPHERIC PROPAGATION AND ADAPTIVE SYSTEMS XVIII</em>, volume 9641 of <em> | |
Proceedings of SPIE</em>. SPIE, 2015. | |
Conference on Optics in Atmospheric Propagation and Adaptive Systems | |
XVIII, Toulouse, FRANCE, SEP 22, 2015. | |
[ <a href="http://dx.doi.org/{10.1117/12.2194920}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000365056300013">6</a>] | [<a name="WOS:000366007000003">632</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Julia Bilbao, Roberto Roman, Charles Yousif, Ana Perez-Burgos, David Mateos, | Carolin Klinger and Bernhard Mayer. |
and Argimiro de Miguel. | <b>The Neighboring Column Approximation (NCA) - A fast approach for |
<b>Global, diffuse, beam and ultraviolet solar irradiance recorded | the calculation of 3D thermal heating rates in cloud resolving models</b>. |
in Malta and atmospheric component influences under cloudless skies</b>. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
<em>SOLAR ENERGY</em>, 121(SI):131--138, NOV 2015. | 168:17-28, JAN 2016. |
ISES Solar World Congress (SWC), Cancun, MEXICO, NOV 03-07, 2013. | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2015.08.020">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2015.04.048}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000355043600020">7</a>] | [<a name="WOS:000366007000015">633</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. M. Bright, C. J. Smith, P. G. Taylor, and R. Crook. | M. Taylor, P. G. Kosmopoulos, S. Kazadzis, I. Keramitsoglou, and C. T. |
<b>Stochastic generation of synthetic minutely irradiance time | Kiranoudis. |
series derived from mean hourly weather observation data</b>. | <b>Neural network radiative transfer solvers for the generation of |
<em>SOLAR ENERGY</em>, 115:229--242, MAY 2015. | high resolution solar irradiance spectra parameterized by cloud and aerosol |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2015.02.032}">DOI</a> ] | parameters</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 168:176-192, JAN 2016. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2015.08.018">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000368258000006">8</a>] | [<a name="WOS:000367409500064">634</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. J. Costa, M. A. Obregon, S. Pereira, V. Salgueiro, M. Potes, F. T. Couto, | P. G. Kosmopoulos, S. Kazadzis, K. Lagouvardos, V. Kotroni, and A. Bais. |
R. Salgado, D. Bortoli, and A. M. Silva. | <b>Solar energy prediction and verification using operational model |
<b>Analysis of atmospheric vertical profiles in the presence of | forecasts and ground-based solar measurements</b>. |
desert dust aerosols</b>. | <em>ENERGY</em>, 93(2):1918-1930, DEC 15 2015. |
In <em>3RD IBERIAN MEETING ON AEROSOL SCIENCE AND TECHNOLOGY (RICTA | [ <a href="http://dx.doi.org/10.1016/j.energy.2015.10.054">DOI</a> ] |
2015)</em>, volume 28 of <em>IOP Conference Series-Earth and Environmental | |
Science</em>. Univ Miguel Hernandez, Stat & Computat Phys Lab; AECyTA; Spanish | |
Assoc Aerosol Sci & Technol Res, 2015. | |
3rd Iberian Meeting on Aerosol Science and Technology (RICTA), | |
Centro Congresos Ciutat Elx, Elche, SPAIN, JUN 29-JUL 01, 2015. | |
[ <a href="http://dx.doi.org/{10.1088/1755-1315/28/1/012006}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000368258000007">9</a>] | [<a name="WOS:000363055300007">635</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. J. Costa, V. Salgueiro, D. Bortoli, M. A. Obregon, M. Anton, and A. M. | Sang Seo Park, Yun Gon Lee, and Jung Hyun Kim. |
Silva. | <b>Impact of UV-A radiation on erythemal UV and UV-index estimation |
<b>Retrieval of the aerosol optical thickness from UV global | over Korea</b>. |
irradiance measurements</b>. | <em>ADVANCES IN ATMOSPHERIC SCIENCES</em>, 32(12):1639-1646, DEC 2015. |
In <em>3RD IBERIAN MEETING ON AEROSOL SCIENCE AND TECHNOLOGY (RICTA | [ <a href="http://dx.doi.org/10.1007/s00376-015-4231-7">DOI</a> ] |
2015)</em>, volume 28 of <em>IOP Conference Series-Earth and Environmental | |
Science</em>. Univ Miguel Hernandez, Stat & Computat Phys Lab; AECyTA; Spanish | |
Assoc Aerosol Sci & Technol Res, 2015. | |
3rd Iberian Meeting on Aerosol Science and Technology (RICTA), | |
Centro Congresos Ciutat Elx, Elche, SPAIN, JUN 29-JUL 01, 2015. | |
[ <a href="http://dx.doi.org/{10.1088/1755-1315/28/1/012007}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000353213200016">10</a>] | [<a name="WOS:000367534000024">636</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Carmelia Mariana Dragomir, Daniel-Eduard Constantin, Mirela Voiculescu, | Sarah M. Hamylton, John D. Hedley, and Robin J. Beaman. |
Lucian Puiu Georgescu, Alexis Merlaud, and Michel Van Roozendael. | <b>Derivation of High-Resolution Bathymetry from Multispectral |
<b>Modeling results of atmospheric dispersion of NO2 in an urban | Satellite Imagery: A Comparison of Empirical and Optimisation Methods through |
area using METI-LIS and comparison with coincident mobile DOAS | Geographical Error Analysis</b>. |
measurements</b>. | <em>REMOTE SENSING</em>, 7(12):16257-16273, DEC 2015. |
<em>ATMOSPHERIC POLLUTION RESEARCH</em>, 6(3):503--510, MAY | [ <a href="http://dx.doi.org/10.3390/rs71215829">DOI</a> ] |
2015. | |
[ <a href="http://dx.doi.org/{10.5094/APR.2015.056}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000365692200002">11</a>] | [<a name="WOS:000364249600002">637</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Jingfei Jia, Hyun K. Kim, and Andreas H. Hielscher. |
| <b>Fast linear solver for radiative transport equation with |
| multiple right hand sides in diffuse optical tomography</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 167:10-22, DEC 2015. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2015.07.015">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000365692200002">638</a>] |
| </td> |
| <td> |
Mamadou Simina Drame, Xavier Ceamanos, Jean Louis Roujean, Aaron Boone, | Mamadou Simina Drame, Xavier Ceamanos, Jean Louis Roujean, Aaron Boone, |
Jean Philippe Lafore, Dominique Carrer, and Olivier Geoffroy. | Jean Philippe Lafore, Dominique Carrer, and Olivier Geoffroy. |
<b>On the Importance of Aerosol Composition for Estimating | <b>On the Importance of Aerosol Composition for Estimating Incoming |
Incoming Solar Radiation: Focus on the Western African Stations of Dakar and | Solar Radiation: Focus on the Western African Stations of Dakar and Niamey |
Niamey during the Dry Season</b>. | during the Dry Season</b>. |
<em>ATMOSPHERE</em>, 6(11):1608--1632, NOV 2015. | <em>ATMOSPHERE</em>, 6(11):1608-1632, NOV 2015. |
[ <a href="http://dx.doi.org/{10.3390/atmos6111608}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3390/atmos6111608">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000367384600006">12</a>] | [<a name="WOS:000365056300013">639</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Y. Eissa, P. Blanc, L. Wald, and H. Ghedira. | Julia Bilbao, Roberto Roman, Charles Yousif, Ana Perez-Burgos, David Mateos, |
<b>Can AERONET data be used to accurately model the monochromatic | and Argimiro de Miguel. |
beam and circumsolar irradiances under cloud-free conditions in desert | <b>Global, diffuse, beam and ultraviolet solar irradiance recorded |
environment?</b> | in Malta and atmospheric component influences under cloudless skies</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(12):5099--5112, | <em>SOLAR ENERGY</em>, 121(SI):131-138, NOV 2015. |
2015. | ISES Solar World Congress (SWC), Cancun, MEXICO, NOV 03-07, 2013. |
[ <a href="http://dx.doi.org/{10.5194/amt-8-5099-2015}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.solener.2015.04.048">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000360919900045">13</a>] | [<a name="WOS:000209847200028">640</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Yehia Eissa, Mohamed Korany, Youva Aoun, Mohamed Boraiy, Magdy M. Abdel Wahab, | Rawad Saleh, Marguerite Marks, Jinhyok Heo, Peter J. Adams, Neil M. Donahue, |
Stephane C. Alfaro, Philippe Blanc, Mossad El-Metwally, Hosni Ghedira, Katja | and Allen L. Robinson. |
Hungershoefer, and Lucien Wald. | <b>Contribution of brown carbon and lensing to the direct radiative |
<b>Validation of the Surface Downwelling Solar Irradiance | effect of carbonaceous aerosols from biomass and biofuel burning emissions</b>. |
Estimates of the HelioClim-3 Database in Egypt</b>. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
<em>REMOTE SENSING</em>, 7(7):9269--9291, JUL 2015. | 120(19):10285-10296, OCT 16 2015. |
[ <a href="http://dx.doi.org/{10.3390/rs70709269}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2015JD023697">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000353080700003">14</a>] | [<a name="WOS:000364248100071">641</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Yehia Eissa, Saima Munawvvar, Armel Oumbe, Philippe Blanc, Hosni Ghedira, | E. Nikitidou, A. Kazantzidis, P. Tzoumanikas, V. Salamalikis, and A. F. Bais. |
Lucien Wald, Helene Bru, and Dominique Goffe. | <b>Retrieval of surface solar irradiance, based on |
<b>Validating surface downwelling solar irradiances estimated by | satellite-derived cloud information, in Greece</b>. |
the McClear model under cloud-free skies in the United Arab Emirates</b>. | <em>ENERGY</em>, 90(1):776-783, OCT 2015. |
<em>SOLAR ENERGY</em>, 114:17--31, APR 2015. | [ <a href="http://dx.doi.org/10.1016/j.energy.2015.07.103">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2015.01.017}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000359502400002">15</a>] | [<a name="WOS:000359502400002">642</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Claudia Emde, Vasileios Barlakas, Celine Cornet, Frank Evans, Sergey Korkin, | Claudia Emde, Vasileios Barlakas, Celine Cornet, Frank Evans, Sergey Korkin, |
Yoshifumi Ota, Laurent C. Labonnote, Alexei Lyapustin, Andreas Macke, | Yoshifumi Ota, Laurent C. Labonnote, Alexei Lyapustin, Andreas Macke, |
- Phase A</b>. | - Phase A</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
164:8--36, OCT 2015. | 164:8-36, OCT 2015. |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2015.05.007}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2015.05.007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357117900019">16</a>] | [<a name="WOS:000362419900083">643</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Ewald, C. Winkler, and T. Zinner. | Mark T. Gruneisen, Michael B. Flanagan, Brett A. Sickmiller, James P. Black, |
<b>Reconstruction of cloud geometry using a scanning cloud | Kurt E. Stoltenberg, and Alexander W. Duchane. |
radar</b>. | <b>Modeling daytime sky access for a satellite quantum key |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(6):2491--2508, | distribution downlink</b>. |
2015. | <em>OPTICS EXPRESS</em>, 23(18):23924-23934, SEP 7 2015. |
[ <a href="http://dx.doi.org/{10.5194/amt-8-2491-2015}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1364/OE.23.023924">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000360565400014">17</a>] | [<a name="WOS:000359868400010">644</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Georg Wirth, Elke Lorenz, Andreas Spring, Gerd Becker, Robert Pardatscher, and |
| Rolf Witzmann. |
| <b>Modeling the maximum power output of a distributed PV fleet</b>. |
| <em>PROGRESS IN PHOTOVOLTAICS</em>, 23(9):1164-1181, SEP 2015. |
| [ <a href="http://dx.doi.org/10.1002/pip.2513">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000358624100007">645</a>] |
| </td> |
| <td> |
| Fabian Jakub and Bernhard Mayer. |
| <b>A three-dimensional parallel radiative transfer model for |
| atmospheric heating rates for use in cloud resolving models-The |
| <i>TenStream</i> solver</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 163:63-71, SEP 2015. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2015.05.003">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000360565400014">646</a>] |
| </td> |
| <td> |
Uwe Feister, Nathalie Cabrol, and Donat Haeder. | Uwe Feister, Nathalie Cabrol, and Donat Haeder. |
<b>UV Irradiance Enhancements by Scattering of Solar Radiation | <b>UV Irradiance Enhancements by Scattering of Solar Radiation from |
from Clouds</b>. | Clouds</b>. |
<em>ATMOSPHERE</em>, 6(8):1211--1228, AUG 2015. | <em>ATMOSPHERE</em>, 6(8):1211-1228, AUG 2015. |
[ <a href="http://dx.doi.org/{10.3390/atmos6081211}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3390/atmos6081211">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000355744800032">18</a>] | [<a name="WOS:000358941200024">647</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Uwe Feister, Gabriele Meyer, Gudrun Laschewski, and Christopher Boettcher. | Saverio Mori and Frank S. Marzano. |
<b>Validation of modeled daily erythemal exposure along tropical | <b>Microphysical characterization of free space optical link due to |
and subtropical shipping routes by ship-based and satellite-based | hydrometeor and fog effects</b>. |
measurements</b>. | <em>APPLIED OPTICS</em>, 54(22):6787-6803, AUG 1 2015. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | [ <a href="http://dx.doi.org/10.1364/AO.54.006787">DOI</a> ] |
120(9):4117--4131, MAY 16 2015. | |
[ <a href="http://dx.doi.org/{10.1002/2014JD023005}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357202300004">19</a>] | [<a name="WOS:000357754000002">648</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. Fountoulakis and A. F. Bais. | D. Serrano, M. J. Marin, M. Nunez, M. P. Utrillas, S. Gandia, and J. A. |
<b>Projected changes in erythemal and vitamin D effective | Martinez-Lozano. |
irradiance over northern-hemisphere high latitudes</b>. | <b>Wavelength dependence of the effective cloud optical depth</b>. |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, | <em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, |
14(7):1251--1264, 2015. | 130:14-22, AUG 2015. |
[ <a href="http://dx.doi.org/{10.1039/c5pp00093a}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jastp.2015.05.001">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000350304200004">20</a>] | [<a name="WOS:000359631500001">649</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. Fragkos, A. F. Bais, D. Balis, C. Meleti, and M. E. Koukouli. | Richard Mueller, Uwe Pfeifroth, and Christine Traeger-Chatterjee. |
<b>The Effect of Three Different Absorption Cross-Sections and | <b>Towards Optimal Aerosol Information for the Retrieval of Solar |
their Temperature Dependence on Total Ozone Measured by a Mid-Latitude Brewer | Surface Radiation Using Heliosat</b>. |
Spectrophotometer</b>. | <em>ATMOSPHERE</em>, 6(7):863-878, JUL 2015. |
<em>ATMOSPHERE-OCEAN</em>, 53(1):19--28, 2015. | [ <a href="http://dx.doi.org/10.3390/atmos6070863">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1080/07055900.2013.847816}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000358799000008">21</a>] | [<a name="WOS:000356557700004">650</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. M. Frey, H. K. Roscoe, A. Kukui, J. Savarino, J. L. France, M. D. King, | Ibrahim Reda, Jorgen Konings, and Yu Xie. |
M. Legrand, and S. Preunkert. | <b>A method to measure the broadband longwave irradiance in the |
<b>Atmospheric nitrogen oxides (NO and NO2) at Dome C, East | terrestrial direct solar beam</b>. |
Antarctica, during the OPALE campaign</b>. | <em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(14):7859--7875, | 129:23-29, JUL 2015. |
2015. | [ <a href="http://dx.doi.org/10.1016/j.jastp.2015.04.003">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-15-7859-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000362457400018">22</a>] | [<a name="WOS:000360919900045">651</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Gil-Ojeda, M. Navarro-Comas, L. Gomez-Martin, J. A. Adame, A. Saiz-Lopez, | Yehia Eissa, Mohamed Korany, Youva Aoun, Mohamed Boraiy, Magdy M. Abdel Wahab, |
C. A. Cuevas, Y. Gonzalez, O. Puentedura, E. Cuevas, J. F. Lamarque, | Stephane C. Alfaro, Philippe Blanc, Mossad El-Metwally, Hosni Ghedira, Katja |
D. Kinninson, and S. Tilmes. | Hungershoefer, and Lucien Wald. |
<b>NO2 seasonal evolution in the north subtropical free | <b>Validation of the Surface Downwelling Solar Irradiance Estimates |
troposphere</b>. | of the HelioClim-3 Database in Egypt</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(18):10567--10579, | <em>REMOTE SENSING</em>, 7(7):9269-9291, JUL 2015. |
2015. | [ <a href="http://dx.doi.org/10.3390/rs70709269">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-15-10567-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000355289200021">23</a>] | [<a name="WOS:000355709300005">652</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Gliss, N. Bobrowski, L. Vogel, D. Poehler, and U. Platt. | D. Serrano, M. J. Marin, M. Nunez, S. Gandia, M. P. Utrillas, and J. A. |
<b>OClO and BrO observations in the volcanic plume of Mt. Etna - | Martinez-Lozano. |
implications on the chemistry of chlorine and bromine species in volcanic | <b>Relationship between the effective cloud optical depth and |
plumes</b>. | different atmospheric transmission factors</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(10):5659--5681, | <em>ATMOSPHERIC RESEARCH</em>, 160:50-58, JUN 15 2015. |
2015. | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2015.03.004">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-15-5659-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000362419900083">24</a>] | [<a name="WOS:000357589800007">653</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Mark T. Gruneisen, Michael B. Flanagan, Brett A. Sickmiller, James P. Black, | Aku Riihela, Thomas Carlund, Joerg Trentmann, Richard Mueller, and Anders V. |
Kurt E. Stoltenberg, and Alexander W. Duchane. | Lindfors. |
<b>Modeling daytime sky access for a satellite quantum key | <b>Validation of CM SAF Surface Solar Radiation Datasets over |
distribution downlink</b>. | Finland and Sweden</b>. |
<em>OPTICS EXPRESS</em>, 23(18):23924--23934, SEP 7 2015. | <em>REMOTE SENSING</em>, 7(6):6663-6682, JUN 2015. |
[ <a href="http://dx.doi.org/{10.1364/OE.23.023924}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3390/rs70606663">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000367534000024">25</a>] | [<a name="WOS:000357590300026">654</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sarah M. Hamylton, John D. Hedley, and Robin J. Beaman. | Richard Mueller, Uwe Pfeifroth, Christine Traeger-Chatterjee, Joerg Trentmann, |
<b>Derivation of High-Resolution Bathymetry from Multispectral | and Roswitha Cremer. |
Satellite Imagery: A Comparison of Empirical and Optimisation Methods through | <b>Digging the METEOSAT Treasure-3 Decades of Solar Surface |
Geographical Error Analysis</b>. | Radiation</b>. |
<em>REMOTE SENSING</em>, 7(12):16257--16273, DEC 2015. | <em>REMOTE SENSING</em>, 7(6):8067-8101, JUN 2015. |
[ <a href="http://dx.doi.org/{10.3390/rs71215829}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3390/rs70608067">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000360649700029">26</a>] | [<a name="WOS:000355744800032">655</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
N. Hanrieder, S. Wilbert, R. Pitz-Paal, C. Emde, J. Gasteiger, B. Mayer, and | Uwe Feister, Gabriele Meyer, Gudrun Laschewski, and Christopher Boettcher. |
J. Polo. | <b>Validation of modeled daily erythemal exposure along tropical |
<b>Atmospheric extinction in solar tower plants: absorption and | and subtropical shipping routes by ship-based and satellite-based |
broadband correction for MOR measurements</b>. | measurements</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(8):3467--3480, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 120(9):4117-4131, |
2015. | MAY 16 2015. |
[ <a href="http://dx.doi.org/{10.5194/amt-8-3467-2015}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2014JD023005">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000353838200027">27</a>] | [<a name="WOS:000356879600010">656</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Yulan Hong and Guosheng Liu. | Ana Maria Gracia Amillo, Thomas Huld, Paraskevi Vourlioti, Richard Mueller, and |
<b>The Characteristics of Ice Cloud Properties Derived from | Matthew Norton. |
CloudSat and CALIPSO Measurements</b>. | <b>Application of Satellite-Based Spectrally-Resolved Solar |
<em>JOURNAL OF CLIMATE</em>, 28(9):3880--3901, MAY 1 2015. | Radiation Data to PV Performance Studies</b>. |
[ <a href="http://dx.doi.org/{10.1175/JCLI-D-14-00666.1}">DOI</a> ] | <em>ENERGIES</em>, 8(5):3455-3488, MAY 2015. |
| [ <a href="http://dx.doi.org/10.3390/en8053455">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000367384600014">28</a>] | [<a name="WOS:000355043600007">657</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Jaekel, B. Mey, R. Levy, X. Gu, T. Yu, Z. Li, D. Althausen, B. Heese, and | Georgi Hristov Yordanov, Tor Oskar Saetre, and Ole-Morten Midtgard. |
M. Wendisch. | <b>Extreme overirradiance events in Norway: 1.6 suns measured close |
<b>Adaption of the MODIS aerosol retrieval algorithm using | to 60°N</b>. |
airborne spectral surface reflectance measurements over urban areas: a case | <em>SOLAR ENERGY</em>, 115:68-73, MAY 2015. |
study</b>. | [ <a href="http://dx.doi.org/10.1016/j.solener.2015.02.020">DOI</a> ] |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(12):5237--5249, | |
2015. | |
[ <a href="http://dx.doi.org/{10.5194/amt-8-5237-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000358624100007">29</a>] | [<a name="WOS:000353213200016">658</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Fabian Jakub and Bernhard Mayer. | Carmelia Mariana Dragomir, Daniel-Eduard Constantin, Mirela Voiculescu, |
<b>A three-dimensional parallel radiative transfer model for | Lucian Puiu Georgescu, Alexis Merlaud, and Michel Van Roozendael. |
atmospheric heating rates for use in cloud resolving models-The TenStream | <b>Modeling results of atmospheric dispersion of NO<sub>2</sub> in |
solver</b>. | an urban area using METI-LIS and comparison with coincident mobile DOAS |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | measurements</b>. |
163:63--71, SEP 2015. | <em>ATMOSPHERIC POLLUTION RESEARCH</em>, 6(3):503-510, MAY 2015. |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2015.05.003}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5094/APR.2015.056">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000364249600002">30</a>] | [<a name="WOS:000353838200027">659</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Jingfei Jia, Hyun K. Kim, and Andreas H. Hielscher. | Yulan Hong and Guosheng Liu. |
<b>Fast linear solver for radiative transport equation with | <b>The Characteristics of Ice Cloud Properties Derived from |
multiple right hand sides in diffuse optical tomography</b>. | <i>CloudSat</i> and <i>CALIPSO</i> Measurements</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF CLIMATE</em>, 28(9):3880-3901, MAY 1 2015. |
167:10--22, DEC 2015. | [ <a href="http://dx.doi.org/10.1175/JCLI-D-14-00666.1">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2015.07.015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000355734700001">31</a>] | [<a name="WOS:000355043600020">660</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Andreas Kazantzidis, Andrew Smedley, Richard Kift, John Rimmer, Jacqueline L. | J. M. Bright, C. J. Smith, P. G. Taylor, and R. Crook. |
Berry, Lesley E. Rhodes, and Ann R. Webb. | <b>Stochastic generation of synthetic minutely irradiance time |
<b>A modeling approach to determine how much UV radiation is | series derived from mean hourly weather observation data</b>. |
available across the UK and Ireland for health risk and benefit studies</b>. | <em>SOLAR ENERGY</em>, 115:229-242, MAY 2015. |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, | [ <a href="http://dx.doi.org/10.1016/j.solener.2015.02.032">DOI</a> ] |
14(6):1073--1081, 2015. | |
[ <a href="http://dx.doi.org/{10.1039/c5pp00008d}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000367409500064">32</a>] | [<a name="WOS:000351969700011">661</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. G. Kosmopoulos, S. Kazadzis, K. Lagouvardos, V. Kotroni, and A. Bais. | Michael I. Mishchenko, Janna M. Dlugach, Jacek Chowdhary, and Nadezhda T. |
<b>Solar energy prediction and verification using operational | Zakharova. |
model forecasts and ground-based solar measurements</b>. | <b>Polarized bidirectional reflectance of optically thick sparse |
<em>ENERGY</em>, 93(2):1918--1930, DEC 15 2015. | particulate layers: An efficient numerically exact radiative-transfer |
[ <a href="http://dx.doi.org/{10.1016/j.energy.2015.10.054}">DOI</a> ] | solution</b>. |
| <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
| 156:97-108, MAY 2015. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2015.02.003">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000355288900002">33</a>] | [<a name="WOS:000353413800018">662</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kylling, N. Kristiansen, A. Stohl, R. Buras-Schnell, C. Emde, and | Giovanni Pitari, Glauco Di Genova, Eleonora Coppari, Natalia De Luca, Piero |
J. Gasteiger. | Di Carlo, Marco Iarlori, and Vincenzo Rizi. |
<b>A model sensitivity study of the impact of clouds on satellite | <b>Desert dust transported over Europe: Lidar observations and |
detection and retrieval of volcanic ash</b>. | model evaluation of the radiative impact</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(5):1935--1949, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 120(7):2881-2898, |
2015. | APR 16 2015. |
[ <a href="http://dx.doi.org/{10.5194/amt-8-1935-2015}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2014JD022875">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000352158300026">34</a>] | [<a name="WOS:000353080700003">663</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. E. LeBlanc, P. Pilewskie, K. S. Schmidt, and O. Coddington. | Yehia Eissa, Saima Munawvvar, Armel Oumbe, Philippe Blanc, Hosni Ghedira, |
<b>A spectral method for discriminating thermodynamic phase and | Lucien Wald, Helene Bru, and Dominique Goffe. |
retrieving cloud optical thickness and effective radius using transmitted | <b>Validating surface downwelling solar irradiances estimated by |
solar radiance spectra</b>. | the McClear model under cloud-free skies in the United Arab Emirates</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(3):1361--1383, | <em>SOLAR ENERGY</em>, 114:17-31, APR 2015. |
2015. | [ <a href="http://dx.doi.org/10.1016/j.solener.2015.01.017">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/amt-8-1361-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000349161300024">35</a>] | [<a name="WOS:000349161300024">664</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raymond L. Lee, Jr. | Raymond L. Lee, Jr. |
<b>Measuring and modeling twilight's Belt of Venus</b>. | <b>Measuring and modeling twilight's Belt of Venus</b>. |
<em>APPLIED OPTICS</em>, 54(4):B194--B203, FEB 1 2015. | <em>APPLIED OPTICS</em>, 54(4):B194-B203, FEB 1 2015. |
[ <a href="http://dx.doi.org/{10.1364/AO.54.00B194}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1364/AO.54.00B194">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000380531900186">36</a>] | [<a name="WOS:000349020900006">665</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| A. Voskrebenzev, S. Riechelmann, A. Bais, H. Slaper, and G. Seckmeyer. |
| <b>Estimating probability distributions of solar irradiance</b>. |
| <em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 119(3-4):465-479, FEB |
| 2015. |
| [ <a href="http://dx.doi.org/10.1007/s00704-014-1189-9">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000347264600032">666</a>] |
| </td> |
| <td> |
| M. A. Obregon, S. Pereira, V. Salgueiro, M. J. Costa, A. M. Silva, A. Serrano, |
| and D. Bortoli. |
| <b>Aerosol radiative effects during two desert dust events in |
| August 2012 over the Southwestern Iberian Peninsula</b>. |
| <em>ATMOSPHERIC RESEARCH</em>, 153:404-415, FEB 2015. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2014.10.007">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000380531900186">667</a>] |
| </td> |
| <td> |
M. Main-Knorn, B. Pflug, V. Debaecker, and J. Louis. | M. Main-Knorn, B. Pflug, V. Debaecker, and J. Louis. |
<b>CALIBRATION AND VALIDATION PLAN FOR THE L2A PROCESSOR AND | <b>CALIBRATION AND VALIDATION PLAN FOR THE L2A PROCESSOR AND |
PRODUCTS OF THE SENTINEL-2 MISSION</b>. | PRODUCTS OF THE SENTINEL-2 MISSION</b>. |
In Schreier, G and Skrovseth, PE and Staudenrausch, H, editor, <em> | In G Schreier, PE Skrovseth, and H Staudenrausch, editors, <em>36TH |
36TH INTERNATIONAL SYMPOSIUM ON REMOTE SENSING OF ENVIRONMENT</em>, volume 47 | INTERNATIONAL SYMPOSIUM ON REMOTE SENSING OF ENVIRONMENT</em>, volume 47 of <em> |
of <em>International Archives of the Photogrammetry Remote Sensing and | International Archives of the Photogrammetry Remote Sensing and Spatial |
Spatial Information Sciences</em>, pages 1249--1255, 2015. | Information Sciences</em>, pages 1249-1255, 2015. |
36th International Symposium on Remote Sensing of Environment, | 36th International Symposium on Remote Sensing of Environment, |
Berlin, GERMANY, MAY 11-15, 2015. | Berlin, GERMANY, MAY 11-15, 2015. |
[ <a href="http://dx.doi.org/{10.5194/isprsarchives-XL-7-W3-1249-2015}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/isprsarchives-XL-7-W3-1249-2015">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000349663200009">37</a>] | [<a name="WOS:000351049000002">668</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Mateos, A. di Sarra, J. Bilbao, D. Meloni, G. Pace, A. de Miguel, and | W. Wandji Nyamsi, B. Espinar, P. Blanc, and L. Wald. |
G. Casasanta. | <b>Estimating the photosynthetically active radiation under clear |
<b>Spectral attenuation of global and diffuse UV irradiance and | skies by means of a new approach</b>. |
actinic flux by clouds</b>. | <em>ADVANCES IN SCIENCE AND RESEARCH</em>, 12:5-10, 2015. |
<em>QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY</em>, | 14th Annual Meeting of the European-Meteorological-Society (EMS) / |
141(686, A):109--113, JAN 2015. | 10th European Conference on Applications of Meteorology (ECAC), Prague, CZECH |
[ <a href="http://dx.doi.org/{10.1002/qj.2341}">DOI</a> ] | REPUBLIC, OCT 06-10, 2014. |
| [ <a href="http://dx.doi.org/10.5194/asr-12-5-2015">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000367945500042">38</a>] | [<a name="WOS:000367945500042">669</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Thomas Miletti, Luca Maresi, Alessandro Zuccaro Marchi, and Giorgia Pontetti. | Thomas Miletti, Luca Maresi, Alessandro Zuccaro Marchi, and Giorgia Pontetti. |
<b>G-MAP: a novel night vision system for satellites</b>. | <b>G-MAP: a novel night vision system for satellites</b>. |
In Meynart, R and Neeck, SP and Shimoda, H and Kimura, T, editor, | In R Meynart, SP Neeck, H Shimoda, and T Kimura, editors, <em> |
<em>SENSORS, SYSTEMS, AND NEXT-GENERATION SATELLITES XIX</em>, volume 9639 | SENSORS, SYSTEMS, AND NEXT-GENERATION SATELLITES XIX</em>, volume 9639 of <em> |
of <em>Proceedings of SPIE</em>. SPIE, 2015. | Proceedings of SPIE</em>. SPIE, 2015. |
Conference on Sensors, Systems, and Next- Generation Satellites XIX, | Conference on Sensors, Systems, and Next- Generation Satellites XIX, |
Toulouse, FRANCE, SEP 21-24, 2015. | Toulouse, FRANCE, SEP 21-24, 2015. |
[ <a href="http://dx.doi.org/{10.1117/12.2195028}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1117/12.2195028">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000351969700011">39</a>] | [<a name="WOS:000367384600006">670</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Michael I. Mishchenko, Janna M. Dlugach, Jacek Chowdhary, and Nadezhda T. | Y. Eissa, P. Blanc, L. Wald, and H. Ghedira. |
Zakharova. | <b>Can AERONET data be used to accurately model the monochromatic |
<b>Polarized bidirectional reflectance of optically thick sparse | beam and circumsolar irradiances under cloud-free conditions in desert |
particulate layers: An efficient numerically exact radiative-transfer | environment?</b> |
solution</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(12):5099-5112, 2015. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | [ <a href="http://dx.doi.org/10.5194/amt-8-5099-2015">DOI</a> ] |
156:97--108, MAY 2015. | |
[ <a href="http://dx.doi.org/{10.1016/j.jqsrt.2015.02.003}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000358941200024">40</a>] | [<a name="WOS:000367316600007">671</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Saverio Mori and Frank S. Marzano. | Clement Bertin, Sylvain Cros, Laurent Saint-Antonin, and Nicolas Schmutz. |
<b>Microphysical characterization of free space optical link due | <b>Prediction of optical communication link availability: real-time |
to hydrometeor and fog effects</b>. | observation of cloud patterns using a ground-based thermal infrared camera</b>. |
<em>APPLIED OPTICS</em>, 54(22):6787--6803, AUG 1 2015. | In KU Stein and JD Gonglewski, editors, <em>OPTICS IN ATMOSPHERIC |
[ <a href="http://dx.doi.org/{10.1364/AO.54.006787}">DOI</a> ] | PROPAGATION AND ADAPTIVE SYSTEMS XVIII</em>, volume 9641 of <em>Proceedings of |
| SPIE</em>. SPIE, 2015. |
| Conference on Optics in Atmospheric Propagation and Adaptive Systems |
| XVIII, Toulouse, FRANCE, SEP 22, 2015. |
| [ <a href="http://dx.doi.org/10.1117/12.2194920">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000359631500001">41</a>] | [<a name="WOS:000365977100003">672</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Richard Mueller, Uwe Pfeifroth, and Christine Traeger-Chatterjee. | A. Arola, G. L. Schuster, M. R. A. Pitkanen, O. Dubovik, H. Kokkola, A. V. |
<b>Towards Optimal Aerosol Information for the Retrieval of Solar | Lindfors, T. Mielonen, T. Raatikainen, S. Romakkaniemi, S. N. Tripathi, and |
Surface Radiation Using Heliosat</b>. | H. Lihavainen. |
<em>ATMOSPHERE</em>, 6(7):863--878, JUL 2015. | <b>Direct radiative effect by brown carbon over the Indo-Gangetic |
[ <a href="http://dx.doi.org/{10.3390/atmos6070863}">DOI</a> ] | Plain</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(22):12731-12740, 2015. |
| [ <a href="http://dx.doi.org/10.5194/acp-15-12731-2015">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357590300026">42</a>] | [<a name="WOS:000361011100010">673</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Richard Mueller, Uwe Pfeifroth, Christine Traeger-Chatterjee, Joerg Trentmann, | P. I. Raptis, S. Kazadzis, K. Eleftheratos, P. Kosmopoulos, V. Amiridis, |
and Roswitha Cremer. | C. Helmis, and C. Zerefos. |
<b>Digging the METEOSAT Treasure-3 Decades of Solar Surface | <b>Total ozone column measurements using an ultraviolet |
Radiation</b>. | multi-filter radiometer</b>. |
<em>REMOTE SENSING</em>, 7(6):8067--8101, JUN 2015. | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 36(17):4469-4482, |
[ <a href="http://dx.doi.org/{10.3390/rs70608067}">DOI</a> ] | 2015. |
| [ <a href="http://dx.doi.org/10.1080/01431161.2015.1083631">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000364248100071">43</a>] | [<a name="WOS:000357978300015">674</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Nikitidou, A. Kazantzidis, P. Tzoumanikas, V. Salamalikis, and A. F. Bais. | G. Bernhard, A. Arola, A. Dahlback, V. Fioletov, A. Heikkila, B. Johnsen, |
<b>Retrieval of surface solar irradiance, based on | T. Koskela, K. Lakkala, T. Svendby, and J. Tamminen. |
satellite-derived cloud information, in Greece</b>. | <b>Comparison of OMI UV observations with ground-based measurements |
<em>ENERGY</em>, 90(1):776--783, OCT 2015. | at high northern latitudes</b>. |
[ <a href="http://dx.doi.org/{10.1016/j.energy.2015.07.103}">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(13):7391-7412, 2015. |
| [ <a href="http://dx.doi.org/10.5194/acp-15-7391-2015">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357978300018">44</a>] | [<a name="WOS:000357978300018">675</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
W. Wandji Nyamsi, A. Arola, P. Blanc, A. V. Lindfors, V. Cesnulyte, M. R. A. | W. Wandji Nyamsi, A. Arola, P. Blanc, A. V. Lindfors, V. Cesnulyte, M. R. A. |
Pitkanen, and L. Wald. | Pitkanen, and L. Wald. |
<b>Technical Note: A novel parameterization of the transmissivity | <b>Technical Note: A novel parameterization of the transmissivity |
due to ozone absorption in the k-distribution method and correlated-k | due to ozone absorption in the <i>k</i>-distribution method and |
approximation of Kato et al. (1999) over the UV band</b>. | correlated-<i>k</i> approximation of Kato et al. (1999) over the UV band</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(13):7449--7456, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(13):7449-7456, 2015. |
2015. | [ <a href="http://dx.doi.org/10.5194/acp-15-7449-2015">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-15-7449-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000351049000002">45</a>] | [<a name="WOS:000357117900014">676</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
W. Wandji Nyamsi, B. Espinar, P. Blanc, and L. Wald. | F. Tack, F. Hendrick, F. Goutail, C. Fayt, A. Merlaud, G. Pinardi, C. Hermans, |
<b>Estimating the photosynthetically active radiation under clear | J. P. Pommereau, and M. Van Roozendael. |
skies by means of a new approach</b>. | <b>Tropospheric nitrogen dioxide column retrieval from ground-based |
<em>ADVANCES IN SCIENCE AND RESEARCH</em>, 12:5--10, 2015. | zenith-sky DOAS observations</b>. |
14th Annual Meeting of the European-Meteorological-Society (EMS) / | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(6):2417-2435, 2015. |
10th European Conference on Applications of Meteorology (ECAC), Prague, CZECH | [ <a href="http://dx.doi.org/10.5194/amt-8-2417-2015">DOI</a> ] |
REPUBLIC, OCT 06-10, 2014. | |
[ <a href="http://dx.doi.org/{10.5194/asr-12-5-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000368258000009">46</a>] | [<a name="WOS:000357117900019">677</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. A. Obregon, M. J. Costa, A. Serrano, and A. M. Silva. | F. Ewald, C. Winkler, and T. Zinner. |
<b>Effect of water vapor in the SW and LW downward irradiance at | <b>Reconstruction of cloud geometry using a scanning cloud radar</b>. |
the surface during a day with low aerosol load</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(6):2491-2508, 2015. |
In <em>3RD IBERIAN MEETING ON AEROSOL SCIENCE AND TECHNOLOGY (RICTA | [ <a href="http://dx.doi.org/10.5194/amt-8-2491-2015">DOI</a> ] |
2015)</em>, volume 28 of <em>IOP Conference Series-Earth and Environmental | |
Science</em>. Univ Miguel Hernandez, Stat & Computat Phys Lab; AECyTA; Spanish | |
Assoc Aerosol Sci & Technol Res, 2015. | |
3rd Iberian Meeting on Aerosol Science and Technology (RICTA), | |
Centro Congresos Ciutat Elx, Elche, SPAIN, JUN 29-JUL 01, 2015. | |
[ <a href="http://dx.doi.org/{10.1088/1755-1315/28/1/012009}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000347264600032">47</a>] | [<a name="WOS:000357125000006">678</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. A. Obregon, S. Pereira, V. Salgueiro, M. J. Costa, A. M. Silva, A. Serrano, | S. Arabas, A. Jaruga, H. Pawlowska, and W. W. Grabowski. |
and D. Bortoli. | <b>libcloudph++1.0: a single-moment bulk, double-moment bulk, and |
<b>Aerosol radiative effects during two desert dust events in | particle-based warm-rain microphysics library in C plus</b>. |
August 2012 over the Southwestern Iberian Peninsula</b>. | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 8(6):1677-1707, 2015. |
<em>ATMOSPHERIC RESEARCH</em>, 153:404--415, FEB 2015. | [ <a href="http://dx.doi.org/10.5194/gmd-8-1677-2015">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.1016/j.atmosres.2014.10.007}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000368258000010">48</a>] | [<a name="WOS:000355289200021">679</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. A. Obregon, A. Serrano, M. J. Costa, and A. M. Silva. | J. Gliss, N. Bobrowski, L. Vogel, D. Poehler, and U. Platt. |
<b>Validation of libRadtran and SBDART models under different | <b>OClO and BrO observations in the volcanic plume of Mt. Etna - |
aerosol conditions</b>. | implications on the chemistry of chlorine and bromine species in volcanic |
In <em>3RD IBERIAN MEETING ON AEROSOL SCIENCE AND TECHNOLOGY (RICTA | plumes</b>. |
2015)</em>, volume 28 of <em>IOP Conference Series-Earth and Environmental | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(10):5659-5681, 2015. |
Science</em>. Univ Miguel Hernandez, Stat & Computat Phys Lab; AECyTA; Spanish | [ <a href="http://dx.doi.org/10.5194/acp-15-5659-2015">DOI</a> ] |
Assoc Aerosol Sci & Technol Res, 2015. | |
3rd Iberian Meeting on Aerosol Science and Technology (RICTA), | |
Centro Congresos Ciutat Elx, Elche, SPAIN, JUN 29-JUL 01, 2015. | |
[ <a href="http://dx.doi.org/{10.1088/1755-1315/28/1/012010}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000363055300007">49</a>] | [<a name="WOS:000353326300009">680</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sang Seo Park, Yun Gon Lee, and Jung Hyun Kim. | Philippe Porral, Patrick Callet, Philippe Fuchs, Thomas Muller, and Etienne |
<b>Impact of UV-A radiation on erythemal UV and UV-index | Sandre-Chardonnal. |
estimation over Korea</b>. | <b>High Dynamic, Spectral and Polarized Natural Light Environment |
<em>ADVANCES IN ATMOSPHERIC SCIENCES</em>, 32(12):1639--1646, | Acquisition</b>. |
DEC 2015. | In R Widenhorn and A Dupret, editors, <em>IMAGE SENSORS AND IMAGING |
[ <a href="http://dx.doi.org/{10.1007/s00376-015-4231-7}">DOI</a> ] | SYSTEMS 2015</em>, volume 9403 of <em>Proceedings of SPIE</em>. Soc Imaging Sci & |
| Technol; SPIE; Google; CEA LETI, 2015. |
| Conference on Image Sensors and Imaging Systems, San Francisco, CA, |
| FEB 09-10, 2015. |
| [ <a href="http://dx.doi.org/10.1117/12.2075342">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000353413800018">50</a>] | [<a name="WOS:000352158300006">681</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Giovanni Pitari, Glauco Di Genova, Eleonora Coppari, Natalia De Luca, Piero | P. Weihs, M. Rennhofer, D. J. Baumgartner, J. Gadermaier, J. E. Wagner, J. E. |
Di Carlo, Marco Iarlori, and Vincenzo Rizi. | Gehring, and W. Laube. |
<b>Desert dust transported over Europe: Lidar observations and | <b>Potential impact of contrails on solar energy gain</b>. |
model evaluation of the radiative impact</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(3):1089-1096, 2015. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | [ <a href="http://dx.doi.org/10.5194/amt-8-1089-2015">DOI</a> ] |
120(7):2881--2898, APR 16 2015. | |
[ <a href="http://dx.doi.org/{10.1002/2014JD022875}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000353326300009">51</a>] | [<a name="WOS:000352158300026">682</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Philippe Porral, Patrick Callet, Philippe Fuchs, Thomas Muller, and Etienne | S. E. LeBlanc, P. Pilewskie, K. S. Schmidt, and O. Coddington. |
Sandre-Chardonnal. | <b>A spectral method for discriminating thermodynamic phase and |
<b>High Dynamic, Spectral and Polarized Natural Light Environment | retrieving cloud optical thickness and effective radius using transmitted |
Acquisition</b>. | solar radiance spectra</b>. |
In Widenhorn, R and Dupret, A, editor, <em>Image Sensors and | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(3):1361-1383, 2015. |
Imaging Systems 2015</em>, volume 9403 of <em>Proceedings of SPIE</em>. Soc | [ <a href="http://dx.doi.org/10.5194/amt-8-1361-2015">DOI</a> ] |
Imaging Sci & Technol; SPIE; Google; CEA LETI, 2015. | |
Conference on Image Sensors and Imaging Systems, San Francisco, CA, | |
FEB 09-10, 2015. | |
[ <a href="http://dx.doi.org/{10.1117/12.2075342}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000356557700004">52</a>] | [<a name="WOS:000350304200004">683</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ibrahim Reda, Jorgen Konings, and Yu Xie. | K. Fragkos, A. F. Bais, D. Balis, C. Meleti, and M. E. Koukouli. |
<b>A method to measure the broadband longwave irradiance in the | <b>The Effect of Three Different Absorption Cross-Sections and |
terrestrial direct solar beam</b>. | their Temperature Dependence on Total Ozone Measured by a Mid-Latitude Brewer |
<em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, | Spectrophotometer</b>. |
129:23--29, JUL 2015. | <em>ATMOSPHERE-OCEAN</em>, 53(1):19-28, 2015. |
[ <a href="http://dx.doi.org/{10.1016/j.jastp.2015.04.003}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1080/07055900.2013.847816">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357589800007">53</a>] | [<a name="WOS:000349663200009">684</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Aku Riihela, Thomas Carlund, Joerg Trentmann, Richard Mueller, and Anders V. | D. Mateos, A. di Sarra, J. Bilbao, D. Meloni, G. Pace, A. de Miguel, and |
Lindfors. | G. Casasanta. |
<b>Validation of CM SAF Surface Solar Radiation Datasets over | <b>Spectral attenuation of global and diffuse UV irradiance and |
Finland and Sweden</b>. | actinic flux by clouds</b>. |
<em>REMOTE SENSING</em>, 7(6):6663--6682, JUN 2015. | <em>QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY</em>, 141(686, |
[ <a href="http://dx.doi.org/{10.3390/rs70606663}">DOI</a> ] | A):109-113, JAN 2015. |
| [ <a href="http://dx.doi.org/10.1002/qj.2341">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000349274300002">685</a>] |
| </td> |
| <td> |
| Tobias Schulmann, Marwan Katurji, and Peyman Zawar-Reza. |
| <b>Seeing through shadow: Modelling surface irradiance for |
| topographic correction of Landsat ETM plus data</b>. |
| <em>ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING</em>, 99:14-24, |
| JAN 2015. |
| [ <a href="http://dx.doi.org/10.1016/j.isprsjprs.2014.10.004">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000347958200022">54</a>] | [<a name="WOS:000347958200022">686</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. Roman, J. Bilbao, and A. de Miguel. | R. Roman, J. Bilbao, and A. de Miguel. |
<b>Erythemal ultraviolet irradiation trends in the Iberian | <b>Erythemal ultraviolet irradiation trends in the Iberian |
Peninsula from 1950 to 2011</b>. | Peninsula from 1950 to 2011</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(1):375--391, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(1):375-391, 2015. |
2015. | [ <a href="http://dx.doi.org/10.5194/acp-15-375-2015">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-15-375-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000209847200028">55</a>] | [<a name="WOS:000347958200028">687</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Rawad Saleh, Marguerite Marks, Jinhyok Heo, Peter J. Adams, Neil M. Donahue, | A-M. Sundstrom, A. Arola, P. Kolmonen, Y. Xue, G. de Leeuw, and M. Kulmala. |
and Allen L. Robinson. | <b>On the use of a satellite remote-sensing-based approach for |
<b>Contribution of brown carbon and lensing to the direct | determining aerosol direct radiative effect over land: a case study over |
radiative effect of carbonaceous aerosols from biomass and biofuel burning | China</b>. |
emissions</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(1):505-518, 2015. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | [ <a href="http://dx.doi.org/10.5194/acp-15-505-2015">DOI</a> ] |
120(19):10285--10296, OCT 16 2015. | |
[ <a href="http://dx.doi.org/{10.1002/2015JD023697}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000349274300002">56</a>] | [<a name="WOS:000368258000006">688</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Tobias Schulmann, Marwan Katurji, and Peyman Zawar-Reza. | M. J. Costa, M. A. Obregon, S. Pereira, V. Salgueiro, M. Potes, F. T. Couto, |
<b>Seeing through shadow: Modelling surface irradiance for | R. Salgado, D. Bortoli, and A. M. Silva. |
topographic correction of Landsat ETM plus data</b>. | <b>Analysis of atmospheric vertical profiles in the presence of |
<em>ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING</em>, | desert dust aerosols</b>. |
99:14--24, JAN 2015. | In <em>3RD IBERIAN MEETING ON AEROSOL SCIENCE AND TECHNOLOGY (RICTA |
[ <a href="http://dx.doi.org/{10.1016/j.isprsjprs.2014.10.004}">DOI</a> ] | 2015)</em>, volume 28 of <em>IOP Conference Series-Earth and Environmental |
| Science</em>. Univ Miguel Hernandez, Stat & Computat Phys Lab; AECyTA; Spanish |
| Assoc Aerosol Sci & Technol Res, 2015. |
| 3rd Iberian Meeting on Aerosol Science and Technology (RICTA), Centro |
| Congresos Ciutat Elx, Elche, SPAIN, JUN 29-JUL 01, 2015. |
| [ <a href="http://dx.doi.org/10.1088/1755-1315/28/1/012006">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000368258000007">689</a>] |
| </td> |
| <td> |
| M. J. Costa, V. Salgueiro, D. Bortoli, M. A. Obregon, M. Anton, and A. M. |
| Silva. |
| <b>Retrieval of the aerosol optical thickness from UV global |
| irradiance measurements</b>. |
| In <em>3RD IBERIAN MEETING ON AEROSOL SCIENCE AND TECHNOLOGY (RICTA |
| 2015)</em>, volume 28 of <em>IOP Conference Series-Earth and Environmental |
| Science</em>. Univ Miguel Hernandez, Stat & Computat Phys Lab; AECyTA; Spanish |
| Assoc Aerosol Sci & Technol Res, 2015. |
| 3rd Iberian Meeting on Aerosol Science and Technology (RICTA), Centro |
| Congresos Ciutat Elx, Elche, SPAIN, JUN 29-JUL 01, 2015. |
| [ <a href="http://dx.doi.org/10.1088/1755-1315/28/1/012007">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000368258000010">690</a>] |
| </td> |
| <td> |
| M. A. Obregon, A. Serrano, M. J. Costa, and A. M. Silva. |
| <b>Validation of libRadtran and SBDART models under different |
| aerosol conditions</b>. |
| In <em>3RD IBERIAN MEETING ON AEROSOL SCIENCE AND TECHNOLOGY (RICTA |
| 2015)</em>, volume 28 of <em>IOP Conference Series-Earth and Environmental |
| Science</em>. Univ Miguel Hernandez, Stat & Computat Phys Lab; AECyTA; Spanish |
| Assoc Aerosol Sci & Technol Res, 2015. |
| 3rd Iberian Meeting on Aerosol Science and Technology (RICTA), Centro |
| Congresos Ciutat Elx, Elche, SPAIN, JUN 29-JUL 01, 2015. |
| [ <a href="http://dx.doi.org/10.1088/1755-1315/28/1/012010">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000368258000009">691</a>] |
| </td> |
| <td> |
| M. A. Obregon, M. J. Costa, A. Serrano, and A. M. Silva. |
| <b>Effect of water vapor in the SW and LW downward irradiance at |
| the surface during a day with low aerosol load</b>. |
| In <em>3RD IBERIAN MEETING ON AEROSOL SCIENCE AND TECHNOLOGY (RICTA |
| 2015)</em>, volume 28 of <em>IOP Conference Series-Earth and Environmental |
| Science</em>. Univ Miguel Hernandez, Stat & Computat Phys Lab; AECyTA; Spanish |
| Assoc Aerosol Sci & Technol Res, 2015. |
| 3rd Iberian Meeting on Aerosol Science and Technology (RICTA), Centro |
| Congresos Ciutat Elx, Elche, SPAIN, JUN 29-JUL 01, 2015. |
| [ <a href="http://dx.doi.org/10.1088/1755-1315/28/1/012009">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000368904500003">57</a>] | [<a name="WOS:000368904500003">692</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Pasquale Sellitto and Pierre Briole. | Pasquale Sellitto and Pierre Briole. |
<b>On the radiative forcing of volcanic plumes: modelling the | <b>On the radiative forcing of volcanic plumes: modelling the |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000355709300005">58</a>] | [<a name="WOS:000358799000008">693</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Serrano, M. J. Marin, M. Nunez, S. Gandia, M. P. Utrillas, and J. A. | M. M. Frey, H. K. Roscoe, A. Kukui, J. Savarino, J. L. France, M. D. King, |
Martinez-Lozano. | M. Legrand, and S. Preunkert. |
<b>Relationship between the effective cloud optical depth and | <b>Atmospheric nitrogen oxides (NO and NO<sub>2</sub>) at Dome C, |
different atmospheric transmission factors</b>. | East Antarctica, during the OPALE campaign</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 160:50--58, JUN 15 2015. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(14):7859-7875, 2015. |
[ <a href="http://dx.doi.org/{10.1016/j.atmosres.2015.03.004}">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-15-7859-2015">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357754000002">59</a>] | [<a name="WOS:000362457400018">694</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Serrano, M. J. Marin, M. Nunez, M. P. Utrillas, S. Gandia, and J. A. | M. Gil-Ojeda, M. Navarro-Comas, L. Gomez-Martin, J. A. Adame, A. Saiz-Lopez, |
Martinez-Lozano. | C. A. Cuevas, Y. Gonzalez, O. Puentedura, E. Cuevas, J. F. Lamarque, |
<b>Wavelength dependence of the effective cloud optical depth</b>. | D. Kinninson, and S. Tilmes. |
<em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, | <b>NO<sub>2</sub> seasonal evolution in the north subtropical free |
130:14--22, AUG 2015. | troposphere</b>. |
[ <a href="http://dx.doi.org/{10.1016/j.jastp.2015.05.001}">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(18):10567-10579, 2015. |
| [ <a href="http://dx.doi.org/10.5194/acp-15-10567-2015">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000347958200028">60</a>] | [<a name="WOS:000355288900002">695</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A-M. Sundstrom, A. Arola, P. Kolmonen, Y. Xue, G. de Leeuw, and M. Kulmala. | A. Kylling, N. Kristiansen, A. Stohl, R. Buras-Schnell, C. Emde, and |
<b>On the use of a satellite remote-sensing-based approach for | J. Gasteiger. |
determining aerosol direct radiative effect over land: a case study over | <b>A model sensitivity study of the impact of clouds on satellite |
China</b>. | detection and retrieval of volcanic ash</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 15(1):505--518, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(5):1935-1949, 2015. |
2015. | [ <a href="http://dx.doi.org/10.5194/amt-8-1935-2015">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/acp-15-505-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000357117900014">61</a>] | [<a name="WOS:000360649700029">696</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Tack, F. Hendrick, F. Goutail, C. Fayt, A. Merlaud, G. Pinardi, C. Hermans, | N. Hanrieder, S. Wilbert, R. Pitz-Paal, C. Emde, J. Gasteiger, B. Mayer, and |
J. P. Pommereau, and M. Van Roozendael. | J. Polo. |
<b>Tropospheric nitrogen dioxide column retrieval from | <b>Atmospheric extinction in solar tower plants: absorption and |
ground-based zenith-sky DOAS observations</b>. | broadband correction for MOR measurements</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(6):2417--2435, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(8):3467-3480, 2015. |
2015. | [ <a href="http://dx.doi.org/10.5194/amt-8-3467-2015">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/amt-8-2417-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000367384600003">62</a>] | [<a name="WOS:000367384600003">697</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Verhoelst, J. Granville, F. Hendrick, U. Koehler, C. Lerot, J. P. Pommereau, | T. Verhoelst, J. Granville, F. Hendrick, U. Koehler, C. Lerot, J. P. Pommereau, |
A. Redondas, M. Van Roozendael, and J. C. Lambert. | A. Redondas, M. Van Roozendael, and J. C. Lambert. |
<b>Metrology of ground-based satellite validation: co-location | <b>Metrology of ground-based satellite validation: co-location |
mismatch and smoothing issues of total ozone comparisons</b>. | mismatch and smoothing issues of total ozone comparisons</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(12):5039--5062, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(12):5039-5062, 2015. |
2015. | [ <a href="http://dx.doi.org/10.5194/amt-8-5039-2015">DOI</a> ] |
[ <a href="http://dx.doi.org/{10.5194/amt-8-5039-2015}">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000349020900006">63</a>] | [<a name="WOS:000367384600014">698</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Voskrebenzev, S. Riechelmann, A. Bais, H. Slaper, and G. Seckmeyer. | E. Jaekel, B. Mey, R. Levy, X. Gu, T. Yu, Z. Li, D. Althausen, B. Heese, and |
<b>Estimating probability distributions of solar irradiance</b>. | M. Wendisch. |
<em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 119(3-4):465--479, | <b>Adaption of the MODIS aerosol retrieval algorithm using airborne |
FEB 2015. | spectral surface reflectance measurements over urban areas: a case study</b>. |
[ <a href="http://dx.doi.org/{10.1007/s00704-014-1189-9}">DOI</a> ] | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(12):5237-5249, 2015. |
| [ <a href="http://dx.doi.org/10.5194/amt-8-5237-2015">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000352158300006">64</a>] | [<a name="WOS:000355734700001">699</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Weihs, M. Rennhofer, D. J. Baumgartner, J. Gadermaier, J. E. Wagner, J. E. | Andreas Kazantzidis, Andrew Smedley, Richard Kift, John Rimmer, Jacqueline L. |
Gehring, and W. Laube. | Berry, Lesley E. Rhodes, and Ann R. Webb. |
<b>Potential impact of contrails on solar energy gain</b>. | <b>A modeling approach to determine how much UV radiation is |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 8(3):1089--1096, | available across the UK and Ireland for health risk and benefit studies</b>. |
| <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 14(6):1073-1081, |
2015. | 2015. |
[ <a href="http://dx.doi.org/{10.5194/amt-8-1089-2015}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1039/c5pp00008d">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000359868400010">65</a>] | [<a name="WOS:000357202300004">700</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Georg Wirth, Elke Lorenz, Andreas Spring, Gerd Becker, Robert Pardatscher, and | I. Fountoulakis and A. F. Bais. |
Rolf Witzmann. | <b>Projected changes in erythemal and vitamin D effective |
<b>Modeling the maximum power output of a distributed PV fleet</b>. | irradiance over northern-hemisphere high latitudes</b>. |
<em>PROGRESS IN PHOTOVOLTAICS</em>, 23(9):1164--1181, SEP | <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 14(7):1251-1264, |
2015. | 2015. |
[ <a href="http://dx.doi.org/{10.1002/pip.2513}">DOI</a> ] | [ <a href="http://dx.doi.org/10.1039/c5pp00093a">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000348401900003">66</a>] | [<a name="WOS:000348401900003">701</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Hui Xu, Tianhai Cheng, Xingfa Gu, Tao Yu, Yu Wu, and Hao Chen. | Hui Xu, Tianhai Cheng, Xingfa Gu, Tao Yu, Yu Wu, and Hao Chen. |
<b>New Asia Dust Storm Detection Method Based on the Thermal | <b>New Asia Dust Storm Detection Method Based on the Thermal |
Infrared Spectral Signature</b>. | Infrared Spectral Signature</b>. |
<em>REMOTE SENSING</em>, 7(1):51--71, JAN 2015. | <em>REMOTE SENSING</em>, 7(1):51-71, JAN 2015. |
[ <a href="http://dx.doi.org/{10.3390/rs70100051}">DOI</a> ] | [ <a href="http://dx.doi.org/10.3390/rs70100051">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000355043600007">67</a>] | [<a name="WOS:000348600900007">702</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Georgi Hristov Yordanov, Tor Oskar Saetre, and Ole-Morten Midtgard. | William Wandji Nyamsi, Bella Espinar, Philippe Blanc, and Lucien Wald. |
<b>Extreme overirradiance events in Norway: 1.6 suns measured | <b>How close to detailed spectral calculations is the |
close to 60 degrees N</b>. | <i>k</i>-distribution method and correlated-<i>k</i> approximation of KATO et |
<em>SOLAR ENERGY</em>, 115:68--73, MAY 2015. | al. (1999) in each spectral interval?</b> |
[ <a href="http://dx.doi.org/{10.1016/j.solener.2015.02.020}">DOI</a> ] | <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 23(5):547-556, DEC 2014. |
| [ <a href="http://dx.doi.org/10.1127/metz/2014/0607">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2014</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000345996500009">703</a>] |
| </td> |
| <td> |
| D. Serrano, M. Nunez, M. P. Utrillas, M. J. Marin, C. Marcos, and J. A. |
| Martinez-Lozano. |
| <b>Effective cloud optical depth for overcast conditions determined |
| with a UV radiometers</b>. |
| <em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, 34(15):3939-3952, DEC |
| 2014. |
| [ <a href="http://dx.doi.org/10.1002/joc.3953">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000333138300013">1</a>] | [<a name="WOS:000346800300014">704</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anton, D. Mateos, R. Roman, A. Valenzuela, L. Alados-Arboledas, and F. J. | Richard Mueller and Christine Traeger-Chatterjee. |
Olmo. | <b>Brief Accuracy Assessment of Aerosol Climatologies for the |
<b>A method to determine the ozone radiative forcing in the | Retrieval of Solar Surface Radiation</b>. |
ultraviolet range from experimental data</b>. | <em>ATMOSPHERE</em>, 5(4):959-972, DEC 2014. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | [ <a href="http://dx.doi.org/10.3390/atmos5040959">DOI</a> ] |
119(4):1860--1873, FEB 27 2014. | |
[ <a href="http://dx.doi.org/10.1002/2013JD020444">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000338446500018">2</a>] | [<a name="WOS:000345804400006">705</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Viorel Badescu and Alexandru Dumitrescu. | Roberto Roman, Julia Bilbao, and Argimiro de Miguel. |
<b>Accuracy of CM-SAF solar irradiance incident on horizontal | <b>Reconstruction of six decades of daily total solar shortwave |
surface</b>. | irradiation in the Iberian Peninsula using sunshine duration records</b>. |
<em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 117(1-2):233--246, | <em>ATMOSPHERIC ENVIRONMENT</em>, 99:41-50, DEC 2014. |
JUL 2014. | [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2014.09.052">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1007/s00704-013-0990-1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000337766600007">3</a>] | [<a name="WOS:000345855600009">706</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Eduardo Barbaro, Jordi Vila-Guerau de Arellano, Huug G. Ouwersloot, Joel S. | Joseph T. Kider, Jr., Daniel Knowlton, Jeremy Newlin, Yining Karl Li, and |
Schroter, David P. Donovan, and Maarten C. Krol. | Donald P. Greenberg. |
<b>Aerosols in the convective boundary layer: Shortwave radiation | <b>A Framework for the Experimental Comparison of Solar and Skydome |
effects on the coupled land-atmosphere system</b>. | Illumination</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | <em>ACM TRANSACTIONS ON GRAPHICS</em>, 33(6), NOV 2014. |
119(10):5845--5863, MAY 27 2014. | [ <a href="http://dx.doi.org/10.1145/2661229.2661259">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1002/2013JD021237">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000336109100007">4</a>] | [<a name="WOS:000342254100013">707</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Bilbao, R. Roman, and A. Miguel. | J. Gasteiger, C. Emde, B. Mayer, R. Buras, S. A. Buehler, and O. Lemke. |
<b>Turbidity coefficients from normal direct solar irradiance in | <b>Representative wavelengths absorption parameterization applied |
Central Spain</b>. | to satellite channels and spectral bands</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 143:73--84, JUN 15 2014. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2014.02.007">DOI</a> ] | 148:99-115, NOV 2014. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.06.024">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000348253201038">5</a>] | [<a name="WOS:000341468100023">708</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Bilbao, R. Roman, C. Yousif, A. Perez-Burgos, and A. de Miguel. | R. R. Cordero, G. Seckmeyer, A. Damiani, J. Jorquera, J. Carrasco, R. Munoz, |
<b>Global, diffuse, direct, and ultraviolet solar irradiance | L. Da Silva, F. Labbe, and D. Laroze. |
recorded in Malta and atmospheric component influences</b>. | <b>Aerosol effects on the UV irradiance in Santiago de Chile</b>. |
In Lentz, A and Renne, D, editor, <em>2013 ISES SOLAR WORLD | <em>ATMOSPHERIC RESEARCH</em>, 149:282-291, NOV 2014. |
CONGRESS</em>, volume 57 of <em>Energy Procedia</em>, pages 1206--1210, | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2014.07.002">DOI</a> ] |
2014. | |
ISES Solar World Congress (SWC), Cancun, MEXICO, NOV 03-07, 2013. | |
[ <a href="http://dx.doi.org/10.1016/j.egypro.2014.10.108">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000347579100052">6</a>] | [<a name="WOS:000347994900076">709</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Blanc, B. Espinar, N. Geuder, C. Gueymard, R. Meyer, R. Pitz-Paal, | John D. Hedley, Kathryn McMahon, and Peter Fearns. |
B. Reinhardt, D. Renne, M. Sengupta, L. Wald, and S. Wilbert. | <b>Seagrass Canopy Photosynthetic Response Is a Function of Canopy |
<b>Direct normal irradiance related definitions and applications: | Density and Light Environment: A Model for <i>Amphibolis griffithii</i></b>. |
The circumsolar issue</b>. | <em>PLOS ONE</em>, 9(10), OCT 27 2014. |
<em>SOLAR ENERGY</em>, 110:561--577, DEC 2014. | [ <a href="http://dx.doi.org/10.1371/journal.pone.0111454">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.solener.2014.10.001">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000344053400022">7</a>] | [<a name="WOS:000344053400022">710</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Brueckner, B. Pospichal, A. Macke, and M. Wendisch. | M. Brueckner, B. Pospichal, A. Macke, and M. Wendisch. |
<b>A new multispectral cloud retrievalmethod for ship-based solar | <b>A new multispectral cloud retrievalmethod for ship-based solar |
transmissivity measurements</b>. | transmissivity measurements</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
119(19):11338--11354, OCT 16 2014. | 119(19):11338-11354, OCT 16 2014. |
[ <a href="http://dx.doi.org/10.1002/2014JD021775">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2014JD021775">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000340440700005">8</a>] | [<a name="WOS:000344913800058">711</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Axel Buettner and Hans-Peter Roeser. | Michael Sicard, Santi Bertolin, Constantino Munoz, Alejandro Rodriguez, |
<b>Hyperspectral Remote Sensing with the UAS “Stuttgarter | Francesc Rocadenbosch, and Adolfo Comeron. |
Adler” - System Setup, Calibration and First Results</b>. | <b>Separation of aerosol fine- and coarse-mode radiative |
<em>PHOTOGRAMMETRIE FERNERKUNDUNG GEOINFORMATION</em>, | properties: Effect on the mineral dust longwave, direct radiative forcing</b>. |
(4):265--274, 2014. | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 41(19):6978-6985, OCT 16 2014. |
[ <a href="http://dx.doi.org/10.1127/1432-8364/2014/0217">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2014GL060946">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000343392200044">9</a>] | [<a name="WOS:000342883400013">712</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Vanda Salgueiro, Maria Joao Costa, Ana Maria Silva, and Daniele Bortoli. |
| <b>Variability of the Daily-Mean Shortwave Cloud Radiative Forcing |
| at the Surface at a Midlatitude Site in Southwestern Europe</b>. |
| <em>JOURNAL OF CLIMATE</em>, 27(20):7769-7780, OCT 15 2014. |
| [ <a href="http://dx.doi.org/10.1175/JCLI-D-13-00696.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000342914200018">713</a>] |
| </td> |
| <td> |
| D. Mateos, A. Sanchez-Lorenzo, M. Anton, V. E. Cachorro, J. Calbo, M. J. Costa, |
| B. Torres, and M. Wild. |
| <b>Quantifying the respective roles of aerosols and clouds in the |
| strong brightening since the early 2000s over the Iberian Peninsula</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 119(17), SEP 16 |
| 2014. |
| [ <a href="http://dx.doi.org/10.1002/2014JD022076">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000343392200044">714</a>] |
| </td> |
| <td> |
M. Castelli, R. Stoeckli, D. Zardi, A. Tetzlaff, J. E. Wagner, G. Belluardo, | M. Castelli, R. Stoeckli, D. Zardi, A. Tetzlaff, J. E. Wagner, G. Belluardo, |
M. Zebisch, and M. Petitta. | M. Zebisch, and M. Petitta. |
<b>The HelioMont method for assessing solar irradiance over | <b>The HelioMont method for assessing solar irradiance over complex |
complex terrain: Validation and improvements</b>. | terrain: Validation and improvements</b>. |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 152:603--613, SEP | <em>REMOTE SENSING OF ENVIRONMENT</em>, 152:603-613, SEP 2014. |
2014. | |
[ <a href="http://dx.doi.org/10.1016/j.rse.2014.07.018">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.rse.2014.07.018">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000341103600036">10</a>] | [<a name="WOS:000338821700010">715</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
X. Ceamanos, D. Carrer, and J. L. Roujean. | Roberto Roman, Julia Bilbao, and Argimiro de Miguel. |
<b>Improved retrieval of direct and diffuse downwelling surface | <b>Solar radiation simulations in the Iberian Peninsula: Accuracy |
shortwave flux in cloudless atmosphere using dynamic estimates of aerosol | and sensitivity to uncertainties in inputs of a radiative transfer model</b>. |
content and type: application to the LSA-SAF project</b>. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(15):8209--8232, | 145:95-109, SEP 2014. |
2014. | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.04.028">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-14-8209-2014">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000329554100012">11</a>] | [<a name="WOS:000337999800011">716</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Xavier Ceamanos, Dominique Carrer, and Jean-Louis Roujean. | Carolin Klinger and Bernhard Mayer. |
<b>An efficient approach to estimate the transmittance and | <b>Three-dimensional Monte Carlo calculation of atmospheric thermal |
reflectance of a mixture of aerosol components</b>. | heating rates</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 137:125--135, FEB 2014. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2013.09.009">DOI</a> ] | 144:123-136, SEP 2014. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.04.009">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000341468100023">12</a>] | [<a name="WOS:000341966400020">717</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. R. Cordero, G. Seckmeyer, A. Damiani, J. Jorquera, J. Carrasco, R. Munoz, | Tassio S. Costa, Fabio L. T. Goncalves, Marcia A. Yamasoe, Jorge A. Martins, |
L. Da Silva, F. Labbe, and D. Laroze. | and Cindy E. Morris. |
<b>Aerosol effects on the UV irradiance in Santiago de Chile</b>. | <b>Bacterial ice nuclei impact cloud lifetime and radiative |
<em>ATMOSPHERIC RESEARCH</em>, 149:282--291, NOV 2014. | properties and reduce atmospheric heat loss in the BRAMS simulation model</b>. |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2014.07.002">DOI</a> ] | <em>ENVIRONMENTAL RESEARCH LETTERS</em>, 9(8), AUG 2014. |
| [ <a href="http://dx.doi.org/10.1088/1748-9326/9/8/084020">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000332479400122">13</a>] | [<a name="WOS:000335706800052">718</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Alessandro Damiani, Jorge Ferrer, Jose Jorquera, Mario Tobar, | E. Nikitidou, A. Kazantzidis, and V. Salamalikis. |
Fernando Labbe, Jorge Carrasco, and David Laroze. | <b>The aerosol effect on direct normal irradiance in Europe under |
<b>UV Irradiance and Albedo at Union Glacier Camp (Antarctica): A | clear skies</b>. |
Case Study</b>. | <em>RENEWABLE ENERGY</em>, 68:475-484, AUG 2014. |
<em>PLOS ONE</em>, 9(3), MAR 5 2014. | [ <a href="http://dx.doi.org/10.1016/j.renene.2014.02.034">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1371/journal.pone.0090705">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000328694900007">14</a>] | [<a name="WOS:000340408000018">719</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Gunther Seckmeyer, Alessandro Damiani, Stefan Riechelmann, | I. Fountoulakis, A. F. Bais, K. Tourpali, K. Fragkos, and S. Misios. |
Juan Rayas, Fernando Labbe, and David Laroze. | <b>Projected changes in solar UV radiation in the Arctic and |
<b>The world's highest levels of surface UV</b>. | sub-Arctic Oceans: Effects from changes in reflectivity, ice transmittance, |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, | clouds, and ozone</b>. |
13(1):70--81, 2014. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 119(13), JUL 16 |
[ <a href="http://dx.doi.org/10.1039/c3pp50221j">DOI</a> ] | 2014. |
| [ <a href="http://dx.doi.org/10.1002/2014JD021918">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000341966400020">15</a>] | [<a name="WOS:000338446500018">720</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Tassio S. Costa, Fabio L. T. Goncalves, Marcia A. Yamasoe, Jorge A. Martins, | Viorel Badescu and Alexandru Dumitrescu. |
and Cindy E. Morris. | <b>Accuracy of CM-SAF solar irradiance incident on horizontal |
<b>Bacterial ice nuclei impact cloud lifetime and radiative | surface</b>. |
properties and reduce atmospheric heat loss in the BRAMS simulation model</b>. | <em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 117(1-2):233-246, JUL |
<em>ENVIRONMENTAL RESEARCH LETTERS</em>, 9(8), AUG 2014. | 2014. |
[ <a href="http://dx.doi.org/10.1088/1748-9326/9/8/084020">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/s00704-013-0990-1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000334797000039">16</a>] | [<a name="WOS:000336113200001">721</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ilse Decoster, Nicolas Clerbaux, Edward Baudrez, Steven Dewitte, Alessandro | P. Sellitto and F. Del Frate. |
Ipe, Stijn Nevens, Almudena Velazquez Blazquez, and Jan Cornelis. | <b>The feasibility of retrieving vertical temperature profiles from |
<b>Spectral Aging Model Applied to Meteosat First Generation | satellite nadir UV observations: A sensitivity analysis and an inversion |
Visible Band</b>. | experiment with neural network algorithms</b>. |
<em>REMOTE SENSING</em>, 6(3):2534--2571, MAR 2014. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
[ <a href="http://dx.doi.org/10.3390/rs6032534">DOI</a> ] | 141:1-8, JUL 2014. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.02.023">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000349825200001">17</a>] | [<a name="WOS:000336109100007">722</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Henri Diemoz, Monica Campanelli, and Victor Estelles. | J. Bilbao, R. Roman, and A. Miguel. |
<b>One Year of Measurements with a POM-02 Sky Radiometer at an | <b>Turbidity coefficients from normal direct solar irradiance in |
Alpine EuroSkyRad Station</b>. | Central Spain</b>. |
<em>JOURNAL OF THE METEOROLOGICAL SOCIETY OF JAPAN</em>, | <em>ATMOSPHERIC RESEARCH</em>, 143:73-84, JUN 15 2014. |
92A(SI):1--16, 2014. | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2014.02.007">DOI</a> ] |
[ <a href="http://dx.doi.org/10.2151/jmsj.2014-A01">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000348253201034">18</a>] | [<a name="WOS:000337204800002">723</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Yehia Eissa, Philippe Blanc, Armel Oumbe, Hosni Ghedira, and Lucien Wald. | Philipp M. Kostka, Martin Weissmann, Robert Buras, Bernhard Mayer, and Olaf |
<b>Estimation of the circumsolar ratio in a turbid atmosphere</b>. | Stiller. |
In Lentz, A and Renne, D, editor, <em>2013 ISES SOLAR WORLD | <b>Observation Operator for Visible and Near-Infrared Satellite |
CONGRESS</em>, volume 57 of <em>Energy Procedia</em>, pages 1169--1178, | Reflectances</b>. |
2014. | <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, |
ISES Solar World Congress (SWC), Cancun, MEXICO, NOV 03-07, 2013. | 31(6):1216-1233, JUN 2014. |
[ <a href="http://dx.doi.org/10.1016/j.egypro.2014.10.104">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/JTECH-D-13-00116.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000341993100012">19</a>] | [<a name="WOS:000335874500058">724</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
L. Ferrero, M. Castelli, B. S. Ferrini, M. Moscatelli, M. G. Perrone, | Roberto Roman, Julia Bilbao, and Argimiro de Miguel. |
G. Sangiorgi, L. D'Angelo, G. Rovelli, B. Moroni, F. Scardazza, G. Mocnik, | <b>Uncertainty and variability in satellite-based water vapor |
E. Bolzacchini, M. Petitta, and D. Cappelletti. | column, aerosol optical depth and Angstrom exponent, and its effect on |
<b>Impact of black carbon aerosol over Italian basin valleys: | radiative transfer simulations in the Iberian Peninsula</b>. |
high-resolution measurements along vertical profiles, radiative forcing and | <em>ATMOSPHERIC ENVIRONMENT</em>, 89:556-569, JUN 2014. |
heating rate</b>. | [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2014.02.027">DOI</a> ] |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(18):9640--9663, | |
2014. | |
[ <a href="http://dx.doi.org/10.5194/acp-14-9641-2014">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000340408000018">20</a>] | [<a name="WOS:000337766600007">725</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. Fountoulakis, A. F. Bais, K. Tourpali, K. Fragkos, and S. Misios. | Eduardo Barbaro, Jordi Vila-Guerau de Arellano, Huug G. Ouwersloot, Joel S. |
<b>Projected changes in solar UV radiation in the Arctic and | Schroter, David P. Donovan, and Maarten C. Krol. |
sub-Arctic Oceans: Effects from changes in reflectivity, ice transmittance, | <b>Aerosols in the convective boundary layer: Shortwave radiation |
clouds, and ozone</b>. | effects on the coupled land-atmosphere system</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 119(13), | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
JUL 16 2014. | 119(10):5845-5863, MAY 27 2014. |
[ <a href="http://dx.doi.org/10.1002/2014JD021918">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2013JD021237">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000332386100012">21</a>] | [<a name="WOS:000335665600007">726</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Fricke, A. Ehrlich, E. Jakel, B. Boehn, M. Wirth, and M. Wendisch. | J. Koza, R. H. Hammerschlag, J. Rybak, P. Goemoery, A. Kucera, and P. Schwartz. |
<b>Influence of local surface albedo variability and ice crystal | <b>Transmission profile of the Dutch Open Telescope Hα Lyot |
shape on passive remote sensing of thin cirrus</b>. | filter</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(4):1943--1958, | <em>ASTRONOMISCHE NACHRICHTEN</em>, 335(4):409-416, MAY 2014. |
2014. | [ <a href="http://dx.doi.org/10.1002/asna.201312048">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-14-1943-2014">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000343119600024">22</a>] | [<a name="WOS:000334081300006">727</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. D. Garcia, E. Cuevas, O. E. Garcia, V. E. Cachorro, P. Palle, J. J. Bustos, | H. K. Roscoe, N. Brough, A. E. Jones, F. Wittrock, A. Richter, |
P. M. Romero-Campos, and A. M. de Frutos. | M. Van Roozendael, and F. Hendrick. |
<b>Reconstruction of global solar radiation time series from 1933 | <b>Characterisation of vertical BrO distribution during events of |
to 2013 at the Izana Atmospheric Observatory</b>. | enhanced tropospheric BrO in Antarctica, from combined remote and in-situ |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(9):3139--3150, | measurements</b>. |
2014. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
[ <a href="http://dx.doi.org/10.5194/amt-7-3139-2014">DOI</a> ] | 138:70-81, MAY 2014. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.01.026">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000348319500041">23</a>] | [<a name="WOS:000335809100017">728</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Gascon, E. Cadau, O. Colin, B. Hoersch, C. Isola, B. Lopez Fernandeza, and | Roberto Roman, Julia Bilbao, and Argimiro de Miguel. |
P. Martimort. | <b>Uncertainty of different atmospheric ozone retrievals and its |
<b>Copernicus Sentinel-2 Mission: Products, Algorithms and | effect on temporal trends and radiative transfer simulations in the Iberian |
Cal/Val</b>. | Peninsula</b>. |
In Butler, JJ and Xiong, X and Gu, X, editor, <em>EARTH OBSERVING | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 119(8):4690-4708, |
SYSTEMS XIX</em>, volume 9218 of <em>Proceedings of SPIE</em>, 2014. | APR 27 2014. |
Conference on Earth Observing Systems XIX, San Diego, CA, AUG 18-20, | [ <a href="http://dx.doi.org/10.1002/2013JD021260">DOI</a> ] |
2014. | |
[ <a href="http://dx.doi.org/10.1117/12.2062260">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000342254100013">24</a>] | [<a name="WOS:000328200300004">729</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Gasteiger, C. Emde, B. Mayer, R. Buras, S. A. Buehler, and O. Lemke. | G. Thuillier, S. M. L. Melo, J. Lean, N. A. Krivova, C. Bolduc, V. I. Fomichev, |
<b>Representative wavelengths absorption parameterization applied | P. Charbonneau, A. I. Shapiro, W. Schmutz, and D. Bolsee. |
to satellite channels and spectral bands</b>. | <b>Analysis of Different Solar Spectral Irradiance Reconstructions |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | and Their Impact on Solar Heating Rates</b>. |
148:99--115, NOV 2014. | <em>SOLAR PHYSICS</em>, 289(4):1115-1142, APR 2014. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.06.024">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/s11207-013-0381-x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000344732200010">25</a>] | [<a name="WOS:000333885700026">730</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
L. Gomez, M. Navarro-Comas, O. Puentedura, Y. Gonzalez, E. Cuevas, and | D. Mateos, G. Pace, D. Meloni, J. Bilbao, A. di Sarra, A. de Miguel, |
M. Gil-Ojeda. | G. Casasanta, and Q. Min. |
<b>Long-path averaged mixing ratios of O-3 and NO2 in the free | <b>Observed influence of liquid cloud microphysical properties on |
troposphere from mountain MAX-DOAS</b>. | ultraviolet surface radiation</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(10):3373--3386, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 119(5):2429-2440, |
2014. | MAR 16 2014. |
[ <a href="http://dx.doi.org/10.5194/amt-7-3373-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2013JD020309">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000347994900076">26</a>] | [<a name="WOS:000333578800060">731</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
John D. Hedley, Kathryn McMahon, and Peter Fearns. | I. A. K. Young, R. L. Jones, and F. D. Pope. |
<b>Seagrass Canopy Photosynthetic Response Is a Function of Canopy | <b>The UV and visible spectra of chlorine peroxide: Constraining |
Density and Light Environment: A Model for Amphibolis griffithii</b>. | the atmospheric photolysis rate</b>. |
<em>PLOS ONE</em>, 9(10), OCT 27 2014. | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 41(5):1781-1788, MAR 16 2014. |
[ <a href="http://dx.doi.org/10.1371/journal.pone.0111454">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2013GL058626">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000339937200012">27</a>] | [<a name="WOS:000332479400122">732</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Kanitz, A. Ansmann, A. Foth, P. Seifert, U. Wandinger, R. Engelmann, | Raul R. Cordero, Alessandro Damiani, Jorge Ferrer, Jose Jorquera, Mario Tobar, |
H. Baars, D. Althausen, C. Casiccia, and F. Zamorano. | Fernando Labbe, Jorge Carrasco, and David Laroze. |
<b>Surface matters: limitations of CALIPSO V3 aerosol typing in | <b>UV Irradiance and Albedo at Union Glacier Camp (Antarctica): A |
coastal regions</b>. | Case Study</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(7):2061--2072, | <em>PLOS ONE</em>, 9(3), MAR 5 2014. |
2014. | [ <a href="http://dx.doi.org/10.1371/journal.pone.0090705">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/amt-7-2061-2014">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000337999800011">28</a>] | [<a name="WOS:000331743800005">733</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Carolin Klinger and Bernhard Mayer. | Paul Burns and Charles Chemel. |
<b>Three-dimensional Monte Carlo calculation of atmospheric | <b>Evolution of Cold-Air-Pooling Processes in Complex Terrain</b>. |
thermal heating rates</b>. | <em>BOUNDARY-LAYER METEOROLOGY</em>, 150(3):423-447, MAR 2014. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | [ <a href="http://dx.doi.org/10.1007/s10546-013-9885-z">DOI</a> ] |
144:123--136, SEP 2014. | |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.04.009">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000344730900039">29</a>] | [<a name="WOS:000333138300013">734</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. Klingmueller, B. Steil, C. Bruehl, H. Tost, and J. Lelieveld. | M. Anton, D. Mateos, R. Roman, A. Valenzuela, L. Alados-Arboledas, and F. J. |
<b>Sensitivity of aerosol radiative effects to different mixing | Olmo. |
assumptions in the AEROPT 1.0 submodel of the EMAC | <b>A method to determine the ozone radiative forcing in the |
atmospheric-chemistry-climate model</b>. | ultraviolet range from experimental data</b>. |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(5):2503--2516, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 119(4):1860-1873, |
2014. | FEB 27 2014. |
[ <a href="http://dx.doi.org/10.5194/gmd-7-2503-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/2013JD020444">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000332799400002">30</a>] | [<a name="WOS:000332994600028">735</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Korhola, H. Kokkola, H. Korhonen, A. I. Partanen, A. Laaksonen, K. E. J. | F. Werner, F. Ditas, H. Siebert, M. Simmel, B. Wehner, P. Pilewskie, |
Lehtinen, and S. Romakkaniemi. | T. Schmeissner, R. A. Shaw, S. Hartmann, H. Wex, G. C. Roberts, and |
<b>Reallocation in modal aerosol models: impacts on predicting | M. Wendisch. |
aerosol radiative effects</b>. | <b>Twomey effect observed from collocated microphysical and remote |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(1):161--174, 2014. | sensing measurements over shallow cumulus</b>. |
[ <a href="http://dx.doi.org/10.5194/gmd-7-161-2014">DOI</a> ] | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 119(3):1534-1545, |
| FEB 16 2014. |
| [ <a href="http://dx.doi.org/10.1002/2013JD020131">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000337204800002">31</a>] | [<a name="WOS:000329554100012">736</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Philipp M. Kostka, Martin Weissmann, Robert Buras, Bernhard Mayer, and Olaf | Xavier Ceamanos, Dominique Carrer, and Jean-Louis Roujean. |
Stiller. | <b>An efficient approach to estimate the transmittance and |
<b>Observation Operator for Visible and Near-Infrared Satellite | reflectance of a mixture of aerosol components</b>. |
Reflectances</b>. | <em>ATMOSPHERIC RESEARCH</em>, 137:125-135, FEB 2014. |
<em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2013.09.009">DOI</a> ] |
31(6):1216--1233, JUN 2014. | |
[ <a href="http://dx.doi.org/10.1175/JTECH-D-13-00116.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000335665600007">32</a>] | [<a name="WOS:000348253201028">737</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Koza, R. H. Hammerschlag, J. Rybak, P. Goemoery, A. Kucera, and P. Schwartz. | G. Tourasse and D. Dumortier. |
<b>Transmission profile of the Dutch Open Telescope H alpha Lyot | <b>Development of a system measuring the solar radiation spectrum |
filter</b>. | in 5 planes for daylight and PV applications</b>. |
<em>ASTRONOMISCHE NACHRICHTEN</em>, 335(4):409--416, MAY | In A Lentz and D Renne, editors, <em>2013 ISES SOLAR WORLD |
2014. | CONGRESS</em>, volume 57 of <em>Energy Procedia</em>, pages 1110+. ISES, 2014. |
[ <a href="http://dx.doi.org/10.1002/asna.201312048">DOI</a> ] | ISES Solar World Congress (SWC), Cancun, MEXICO, NOV 03-07, 2013. |
| [ <a href="http://dx.doi.org/10.1016/j.egypro.2014.10.071">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000338438300008">33</a>] | [<a name="WOS:000348253201034">738</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kreuter, R. Buras, B. Mayer, A. Webb, R. Kift, A. Bais, N. Kouremeti, and | Yehia Eissa, Philippe Blanc, Armel Oumbe, Hosni Ghedira, and Lucien Wald. |
M. Blumthaler. | <b>Estimation of the circumsolar ratio in a turbid atmosphere</b>. |
<b>Solar irradiance in the heterogeneous albedo environment of the | In A Lentz and D Renne, editors, <em>2013 ISES SOLAR WORLD |
Arctic coast: measurements and a 3-D model study</b>. | CONGRESS</em>, volume 57 of <em>Energy Procedia</em>, pages 1169+. ISES, 2014. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(12):5989--6002, | ISES Solar World Congress (SWC), Cancun, MEXICO, NOV 03-07, 2013. |
2014. | [ <a href="http://dx.doi.org/10.1016/j.egypro.2014.10.104">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-14-5989-2014">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000335373600004">34</a>] | [<a name="WOS:000348253201038">739</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kylling, M. Kahnert, H. Lindqvist, and T. Nousiainen. | J. Bilbao, R. Roman, C. Yousif, A. Perez-Burgos, and A. de Miguel. |
<b>Volcanic ash infrared signature: porous non-spherical ash | <b>Global, diffuse, direct, and ultraviolet solar irradiance |
particle shapes compared to homogeneous spherical ash particles</b>. | recorded in Malta and atmospheric component influences</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(4):919--929, | In A Lentz and D Renne, editors, <em>2013 ISES SOLAR WORLD |
| CONGRESS</em>, volume 57 of <em>Energy Procedia</em>, pages 1206+. ISES, 2014. |
| ISES Solar World Congress (SWC), Cancun, MEXICO, NOV 03-07, 2013. |
| [ <a href="http://dx.doi.org/10.1016/j.egypro.2014.10.108">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000349825200001">740</a>] |
| </td> |
| <td> |
| Henri Diemoz, Monica Campanelli, and Victor Estelles. |
| <b>One Year of Measurements with a POM-02 Sky Radiometer at an |
| Alpine EuroSkyRad Station</b>. |
| <em>JOURNAL OF THE METEOROLOGICAL SOCIETY OF JAPAN</em>, 92A(SI):1-16, |
2014. | 2014. |
[ <a href="http://dx.doi.org/10.5194/amt-7-919-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.2151/jmsj.2014-A01">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000348284900167">35</a>] | [<a name="WOS:000348284900167">741</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Q. Liu, L. Guan, B. Li, J. Wang, and J. K. Chu. | Q. Liu, L. Guan, B. Li, J. Wang, and J. K. Chu. |
<b>The Impact of Typical Aerosol Types on Polarization Sensitive | <b>The Impact of Typical Aerosol Types on Polarization Sensitive |
Spectral for Bionic Micro-nano Polarization Sensor</b>. | Spectral for Bionic Micro-nano Polarization Sensor</b>. |
In Tang, F, editor, <em>MICRO-NANO TECHNOLOGY XV</em>, volume | In F Tang, editor, <em>MICRO-NANO TECHNOLOGY XV</em>, volume 609-610 of |
609-610 of <em>Key Engineering Materials</em>, pages 988--992, 2014. | <em>Key Engineering Materials</em>, pages 988+. Chinese Soc Micro Nano Technol, |
| 2014. |
15th Annual Conference of the | 15th Annual Conference of the |
Chinese-Society-of-Micro-Nano-Technology (CSMNT) / 4th International | Chinese-Society-of-Micro-Nano-Technology (CSMNT) / 4th International |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000347957100005">36</a>] | [<a name="WOS:000348319500041">742</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Mateos, M. Anton, C. Toledano, V. E. Cachorro, L. Alados-Arboledas, | F. Gascon, E. Cadau, O. Colin, B. Hoersch, C. Isola, B. Lopez Fernandeza, and |
M. Sorribas, M. J. Costa, and J. M. Baldasano. | P. Martimort. |
<b>Aerosol radiative effects in the ultraviolet, visible, and | <b>Copernicus Sentinel-2 Mission: Products, Algorithms and |
near-infrared spectral ranges using long-term aerosol data series over the | Cal/Val</b>. |
Iberian Peninsula</b>. | In JJ Butler, X Xiong, and X Gu, editors, <em>EARTH OBSERVING |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(24):13497--13514, | SYSTEMS XIX</em>, volume 9218 of <em>Proceedings of SPIE</em>. SPIE, 2014. |
| Conference on Earth Observing Systems XIX, San Diego, CA, AUG 18-20, |
2014. | 2014. |
[ <a href="http://dx.doi.org/10.5194/acp-14-13497-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.1117/12.2062260">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000329952500117">37</a>] | [<a name="WOS:000346841000001">743</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Mateos, M. Anton, A. Valenzuela, A. Cazorla, F. J. Olmo, and | Kajsa Parding, Jan A. Olseth, Knut F. Dagestad, and Beate G. Liepert. |
L. Alados-Arboledas. | <b>Decadal variability of clouds, solar radiation and temperature |
<b>Efficiency of clouds on shortwave radiation using experimental | at a high-latitude coastal site in Norway</b>. |
data</b>. | <em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 66, 2014. |
<em>APPLIED ENERGY</em>, 113(SI):1216--1219, JAN 2014. | [ <a href="http://dx.doi.org/10.3402/tellusb.v66.25897">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.apenergy.2013.08.060">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000333885700026">38</a>] | [<a name="WOS:000344732200010">744</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Mateos, G. Pace, D. Meloni, J. Bilbao, A. di Sarra, A. de Miguel, | L. Gomez, M. Navarro-Comas, O. Puentedura, Y. Gonzalez, E. Cuevas, and |
G. Casasanta, and Q. Min. | M. Gil-Ojeda. |
<b>Observed influence of liquid cloud microphysical properties on | <b>Long-path averaged mixing ratios of O<sub>3</sub> and |
ultraviolet surface radiation</b>. | NO<sub>2</sub> in the free troposphere from mountain MAX-DOAS</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(10):3373-3386, 2014. |
119(5):2429--2440, MAR 16 2014. | [ <a href="http://dx.doi.org/10.5194/amt-7-3373-2014">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1002/2013JD020309">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000342914200018">39</a>] | [<a name="WOS:000341992000024">745</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Mateos, A. Sanchez-Lorenzo, M. Anton, V. E. Cachorro, J. Calbo, M. J. Costa, | M. Sicard, S. Bertolin, M. Mallet, P. Dubuisson, and A. Comeron. |
B. Torres, and M. Wild. | <b>Estimation of mineral dust long-wave radiative forcing: |
<b>Quantifying the respective roles of aerosols and clouds in the | sensitivity study to particle properties and application to real cases in the |
strong brightening since the early 2000s over the Iberian Peninsula</b>. | region of Barcelona</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 119(17), | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(17):9213-9231, 2014. |
SEP 16 2014. | [ <a href="http://dx.doi.org/10.5194/acp-14-9213-2014">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1002/2014JD022076">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000346800300014">40</a>] | [<a name="WOS:000341603900010">746</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Richard Mueller and Christine Traeger-Chatterjee. | K. P. Nielsen, E. Gleeson, and L. Rontu. |
<b>Brief Accuracy Assessment of Aerosol Climatologies for the | <b>Radiation sensitivity tests of the HARMONIE 37h1 NWP model</b>. |
Retrieval of Solar Surface Radiation</b>. | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(4):1433-1449, 2014. |
<em>ATMOSPHERE</em>, 5(4):959--972, DEC 2014. | [ <a href="http://dx.doi.org/10.5194/gmd-7-1433-2014">DOI</a> ] |
[ <a href="http://dx.doi.org/10.3390/atmos5040959">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000341603900010">41</a>] | [<a name="WOS:000341603900025">747</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. P. Nielsen, E. Gleeson, and L. Rontu. | A. Oumbe, Z. Qu, P. Blanc, M. Lefevre, L. Wald, and S. Cros. |
<b>Radiation sensitivity tests of the HARMONIE 37h1 NWP model</b>. | <b>Decoupling the effects of clear atmosphere and clouds to |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(4):1433--1449, | simplify calculations of the broadband solar irradiance at ground level</b>. |
2014. | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(4):1661-1669, 2014. |
[ <a href="http://dx.doi.org/10.5194/gmd-7-1433-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/gmd-7-1661-2014">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000335706800052">42</a>] | [<a name="WOS:000341103600036">748</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Nikitidou, A. Kazantzidis, and V. Salamalikis. | X. Ceamanos, D. Carrer, and J. L. Roujean. |
<b>The aerosol effect on direct normal irradiance in Europe under | <b>Improved retrieval of direct and diffuse downwelling surface |
clear skies</b>. | shortwave flux in cloudless atmosphere using dynamic estimates of aerosol |
<em>RENEWABLE ENERGY</em>, 68:475--484, AUG 2014. | content and type: application to the LSA-SAF project</b>. |
[ <a href="http://dx.doi.org/10.1016/j.renene.2014.02.034">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(15):8209-8232, 2014. |
| [ <a href="http://dx.doi.org/10.5194/acp-14-8209-2014">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000348600900007">43</a>] | [<a name="WOS:000339937200006">749</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
William Wandji Nyamsi, Bella Espinar, Philippe Blanc, and Lucien Wald. | M. Wiegner, F. Madonna, I. Binietoglou, R. Forkel, J. Gasteiger, A. Geiss, |
<b>How close to detailed spectral calculations is the | G. Pappalardo, K. Schaefer, and W. Thomas. |
k-distribution method and correlated-k approximation of KATO et al. (1999) in | <b>What is the benefit of ceilometers for aerosol remote sensing? |
each spectral interval?</b> | An answer from EARLINET</b>. |
<em>METEOROLOGISCHE ZEITSCHRIFT</em>, 23(5):547--556, DEC | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(7):1979-1997, 2014. |
2014. | [ <a href="http://dx.doi.org/10.5194/amt-7-1979-2014">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1127/metz/2014/0607">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000341603900025">44</a>] | [<a name="WOS:000335373600004">750</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Oumbe, Z. Qu, P. Blanc, M. Lefevre, L. Wald, and S. Cros. | A. Kylling, M. Kahnert, H. Lindqvist, and T. Nousiainen. |
<b>Decoupling the effects of clear atmosphere and clouds to | <b>Volcanic ash infrared signature: porous non-spherical ash |
simplify calculations of the broadband solar irradiance at ground level</b>. | particle shapes compared to homogeneous spherical ash particles</b>. |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(4):1661--1669, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(4):919-929, 2014. |
2014. | [ <a href="http://dx.doi.org/10.5194/amt-7-919-2014">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/gmd-7-1661-2014">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000346841000001">45</a>] | [<a name="WOS:000334104700014">751</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Kajsa Parding, Jan A. Olseth, Knut F. Dagestad, and Beate G. Liepert. | C. S. Zerefos, P. Tetsis, A. Kazantzidis, V. Amiridis, S. C. Zerefos, |
<b>Decadal variability of clouds, solar radiation and temperature | J. Luterbacher, K. Eleftheratos, E. Gerasopoulos, S. Kazadzis, and |
at a high-latitude coastal site in Norway</b>. | A. Papayannis. |
<em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 66, | <b>Further evidence of important environmental information content |
2014. | in red-to-green ratios as depicted in paintings by great masters</b>. |
[ <a href="http://dx.doi.org/10.3402/tellusb.v66.25897">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(6):2987-3015, 2014. |
| [ <a href="http://dx.doi.org/10.5194/acp-14-2987-2014">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000332384900029">46</a>] | [<a name="WOS:000334105700010">752</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| B. Reinhardt, R. Buras, L. Bugliaro, S. Wilbert, and B. Mayer. |
| <b>Determination of circumsolar radiation from Meteosat Second |
| Generation</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(3):823-838, 2014. |
| [ <a href="http://dx.doi.org/10.5194/amt-7-823-2014">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000332386100012">753</a>] |
| </td> |
| <td> |
| C. Fricke, A. Ehrlich, E. Jakel, B. Boehn, M. Wirth, and M. Wendisch. |
| <b>Influence of local surface albedo variability and ice crystal |
| shape on passive remote sensing of thin cirrus</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(4):1943-1958, 2014. |
| [ <a href="http://dx.doi.org/10.5194/acp-14-1943-2014">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000332384900029">754</a>] |
| </td> |
| <td> |
A. Redondas, R. Evans, R. Stuebi, U. Koehler, and M. Weber. | A. Redondas, R. Evans, R. Stuebi, U. Koehler, and M. Weber. |
<b>Evaluation of the use of five laboratory-determined ozone | <b>Evaluation of the use of five laboratory-determined ozone |
absorption cross sections in Brewer and Dobson retrieval algorithms</b>. | absorption cross sections in Brewer and Dobson retrieval algorithms</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(3):1635--1648, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(3):1635-1648, 2014. |
2014. | |
[ <a href="http://dx.doi.org/10.5194/acp-14-1635-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-14-1635-2014">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000334105700010">47</a>] | [<a name="WOS:000332799400002">755</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
B. Reinhardt, R. Buras, L. Bugliaro, S. Wilbert, and B. Mayer. | T. Korhola, H. Kokkola, H. Korhonen, A. I. Partanen, A. Laaksonen, K. E. J. |
<b>Determination of circumsolar radiation from Meteosat Second | Lehtinen, and S. Romakkaniemi. |
Generation</b>. | <b>Reallocation in modal aerosol models: impacts on predicting |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(3):823--838, | aerosol radiative effects</b>. |
2014. | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(1):161-174, 2014. |
[ <a href="http://dx.doi.org/10.5194/amt-7-823-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/gmd-7-161-2014">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000345804400006">48</a>] | [<a name="WOS:000329952500117">756</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Roberto Roman, Julia Bilbao, and Argimiro de Miguel. | D. Mateos, M. Anton, A. Valenzuela, A. Cazorla, F. J. Olmo, and |
<b>Reconstruction of six decades of daily total solar shortwave | L. Alados-Arboledas. |
irradiation in the Iberian Peninsula using sunshine duration records</b>. | <b>Efficiency of clouds on shortwave radiation using experimental |
<em>ATMOSPHERIC ENVIRONMENT</em>, 99:41--50, DEC 2014. | data</b>. |
[ <a href="http://dx.doi.org/10.1016/j.atmosenv.2014.09.052">DOI</a> ] | <em>APPLIED ENERGY</em>, 113(SI):1216-1219, JAN 2014. |
| [ <a href="http://dx.doi.org/10.1016/j.apenergy.2013.08.060">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000338821700010">49</a>] | [<a name="WOS:000328868800050">757</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Roberto Roman, Julia Bilbao, and Argimiro de Miguel. | Vladimir V. Rozanov and Marco Vountas. |
<b>Solar radiation simulations in the Iberian Peninsula: Accuracy | <b>Radiative transfer equation accounting for rotational Raman |
and sensitivity to uncertainties in inputs of a radiative transfer model</b>. | scattering and its solution by the discrete-ordinates method</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
145:95--109, SEP 2014. | 133:603-618, JAN 2014. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.04.028">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2013.09.024">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000335874500058">50</a>] | [<a name="WOS:000344082100001">758</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Roberto Roman, Julia Bilbao, and Argimiro de Miguel. | Hui Xu, Tianhai Cheng, Donghai Xie, Jiaguo Li, Yu Wu, and Hao Chen. |
<b>Uncertainty and variability in satellite-based water vapor | <b>Dust Identification over Arid and Semiarid Regions of Asia Using |
column, aerosol optical depth and Angstrom exponent, and its effect on | AIRS Thermal Infrared Channels</b>. |
radiative transfer simulations in the Iberian Peninsula</b>. | <em>ADVANCES IN METEOROLOGY</em>, 2014, 2014. |
<em>ATMOSPHERIC ENVIRONMENT</em>, 89:556--569, JUN 2014. | [ <a href="http://dx.doi.org/10.1155/2014/847432">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.atmosenv.2014.02.027">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000335809100017">51</a>] | [<a name="WOS:000338438300008">759</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Roberto Roman, Julia Bilbao, and Argimiro de Miguel. | A. Kreuter, R. Buras, B. Mayer, A. Webb, R. Kift, A. Bais, N. Kouremeti, and |
<b>Uncertainty of different atmospheric ozone retrievals and its | M. Blumthaler. |
effect on temporal trends and radiative transfer simulations in the Iberian | <b>Solar irradiance in the heterogeneous albedo environment of the |
Peninsula</b>. | Arctic coast: measurements and a 3-D model study</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(12):5989-6002, 2014. |
119(8):4690--4708, APR 27 2014. | [ <a href="http://dx.doi.org/10.5194/acp-14-5989-2014">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1002/2013JD021260">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000334081300006">52</a>] | [<a name="WOS:000341993100012">760</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
H. K. Roscoe, N. Brough, A. E. Jones, F. Wittrock, A. Richter, | L. Ferrero, M. Castelli, B. S. Ferrini, M. Moscatelli, M. G. Perrone, |
M. Van Roozendael, and F. Hendrick. | G. Sangiorgi, L. D'Angelo, G. Rovelli, B. Moroni, F. Scardazza, G. Mocnik, |
<b>Characterisation of vertical BrO distribution during events of | E. Bolzacchini, M. Petitta, and D. Cappelletti. |
enhanced tropospheric BrO in Antarctica, from combined remote and in-situ | <b>Impact of black carbon aerosol over Italian basin valleys: |
measurements</b>. | high-resolution measurements along vertical profiles, radiative forcing and |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | heating rate</b>. |
138:70--81, MAY 2014. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(18):9640-9663, 2014. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.01.026">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-14-9641-2014">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000342883400013">53</a>] | [<a name="WOS:000347957100005">761</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Vanda Salgueiro, Maria Joao Costa, Ana Maria Silva, and Daniele Bortoli. | D. Mateos, M. Anton, C. Toledano, V. E. Cachorro, L. Alados-Arboledas, |
<b>Variability of the Daily-Mean Shortwave Cloud Radiative Forcing | M. Sorribas, M. J. Costa, and J. M. Baldasano. |
at the Surface at a Midlatitude Site in Southwestern Europe</b>. | <b>Aerosol radiative effects in the ultraviolet, visible, and |
<em>JOURNAL OF CLIMATE</em>, 27(20):7769--7780, OCT 15 2014. | near-infrared spectral ranges using long-term aerosol data series over the |
[ <a href="http://dx.doi.org/10.1175/JCLI-D-13-00696.1">DOI</a> ] | Iberian Peninsula</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(24):13497-13514, 2014. |
| [ <a href="http://dx.doi.org/10.5194/acp-14-13497-2014">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000336113200001">54</a>] | [<a name="WOS:000339937200012">762</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Sellitto and F. Del Frate. | T. Kanitz, A. Ansmann, A. Foth, P. Seifert, U. Wandinger, R. Engelmann, |
<b>The feasibility of retrieving vertical temperature profiles | H. Baars, D. Althausen, C. Casiccia, and F. Zamorano. |
from satellite nadir UV observations: A sensitivity analysis and an inversion | <b>Surface matters: limitations of CALIPSO V3 aerosol typing in |
experiment with neural network algorithms</b>. | coastal regions</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(7):2061-2072, 2014. |
141:1--8, JUL 2014. | [ <a href="http://dx.doi.org/10.5194/amt-7-2061-2014">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2014.02.023">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000345996500009">55</a>] | [<a name="WOS:000343119600024">763</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Serrano, M. Nunez, M. P. Utrillas, M. J. Marin, C. Marcos, and J. A. | R. D. Garcia, E. Cuevas, O. E. Garcia, V. E. Cachorro, P. Palle, J. J. Bustos, |
Martinez-Lozano. | P. M. Romero-Campos, and A. M. de Frutos. |
<b>Effective cloud optical depth for overcast conditions | <b>Reconstruction of global solar radiation time series from 1933 |
determined with a UV radiometers</b>. | to 2013 at the Izana Atmospheric Observatory</b>. |
<em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(9):3139-3150, 2014. |
34(15):3939--3952, DEC 2014. | [ <a href="http://dx.doi.org/10.5194/amt-7-3139-2014">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1002/joc.3953">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000346142200019">56</a>] | [<a name="WOS:000458069400019">764</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Nathalie A. Cabrol, Uwe Feister, Donat-Peter Haeder, Helmut Piazena, Edmond A. |
| Grin, and Andreas Klein. |
| <b>Record solar UV irradiance in the tropical Andes</b>. |
| <em>FRONTIERS IN ENVIRONMENTAL SCIENCE</em>, 2, 2014. |
| [ <a href="http://dx.doi.org/10.3389/fenvs.2014.00019">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000341600100024">765</a>] |
| </td> |
| <td> |
| J. A. Ruiz-Arias, J. Dudhia, and C. A. Gueymard. |
| <b>A simple parameterization of the short-wave aerosol optical |
| properties for surface direct and diffuse irradiances assessment in a |
| numerical weather model</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(3):1159-1174, 2014. |
| [ <a href="http://dx.doi.org/10.5194/gmd-7-1159-2014">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000344730900039">766</a>] |
| </td> |
| <td> |
| K. Klingmueller, B. Steil, C. Bruehl, H. Tost, and J. Lelieveld. |
| <b>Sensitivity of aerosol radiative effects to different mixing |
| assumptions in the AEROPT 1.0 submodel of the EMAC |
| atmospheric-chemistry-climate model</b>. |
| <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(5):2503-2516, 2014. |
| [ <a href="http://dx.doi.org/10.5194/gmd-7-2503-2014">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000346142200019">767</a>] |
| </td> |
| <td> |
T. Sukhodolov, E. Rozanov, A. I. Shapiro, J. Anet, C. Cagnazzo, T. Peter, and | T. Sukhodolov, E. Rozanov, A. I. Shapiro, J. Anet, C. Cagnazzo, T. Peter, and |
W. Schmutz. | W. Schmutz. |
<b>Evaluation of the ECHAM family radiation codes performance in | <b>Evaluation of the ECHAM family radiation codes performance in |
the representation of the solar signal</b>. | the representation of the solar signal</b>. |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(6):2859--2866, | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 7(6):2859-2866, 2014. |
2014. | |
[ <a href="http://dx.doi.org/10.5194/gmd-7-2859-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/gmd-7-2859-2014">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000328200300004">57</a>] | [<a name="WOS:000354527800210">768</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Thuillier, S. M. L. Melo, J. Lean, N. A. Krivova, C. Bolduc, V. I. Fomichev, | Ting Li, D. L. DePoy, J. L. Marshall, D. Q. Nagasawa, D. W. Carona, and |
P. Charbonneau, A. I. Shapiro, W. Schmutz, and D. Bolsee. | S. Boada. |
<b>Analysis of Different Solar Spectral Irradiance Reconstructions | <b>Monitoring the atmospheric throughput at Cerro Tololo |
and Their Impact on Solar Heating Rates</b>. | Inter-American Observatory with a TmCam</b>. |
<em>SOLAR PHYSICS</em>, 289(4):1115--1142, APR 2014. | In SK Ramsay, IS McLean, and H Takami, editors, <em>GROUND-BASED AND |
[ <a href="http://dx.doi.org/10.1007/s11207-013-0381-x">DOI</a> ] | AIRBORNE INSTRUMENTATION FOR ASTRONOMY V</em>, volume 9147 of <em>Proceedings of |
| SPIE</em>. SPIE, 2014. |
| 5th Conference on Ground-Based and Airborne Instrumentation for |
| Astronomy, Montreal, CANADA, JUN 22-26, 2014. |
| [ <a href="http://dx.doi.org/10.1117/12.2055167">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000332994600028">58</a>] | [<a name="WOS:000328868800002">769</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Werner, F. Ditas, H. Siebert, M. Simmel, B. Wehner, P. Pilewskie, | V. V. Rozanov, A. V. Rozanov, A. A. Kokhanovsky, and J. P. Burrows. |
T. Schmeissner, R. A. Shaw, S. Hartmann, H. Wex, G. C. Roberts, and | <b>Radiative transfer through terrestrial atmosphere and ocean: |
M. Wendisch. | Software package SCIATRAN</b>. |
<b>Twomey effect observed from collocated microphysical and remote | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
sensing measurements over shallow cumulus</b>. | 133:13-71, JAN 2014. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2013.07.004">DOI</a> ] |
119(3):1534--1545, FEB 16 2014. | |
[ <a href="http://dx.doi.org/10.1002/2013JD020131">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000339937200006">59</a>] | [<a name="WOS:000328694900007">770</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Wiegner, F. Madonna, I. Binietoglou, R. Forkel, J. Gasteiger, A. Geiss, | Raul R. Cordero, Gunther Seckmeyer, Alessandro Damiani, Stefan Riechelmann, |
G. Pappalardo, K. Schaefer, and W. Thomas. | Juan Rayas, Fernando Labbe, and David Laroze. |
<b>What is the benefit of ceilometers for aerosol remote sensing? | <b>The world's highest levels of surface UV</b>. |
An answer from EARLINET</b>. | <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 13(1):70-81, 2014. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 7(7):1979--1997, | [ <a href="http://dx.doi.org/10.1039/c3pp50221j">DOI</a> ] |
2014. | |
[ <a href="http://dx.doi.org/10.5194/amt-7-1979-2014">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000344082100001">60</a>] | [<a name="WOS:000340440700005">771</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Hui Xu, Tianhai Cheng, Donghai Xie, Jiaguo Li, Yu Wu, and Hao Chen. | Axel Buettner and Hans-Peter Roeser. |
<b>Dust Identification over Arid and Semiarid Regions of Asia | <b>Hyperspectral Remote Sensing with the UAS “Stuttgarter |
Using AIRS Thermal Infrared Channels</b>. | Adler” - System Setup, Calibration and First Results</b>. |
<em>ADVANCES IN METEOROLOGY</em>, 2014. | <em>PHOTOGRAMMETRIE FERNERKUNDUNG GEOINFORMATION</em>, (4):265-274, |
[ <a href="http://dx.doi.org/10.1155/2014/847432">DOI</a> ] | 2014. |
| [ <a href="http://dx.doi.org/10.1127/1432-8364/2014/0217">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000333578800060">61</a>] | [<a name="WOS:000512544400049">772</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. A. K. Young, R. L. Jones, and F. D. Pope. | Pierre Ineichen. |
<b>The UV and visible spectra of chlorine peroxide: Constraining | <b>Long term satellite global, beam and diffuse irradiance |
the atmospheric photolysis rate</b>. | validation</b>. |
<em>GEOPHYSICAL RESEARCH LETTERS</em>, 41(5):1781--1788, MAR | In A Haberle, editor, <em>PROCEEDINGS OF THE 2ND INTERNATIONAL |
16 2014. | CONFERENCE ON SOLAR HEATING AND COOLING FOR BUILDINGS AND INDUSTRY (SHC |
[ <a href="http://dx.doi.org/10.1002/2013GL058626">DOI</a> ] | 2013)</em>, volume 48 of <em>Energy Procedia</em>, pages 1586-1596, 2014. |
| 2nd International Conference on Solar Heating and Cooling for |
| Buildings and Industry (SHC), Freiburg, GERMANY, SEP 23-25, 2013. |
| [ <a href="http://dx.doi.org/10.1016/j.egypro.2014.02.179">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000334104700014">62</a>] | [<a name="WOS:000345410700130">773</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. S. Zerefos, P. Tetsis, A. Kazantzidis, V. Amiridis, S. C. Zerefos, | Jouri Kanters, Maria Wall, and Elisabeth Kjellsson. |
J. Luterbacher, K. Eleftheratos, E. Gerasopoulos, S. Kazadzis, and | <b>The solar map as a knowledge base for solar energy use</b>. |
A. Papayannis. | In A Haberle, editor, <em>PROCEEDINGS OF THE 2ND INTERNATIONAL |
<b>Further evidence of important environmental information content | CONFERENCE ON SOLAR HEATING AND COOLING FOR BUILDINGS AND INDUSTRY (SHC |
in red-to-green ratios as depicted in paintings by great masters</b>. | 2013)</em>, volume 48 of <em>Energy Procedia</em>, pages 1597-1606, 2014. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 14(6):2987--3015, | 2nd International Conference on Solar Heating and Cooling for |
2014. | Buildings and Industry (SHC), Freiburg, GERMANY, SEP 23-25, 2013. |
[ <a href="http://dx.doi.org/10.5194/acp-14-2987-2014">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.egypro.2014.02.180">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2013</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000329377600056">1</a>] | [<a name="WOS:000354526800088">774</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Manuel Anton and David Mateos. | Riccardo U. Claudi, Marco Sergio Erculiani, Giuseppina Micela, Maurizio |
<b>Shortwave radiative forcing due to long-term changes of total | D'Alessandro, Giuseppe Galletta, Enrico Giro, Alberto Adriani, Francesca |
ozone column over the Iberian Peninsula</b>. | Altieri, Giancarlo Bellucci, Daniela Billi, Cesare Cecchi-Pestellini, Angela |
<em>ATMOSPHERIC ENVIRONMENT</em>, 81:532--537, DEC 2013. | Ciaravella, Gianrico Filacchione, Gabriella Gilli, Marco Giuranna, Davide |
[ <a href="http://dx.doi.org/10.1016/j.atmosenv.2013.09.047">DOI</a> ] | Grassi, Giuseppe Leto, Emanuele Pace, Maria Elisabetta Palumbo, Giuseppe |
| Piccioni, Salvatore Scuderi, Giovanni Strazzulla, and Diego Turrini. |
| <b>Preparing EChO space mission: laboratory simulation of planetary |
| atmospheres</b>. |
| In JM Oschmann, M Clampin, GG Fazio, and HA MacEwen, editors, <em> |
| SPACE TELESCOPES AND INSTRUMENTATION 2014: OPTICAL, INFRARED, AND MILLIMETER |
| WAVE</em>, volume 9143 of <em>Proceedings of SPIE</em>. American Astron Soc; |
| Australian Astron Observatory; Assoc Univ Res Astron; Canadian Astron Soc; |
| Canadian Space Agcy; European Astron Society; European So Observatory; Natl |
| Radio Astron Observatory; Royal Astron Soc; Sci & Technol Facilities |
| Council, 2014. |
| Conference on Space Telescopes and Instrumentation - Optical, |
| Infrared, and Millimeter Wave, Montreal, CANADA, JUN 22-27, 2014. |
| [ <a href="http://dx.doi.org/10.1117/12.2055115">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317537100021">2</a>] | [<a name="WOS:000329947200002">775</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Antonanzas-Torres, F. Canizares, and O. Perpinan. | Tanja Behrendt, Jan Kuehnert, Annette Hammer, Elke Lorenz, Jethro Betcke, and |
<b>Comparative assessment of global irradiation from a satellite | Detlev Heinemann. |
estimate model (CM SAP) and on-ground measurements (SIAR): A Spanish case | <b>Solar spectral irradiance derived from satellite data: A tool to |
study</b>. | improve thin film PV performance estimations?</b> |
<em>RENEWABLE & SUSTAINABLE ENERGY REVIEWS</em>, 21:248--261, | <em>SOLAR ENERGY</em>, 98(B, SI):100-110, DEC 2013. |
MAY 2013. | [ <a href="http://dx.doi.org/10.1016/j.solener.2013.05.011">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.rser.2012.12.033">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000323103900039">3</a>] | [<a name="WOS:000329417700013">776</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Arola, T. F. Eck, J. Huttunen, K. E. J. Lehtinen, A. V. Lindfors, G. Myhre, | Eloi Grau and Jean-Philippe Gastellu-Etchegorry. |
A. Smirnov, S. N. Tripathi, and H. Yu. | <b>Radiative transfer modeling in the Earth-Atmosphere system with |
<b>Influence of observed diurnal cycles of aerosol optical depth | DART model</b>. |
on aerosol direct radiative effect</b>. | <em>REMOTE SENSING OF ENVIRONMENT</em>, 139:149-170, DEC 2013. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(15):7895--7901, | [ <a href="http://dx.doi.org/10.1016/j.rse.2013.07.019">DOI</a> ] |
2013. | |
[ <a href="http://dx.doi.org/10.5194/acp-13-7895-2013">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000314486600010">4</a>] | [<a name="WOS:000328547200007">777</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Viorel Badescu and Alexandru Dumitrescu. | Raul R. Cordero, Alessandro Damiani, Gunther Seckmeyer, Stefan Riechelmann, |
<b>The CMSAF hourly solar irradiance database (product CM54): | Fernando Labbe, David Laroze, and Fernanda Garate. |
Accuracy and bias corrections with illustrations for Romania (south-eastern | <b>Satellite-derived UV climatology at Escudero Station, Antarctic |
Europe)</b>. | Peninsula</b>. |
<em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, | <em>ANTARCTIC SCIENCE</em>, 25(6):791-803, DEC 2013. |
93:100--109, FEB 2013. | [ <a href="http://dx.doi.org/10.1017/S0954102013000175">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.jastp.2012.12.001">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000325985900008">5</a>] | [<a name="WOS:000328754500091">778</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. F. Bais, Th. Drosoglou, C. Meleti, K. Tourpali, and N. Kouremeti. | A. Jones, S. Noll, W. Kausch, C. Szyszka, and S. Kimeswenger. |
<b>Changes in surface shortwave solar irradiance from 1993 to 2011 | <b>An advanced scattered moonlight model for Cerro Paranal</b>. |
at Thessaloniki (Greece)</b>. | <em>ASTRONOMY & ASTROPHYSICS</em>, 560, DEC 2013. |
<em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, | [ <a href="http://dx.doi.org/10.1051/0004-6361/201322433">DOI</a> ] |
33(13):2871--2876, NOV 15 2013. | |
[ <a href="http://dx.doi.org/10.1002/joc.3636">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000329947200002">6</a>] | [<a name="WOS:000329377600056">779</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Tanja Behrendt, Jan Kuehnert, Annette Hammer, Elke Lorenz, Jethro Betcke, and | Manuel Anton and David Mateos. |
Detlev Heinemann. | <b>Shortwave radiative forcing due to long-term changes of total |
<b>Solar spectral irradiance derived from satellite data: A tool | ozone column over the Iberian Peninsula</b>. |
to improve thin film PV performance estimations?</b> | <em>ATMOSPHERIC ENVIRONMENT</em>, 81:532-537, DEC 2013. |
<em>SOLAR ENERGY</em>, 98(B, SI):100--110, DEC 2013. | [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2013.09.047">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.solener.2013.05.011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000321767200031">7</a>] | [<a name="WOS:000329378000024">780</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Berg, K. A. Pfaffhuber, A. S. Cole, O. Engelsen, and A. Steffen. | D. Mateos, M. Anton, A. Sanchez-Lorenzo, J. Calbo, and M. Wild. |
<b>Ten-year trends in atmospheric mercury concentrations, | <b>Long-term changes in the radiative effects of aerosols and |
meteorological effects and climate variables at Zeppelin, Ny-Alesund</b>. | clouds in a mid-latitude region (1985-2010)</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(13):6575--6586, | <em>GLOBAL AND PLANETARY CHANGE</em>, 111:288-295, DEC 2013. |
2013. | [ <a href="http://dx.doi.org/10.1016/j.gloplacha.2013.10.004">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-13-6575-2013">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000327101900002">8</a>] | [<a name="WOS:000330266000022">781</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Bernhard, A. Dahlback, V. Fioletov, A. Heikkila, B. Johnsen, T. Koskela, | T. Kanitz, A. Ansmann, P. Seifert, R. Engelmann, J. Kalisch, and D. Althausen. |
K. Lakkala, and T. Svendby. | <b>Radiative effect of aerosols above the northern and southern |
<b>High levels of ultraviolet radiation observed by ground-based | Atlantic Ocean as determined from shipborne lidar observations</b>. |
instruments below the 2011 Arctic ozone hole</b>. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(21):10573--10590, | 118(22):12556-12565, NOV 27 2013. |
2013. | [ <a href="http://dx.doi.org/10.1002/2013JD019750">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-13-10573-2013">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000321679200006">9</a>] | [<a name="WOS:000325985900008">782</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Bierwirth, A. Ehrlich, M. Wendisch, J. F. Gayet, C. Gourbeyre, R. Dupuy, | A. F. Bais, Th. Drosoglou, C. Meleti, K. Tourpali, and N. Kouremeti. |
A. Herber, R. Neuber, and A. Lampert. | <b>Changes in surface shortwave solar irradiance from 1993 to 2011 |
<b>Optical thickness and effective radius of Arctic boundary-layer | at Thessaloniki (Greece)</b>. |
clouds retrieved from airborne nadir and imaging spectrometry</b>. | <em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, 33(13):2871-2876, NOV 15 |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(5):1189--1200, | |
2013. | 2013. |
[ <a href="http://dx.doi.org/10.5194/amt-6-1189-2013">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/joc.3636">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000319642100004">10</a>] | [<a name="WOS:000325985900009">783</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
James E. Bramante and Durairaju Kumaran Raju. | E. Nikitidou and A. Kazantzidis. |
<b>Predicting the distribution of informal camps established by | <b>On the differences of ultraviolet and visible irradiance |
the displaced after a catastrophic disaster, Port-au-Prince, Haiti</b>. | calculations in the Mediterranean basin due to model- and satellite-derived |
<em>APPLIED GEOGRAPHY</em>, 40:30--39, JUN 2013. | climatologies of aerosol optical properties</b>. |
[ <a href="http://dx.doi.org/10.1016/j.apgeog.2013.02.001">DOI</a> ] | <em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, 33(13):2877-2888, NOV 15 |
| 2013. |
| [ <a href="http://dx.doi.org/10.1002/joc.3638">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000311557300013">11</a>] | [<a name="WOS:000326851400001">784</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
James F. Bramante, Durairaju Kumaran Raju, and Tsai Min Sin. | A. Zagouras, A. Kazantzidis, E. Nikitidou, and A. A. Argiriou. |
<b>Multispectral derivation of bathymetry in Singapore's shallow, | <b>Determination of measuring sites for solar irradiance, based on |
turbid waters</b>. | cluster analysis of satellite-derived cloud estimations</b>. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | <em>SOLAR ENERGY</em>, 97:1-11, NOV 2013. |
34(6):2070--2088, 2013. | [ <a href="http://dx.doi.org/10.1016/j.solener.2013.08.005">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1080/01431161.2012.734934">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100063">12</a>] | [<a name="WOS:000326507100031">785</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Brueckner, A. Macke, M. Wendisch, T. Kanitz, and B. Pospichal. | Uwe Feister, Gabriele Meyer, and Ulrich Kirst. |
<b>Cloud Retrieval Using Ship-based Spectral Transmissivity | <b>Solar UV Exposure of Seafarers along Subtropical and Tropical |
Measurements</b>. | Shipping Routes</b>. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 89(6):1497-1506, NOV 2013. |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | [ <a href="http://dx.doi.org/10.1111/php.12144">DOI</a> ] |
Proceedings</em>, pages 264--267, 2013. | |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804757">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000321609300012">13</a>] | [<a name="WOS:000321609300012">786</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Julia A. Busch, John D. Hedley, and Oliver Zielinski. | Julia A. Busch, John D. Hedley, and Oliver Zielinski. |
<b>Correction of hyperspectral reflectance measurements for | <b>Correction of hyperspectral reflectance measurements for surface |
surface objects and direct sun reflection on surface waters</b>. | objects and direct sun reflection on surface waters</b>. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 34(19):6651-6667, OCT |
34(19):6651--6667, OCT 10 2013. | 10 2013. |
[ <a href="http://dx.doi.org/10.1080/01431161.2013.804226">DOI</a> ] | [ <a href="http://dx.doi.org/10.1080/01431161.2013.804226">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000345638903035">14</a>] | [<a name="WOS:000325489300010">787</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Xavier Ceamanos, Jean-Louis Roujean, Dominique Carrer, and Catherine Meurey. | Jaehwa Lee, N. Christina Hsu, Corey Bettenhausen, and Andrew M. Sayer. |
<b>DOWNWELLING SHORTWAVE SURFACE FLUX FROM MSG GEOSTATIONARY | <b>Retrieval of aerosol optical depth under thin cirrus from MODIS: |
SATELLITE: IMPACT ASSESSMENT ON LAND SURFACE MODELS AND IMPROVEMENTS ON | Application to an ocean algorithm</b>. |
CONSIDERATION OF AEROSOL EFFECTS</b>. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, |
In <em>2013 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING | 118(17):10111-10124, SEP 16 2013. |
SYMPOSIUM (IGARSS)</em>, IEEE International Symposium on Geoscience and Remote | [ <a href="http://dx.doi.org/10.1002/jgrd.50806">DOI</a> ] |
Sensing IGARSS, pages 3068--3071, 2013. | |
IEEE International Geoscience and Remote Sensing Symposium (IGARSS), | |
Melbourne, AUSTRALIA, JUL 21-26, 2013. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000316612900077">15</a>] | [<a name="WOS:000323881700026">788</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Daniel-Eduard Constantin, Alexis Merlaud, Michel Van Roozendael, Mirela | Raul R. Cordero, Alessandro Damiani, Jorge Ferrer, Juan Rayas, Jose Jorquera, |
Voiculescu, Caroline Fayt, Francois Hendrick, Gaia Pinardi, and Lucian | Mario Tobar, Fernando Labbe, and David Laroze. |
Georgescu. | <b>Downwelling and upwelling radiance distributions sampled under |
<b>Measurements of Tropospheric NO2 in Romania Using a Zenith-Sky | cloudless conditions in Antarctica</b>. |
Mobile DOAS System and Comparisons with Satellite Observations</b>. | <em>APPLIED OPTICS</em>, 52(25):6287-6294, SEP 1 2013. |
<em>SENSORS</em>, 13(3):3922--3940, MAR 2013. | [ <a href="http://dx.doi.org/10.1364/AO.52.006287">DOI</a> ] |
[ <a href="http://dx.doi.org/10.3390/s130303922">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320557800009">16</a>] | [<a name="WOS:000319025000041">789</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. R. Cordero, A. Damiani, L. Da Silva, D. Laroze, and F. Labbe. | Christophe Vernay, Philippe Blanc, and Sebastien Pitaval. |
<b>Spectral UV radiance measured at a coastal site: a case | <b>Characterizing measurements campaigns for an innovative |
study</b>. | calibration approach of the global horizontal irradiation estimated by |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, | HelioClim-3</b>. |
12(7):1193--1201, 2013. | <em>RENEWABLE ENERGY</em>, 57:339-347, SEP 2013. |
[ <a href="http://dx.doi.org/10.1039/c3pp25440b">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.renene.2013.01.049">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000323881700026">17</a>] | [<a name="WOS:000323880400008">790</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Alessandro Damiani, Jorge Ferrer, Juan Rayas, Jose Jorquera, | Susan Kay, John Hedley, and Samantha Lavender. |
Mario Tobar, Fernando Labbe, and David Laroze. | <b>Sun glint estimation in marine satellite images: a comparison of |
<b>Downwelling and upwelling radiance distributions sampled under | results from calculation and radiative transfer modeling</b>. |
cloudless conditions in Antarctica</b>. | <em>APPLIED OPTICS</em>, 52(23):5631-5639, AUG 10 2013. |
<em>APPLIED OPTICS</em>, 52(25):6287--6294, SEP 1 2013. | [ <a href="http://dx.doi.org/10.1364/AO.52.005631">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1364/AO.52.006287">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000328547200007">18</a>] | [<a name="WOS:000330454500002">791</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Alessandro Damiani, Gunther Seckmeyer, Stefan Riechelmann, | Rosie Howard and Roland Stull. |
Fernando Labbe, David Laroze, and Fernanda Garate. | <b>Modeling the Downwelling Longwave Radiation over a Groomed Ski |
<b>Satellite-derived UV climatology at Escudero Station, Antarctic | Run under Clear Skies</b>. |
Peninsula</b>. | <em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, |
<em>ANTARCTIC SCIENCE</em>, 25(6):791--803, DEC 2013. | 52(7):1540-1553, JUL 2013. |
[ <a href="http://dx.doi.org/10.1017/S0954102013000175">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/JAMC-D-12-0245.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100209">19</a>] | [<a name="WOS:000329304200030">792</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. J. Costa, D. Bortoli, S. Pereira, V. Salgueiro, A. M. Silva, A. Serrano, | Peter Gies, Jennifer Makin, Suzanne Dobbinson, John Javorniczky, Stuart |
M. Anton, J. M. Vilaplana, M. L. Cancillo, D. Santos, and P. Kulkarni. | Henderson, Robert Guilfoyle, and Jordan Lock. |
<b>Surface UV Radiation in the South of Portugal: Monitoring and | <b>Shade Provision for Toddlers at Swimming Pools in Melbourne</b>. |
Assessment of Cloud Effects</b>. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 89(4, SI):968-973, JUL 2013. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | [ <a href="http://dx.doi.org/10.1111/php.12078">DOI</a> ] |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | |
Proceedings</em>, pages 852--855, 2013. | |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804904">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100168">20</a>] | [<a name="WOS:000329304200031">793</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. J. Costa, V. Salgueiro, D. Santos, D. Bortoli, A. M. Silva, and R. Salgado. | Gunther Seckmeyer, Michael Schrempf, Anna Wieczorek, Stefan Riechelmann, |
<b>Surface Cloud Radiative Forcing in the South of Portugal</b>. | Kathrin Graw, Stefan Seckmeyer, and Maria Zankl. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | <b>A Novel Method to Calculate Solar UV Exposure Relevant to |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | Vitamin D Production in Humans</b>. |
Proceedings</em>, pages 684--687, 2013. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 89(4, SI):974-983, JUL 2013. |
International Radiation Symposium on Radiation Processes in the | [ <a href="http://dx.doi.org/10.1111/php.12074">DOI</a> ] |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804862">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000336801500008">21</a>] | [<a name="WOS:000321256100010">794</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anthony B. Davis, Michael J. Garay, Feng Xu, Zheng Qu, and Claudia Emde. | Marion Schroedter-Homscheidt, Armel Oumbe, Angela Benedetti, and Jean-Jacques |
<b>3D radiative transfer effects in multi-angle/multispectral | Morcrette. |
radio-polarimetric signals from a mixture of clouds and aerosols viewed by a | <b>AEROSOLS FOR CONCENTRATING SOLAR ELECTRICITY PRODUCTION |
non-imaging sensor</b>. | FORECASTS: Requirement Quantification and ECMWF/MACC Aerosol Forecast |
In Shaw, JA and LeMaster, DA, editor, <em>POLARIZATION SCIENCE | Assessment</b>. |
AND REMOTE SENSING VI</em>, volume 8873 of <em>Proceedings of SPIE</em>, | <em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, |
2013. | 94(6):903-914, JUN 2013. |
Conference on Polarization Science and Remote Sensing VI, San Diego, | [ <a href="http://dx.doi.org/10.1175/BAMS-D-11-00259.1">DOI</a> ] |
CA, AUG 26-29, 2013. | |
[ <a href="http://dx.doi.org/10.1117/12.2023733">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000316558500007">22</a>] | [<a name="WOS:000319642100004">795</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. Decoster, N. Clerbaux, E. Baudrez, S. Dewitte, A. Ipe, S. Nevens, | James E. Bramante and Durairaju Kumaran Raju. |
A. Velazquez Blazquez, and J. Cornelis. | <b>Predicting the distribution of informal camps established by the |
<b>A Spectral Aging Model for the Meteosat-7 Visible Band</b>. | displaced after a catastrophic disaster, Port-au-Prince, Haiti</b>. |
<em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, | <em>APPLIED GEOGRAPHY</em>, 40:30-39, JUN 2013. |
30(3):496--509, MAR 2013. | [ <a href="http://dx.doi.org/10.1016/j.apgeog.2013.02.001">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1175/JTECH-D-12-00124.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000324724800009">23</a>] | [<a name="WOS:000319744700014">796</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. Decoster, N. Clerbaux, Y. M. Govaerts, E. Baudrez, A. Ipe, S. Dewitte, | F. Werner, H. Siebert, P. Pilewskie, T. Schmeissner, R. A. Shaw, and |
S. Nevens, A. Velazquez Blazquez, and J. Cornelis. | M. Wendisch. |
<b>Evidence of pre-launch characterization problem of Meteosat-7 | <b>New airborne retrieval approach for trade wind cumulus |
visible spectral response</b>. | properties under overlying cirrus</b>. |
<em>REMOTE SENSING LETTERS</em>, 4(10):1008--1017, OCT 1 | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 118(9):3634-3649, |
2013. | MAY 16 2013. |
[ <a href="http://dx.doi.org/10.1080/2150704X.2013.828181">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/jgrd.50334">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100212">24</a>] | [<a name="WOS:000317537100021">797</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Rosa Delia Garcia, Emilio Cuevas, Victoria Eugenia Cachorro, Ramon Ramos, and | F. Antonanzas-Torres, F. Canizares, and O. Perpinan. |
Angel Maximo de Frutos. | <b>Comparative assessment of global irradiation from a satellite |
<b>Comparison between Measurements and Model Simulations of Solar | estimate model (CM SAP) and on-ground measurements (SIAR): A Spanish case |
Radiation at a High Altitude Site: Case Studies for the Izana BSRN Station</b>. | study</b>. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | <em>RENEWABLE & SUSTAINABLE ENERGY REVIEWS</em>, 21:248-261, MAY 2013. |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | [ <a href="http://dx.doi.org/10.1016/j.rser.2012.12.033">DOI</a> ] |
Proceedings</em>, pages 864--867, 2013. | |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804907">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100210">25</a>] | [<a name="WOS:000315932800033">798</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Henri Diemoz, Luca Egli, Julian Groebner, Anna Maria Siani, and Fabrizio | E. Nikitidou, A. Kazantzidis, V. De Bock, and H. De Backer. |
Diotri. | <b>The aerosol forcing efficiency in the UV region and the |
<b>Solar Ultraviolet Irradiance Measurements in Aosta (Italy): an | estimation of single scattering albedo at a typical West European site</b>. |
Analysis of Short- and Middle-Term Spectral Variability</b>. | <em>ATMOSPHERIC ENVIRONMENT</em>, 69:313-320, APR 2013. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2012.12.035">DOI</a> ] |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | |
Proceedings</em>, pages 856--859, 2013. | |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804905">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317627800033">26</a>] | [<a name="WOS:000317627800033">799</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Laure Dossus, Marina Kvaskoff, Anne Bijon, Pierre Engel, Jean Verdebout, | Laure Dossus, Marina Kvaskoff, Anne Bijon, Pierre Engel, Jean Verdebout, |
Beatrice Fervers, Marie-Christine Boutron-Ruault, Francoise Clavel-Chapelon, | Beatrice Fervers, Marie-Christine Boutron-Ruault, Francoise Clavel-Chapelon, |
<b>Latitude and ultraviolet radiation dose in the birthplace in | <b>Latitude and ultraviolet radiation dose in the birthplace in |
relation to menarcheal age in a large cohort of French women</b>. | relation to menarcheal age in a large cohort of French women</b>. |
<em>INTERNATIONAL JOURNAL OF EPIDEMIOLOGY</em>, 42(2):590--600, | <em>INTERNATIONAL JOURNAL OF EPIDEMIOLOGY</em>, 42(2):590-600, APR |
APR 2013. | 2013. |
[ <a href="http://dx.doi.org/10.1093/ije/dyt007">DOI</a> ] | [ <a href="http://dx.doi.org/10.1093/ije/dyt007">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000312173400010">27</a>] | [<a name="WOS:000317842800025">800</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Dmitry Efremenko, Adrian Doicu, Diego Loyola, and Thomas Trautmann. | Ulrich Schumann and Kaspar Graf. |
<b>Small-angle modification of the radiative transfer equation for | <b>Aviation-induced cirrus and radiation changes at diurnal |
a pseudo-spherical atmosphere</b>. | timescales</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 118(5):2404-2421, |
114:82--90, JAN 2013. | MAR 16 2013. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2012.08.013">DOI</a> ] | [ <a href="http://dx.doi.org/10.1002/jgrd.50184">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100202">28</a>] | [<a name="WOS:000315921500001">801</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Luca Egli, Julian Groebner, Marek Smid, Geiland Porrovecchio, Tim Burnitt, | Yuka Fujii, Edwin L. Turner, and Yasushi Suto. |
Kathryn M. Nield, Steve Gibson, Jimmy Dubard, Saulius Nevas, and Maurizo | <b>VARIABILITY OF WATER AND OXYGEN ABSORPTION BANDS IN THE |
Tormen. | DISK-INTEGRATED SPECTRA OF EARTH</b>. |
<b>New Technologies to Reduce Stray Light for Measuring Solar UV | <em>ASTROPHYSICAL JOURNAL</em>, 765(2), MAR 10 2013. |
with Array Spectroradiometers</b>. | [ <a href="http://dx.doi.org/10.1088/0004-637X/765/2/76">DOI</a> ] |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | |
Proceedings</em>, pages 825--828, 2013. | |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804897">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317605400019">29</a>] | [<a name="WOS:000316612900077">802</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Egorova, E. Rozanov, J. Groebner, M. Hauser, and W. Schmutz. | Daniel-Eduard Constantin, Alexis Merlaud, Michel Van Roozendael, Mirela |
<b>Montreal Protocol Benefits simulated with CCM SOCOL</b>. | Voiculescu, Caroline Fayt, Francois Hendrick, Gaia Pinardi, and Lucian |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(7):3811--3823, | Georgescu. |
2013. | <b>Measurements of Tropospheric NO<sub>2</sub> in Romania Using a |
[ <a href="http://dx.doi.org/10.5194/acp-13-3811-2013">DOI</a> ] | Zenith-Sky Mobile DOAS System and Comparisons with Satellite Observations</b>. |
| <em>SENSORS</em>, 13(3):3922-3940, MAR 2013. |
| [ <a href="http://dx.doi.org/10.3390/s130303922">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317011000012">30</a>] | [<a name="WOS:000314486600010">803</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Ewald, L. Bugliaro, H. Mannstein, and B. Mayer. | Viorel Badescu and Alexandru Dumitrescu. |
<b>An improved cirrus detection algorithm MeCiDA2 for SEVIRI and | <b>The CMSAF hourly solar irradiance database (product CM54): |
its evaluation with MODIS</b>. | Accuracy and bias corrections with illustrations for Romania (south-eastern |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(2):309--322, | Europe)</b>. |
2013. | <em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, |
[ <a href="http://dx.doi.org/10.5194/amt-6-309-2013">DOI</a> ] | 93:100-109, FEB 2013. |
| [ <a href="http://dx.doi.org/10.1016/j.jastp.2012.12.001">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000326507100031">31</a>] | [<a name="WOS:000434592000009">804</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Uwe Feister, Gabriele Meyer, and Ulrich Kirst. | M. M. Makogon, Yu. N. Ponomarev, and B. A. Tikhomirov. |
<b>Solar UV Exposure of Seafarers along Subtropical and Tropical | <b>The Problem of Water Vapor Absorption in the UV Spectral Range</b>. |
Shipping Routes</b>. | <em>ATMOSPHERIC AND OCEANIC OPTICS</em>, 26(1):45-49, FEB 2013. |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 89(6):1497--1506, | [ <a href="http://dx.doi.org/10.1134/S1024856013010119">DOI</a> ] |
NOV 2013. | |
[ <a href="http://dx.doi.org/10.1111/php.12144">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100211">32</a>] | [<a name="WOS:000336801500008">805</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Uwe Feister, Gabriele Meyer, and Ulrich Kirst. | Anthony B. Davis, Michael J. Garay, Feng Xu, Zheng Qu, and Claudia Emde. |
<b>Solar UV Radiation Exposure of Seamen - Measurements, | <b>3D radiative transfer effects in multi-angle/multispectral |
Calibration and Model Calculations of Erythemal Irradiance along Ship | radio-polarimetric signals from a mixture of clouds and aerosols viewed by a |
Routes</b>. | non-imaging sensor</b>. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | In JA Shaw and DA LeMaster, editors, <em>POLARIZATION SCIENCE AND |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | REMOTE SENSING VI</em>, volume 8873 of <em>Proceedings of SPIE</em>. SPIE, 2013. |
Proceedings</em>, pages 860--863, 2013. | Conference on Polarization Science and Remote Sensing VI, San Diego, |
International Radiation Symposium on Radiation Processes in the | CA, AUG 26-29, 2013. |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | [ <a href="http://dx.doi.org/10.1117/12.2023733">DOI</a> ] |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804906">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100110">33</a>] | [<a name="WOS:000327101900002">806</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Florian Filipitsch, Robert Buras, and Martin Fuchs. | G. Bernhard, A. Dahlback, V. Fioletov, A. Heikkila, B. Johnsen, T. Koskela, |
<b>Model Studies on the Retrieval of Aerosol Properties beneath | K. Lakkala, and T. Svendby. |
Cirrus Clouds for a Spaceborne HSRL</b>. | <b>High levels of ultraviolet radiation observed by ground-based |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | instruments below the 2011 Arctic ozone hole</b>. |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(21):10573-10590, 2013. |
Proceedings</em>, pages 452--455, 2013. | [ <a href="http://dx.doi.org/10.5194/acp-13-10573-2013">DOI</a> ] |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804804">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100061">34</a>] | [<a name="WOS:000326547100007">807</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Clemens Fricke, Andre Ehrlich, Evelyn Jaeckel, Birger Bohn, Martin Wirth, and | M. Vazquez-Navarro, B. Mayer, and H. Mannstein. |
Manfred Wendisch. | <b>A fast method for the retrieval of integrated longwave and |
<b>Influence of Surface Albedo Inhomogeneities on Passive Remote | shortwave top-of-atmosphere upwelling irradiances from MSG/SEVIRI (RRUMS)</b>. |
Sensing of Cirrus Properties</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(10):2627-2640, 2013. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | [ <a href="http://dx.doi.org/10.5194/amt-6-2627-2013">DOI</a> ] |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | |
Proceedings</em>, pages 256--259, 2013. | |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804755">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000315921500001">35</a>] | [<a name="WOS:000324301400001">808</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Yuka Fujii, Edwin L. Turner, and Yasushi Suto. | David Mateos, Manuel Anton, Antonio Valenzuela, Alberto Cazorla, Francisco J. |
<b>VARIABILITY OF WATER AND OXYGEN ABSORPTION BANDS IN THE | Olmo, and Lucas Alados-Arboledas. |
DISK-INTEGRATED SPECTRA OF EARTH</b>. | <b>Short-wave radiative forcing at the surface for cloudy systems |
<em>ASTROPHYSICAL JOURNAL</em>, 765(2), MAR 10 2013. | at a midlatitude site</b>. |
[ <a href="http://dx.doi.org/10.1088/0004-637X/765/2/76">DOI</a> ] | <em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 65, 2013. |
| [ <a href="http://dx.doi.org/10.3402/tellusb.v65i0.21069">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100038">36</a>] | [<a name="WOS:000323978000001">809</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Josef Gasteiger and Matthias Wiegner. | M. Schaefer, E. Bierwirth, A. Ehrlich, F. Heyner, and M. Wendisch. |
<b>Comparison of Modeled Optical Properties of Saharan Mineral | <b>Retrieval of cirrus optical thickness and assessment of ice |
Dust Aerosols with SAMUM Lidar and Photometer Observations</b>. | crystal shape from ground-based imaging spectrometry</b>. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(8):1855-1868, 2013. |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | [ <a href="http://dx.doi.org/10.5194/amt-6-1855-2013">DOI</a> ] |
Proceedings</em>, pages 163--166, 2013. | |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804732">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000329304200030">37</a>] | [<a name="WOS:000323103900039">810</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Peter Gies, Jennifer Makin, Suzanne Dobbinson, John Javorniczky, Stuart | A. Arola, T. F. Eck, J. Huttunen, K. E. J. Lehtinen, A. V. Lindfors, G. Myhre, |
Henderson, Robert Guilfoyle, and Jordan Lock. | A. Smirnov, S. N. Tripathi, and H. Yu. |
<b>Shade Provision for Toddlers at Swimming Pools in Melbourne</b>. | <b>Influence of observed diurnal cycles of aerosol optical depth on |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 89(4, SI):968--973, | aerosol direct radiative effect</b>. |
JUL 2013. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(15):7895-7901, 2013. |
[ <a href="http://dx.doi.org/10.1111/php.12078">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-13-7895-2013">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000329417700013">38</a>] | [<a name="WOS:000322546800019">811</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Eloi Grau and Jean-Philippe Gastellu-Etchegorry. | A. Kreuter and M. Blumthaler. |
<b>Radiative transfer modeling in the Earth-Atmosphere system with | <b>Feasibility of polarized all-sky imaging for aerosol |
DART model</b>. | characterization</b>. |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 139:149--170, DEC | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(7):1845-1854, 2013. |
2013. | [ <a href="http://dx.doi.org/10.5194/amt-6-1845-2013">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.rse.2013.07.019">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100213">39</a>] | [<a name="WOS:000321767200031">812</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Hadzimustafic, S. Simic, and M. Fitzka. | T. Berg, K. A. Pfaffhuber, A. S. Cole, O. Engelsen, and A. Steffen. |
<b>UV-Radiation in the Past: Reconstruction and Long-term Changes | <b>Ten-year trends in atmospheric mercury concentrations, |
in Austria</b>. | meteorological effects and climate variables at Zeppelin, Ny-Alesund</b>. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(13):6575-6586, 2013. |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | [ <a href="http://dx.doi.org/10.5194/acp-13-6575-2013">DOI</a> ] |
Proceedings</em>, pages 868--871, 2013. | |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000321679200006">813</a>] |
| </td> |
| <td> |
| E. Bierwirth, A. Ehrlich, M. Wendisch, J. F. Gayet, C. Gourbeyre, R. Dupuy, |
| A. Herber, R. Neuber, and A. Lampert. |
| <b>Optical thickness and effective radius of Arctic boundary-layer |
| clouds retrieved from airborne nadir and imaging spectrometry</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(5):1189-1200, 2013. |
| [ <a href="http://dx.doi.org/10.5194/amt-6-1189-2013">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000320763100013">814</a>] |
| </td> |
| <td> |
| Daniel Sauer, Josef Gasteiger, Claudia Emde, Robert Buras, Bernhard Mayer, and |
| Bernadett Weinzierl. |
| <b>The Visibility of Airborne Volcanic Ash from the Flight Deck of |
| an Aircraft - The Effect of Clouds in the Field of View</b>. |
| In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
| ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
| Proceedings</em>, pages 63-66. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
International Radiation Symposium on Radiation Processes in the | International Radiation Symposium on Radiation Processes in the |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
2012. | 2012. |
[ <a href="http://dx.doi.org/10.1063/1.4804908">DOI</a> ] | [ <a href="http://dx.doi.org/10.1063/1.4804708">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000330454500002">40</a>] | [<a name="WOS:000320763100038">815</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Rosie Howard and Roland Stull. | Josef Gasteiger and Matthias Wiegner. |
<b>Modeling the Downwelling Longwave Radiation over a Groomed Ski | <b>Comparison of Modeled Optical Properties of Saharan Mineral Dust |
Run under Clear Skies</b>. | Aerosols with SAMUM Lidar and Photometer Observations</b>. |
<em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
52(7):1540--1553, JUL 2013. | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
[ <a href="http://dx.doi.org/10.1175/JAMC-D-12-0245.1">DOI</a> ] | Proceedings</em>, pages 163-166. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804732">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100138">41</a>] | [<a name="WOS:000320763100061">816</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Juan Huo and Daren Lu. | Clemens Fricke, Andre Ehrlich, Evelyn Jaeckel, Birger Bohn, Martin Wirth, and |
<b>Characteristics of Solar Radiation and the Impact of Clouds at | Manfred Wendisch. |
Yangbajing, Tibet</b>. | <b>Influence of Surface Albedo Inhomogeneities on Passive Remote |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | Sensing of Cirrus Properties</b>. |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
Proceedings</em>, pages 564--567. Karlsruhe Inst Technol (KIT); Leibniz Inst | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
| Proceedings</em>, pages 256-259. Karlsruhe Inst Technol (KIT); Leibniz Inst |
Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); | Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
German Weather Serv (DWD); European Org Exploitat Meteorol Satellites | German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
2012. | 2012. |
[ <a href="http://dx.doi.org/10.1063/1.4804832">DOI</a> ] | [ <a href="http://dx.doi.org/10.1063/1.4804755">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317011200002">42</a>] | [<a name="WOS:000320763100063">817</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Jaekel, M. Wendisch, and B. Mayer. | M. Brueckner, A. Macke, M. Wendisch, T. Kanitz, and B. Pospichal. |
<b>Influence of spatial heterogeneity of local surface albedo on | <b>Cloud Retrieval Using Ship-based Spectral Transmissivity |
the area-averaged surface albedo retrieved from airborne irradiance | Measurements</b>. |
measurements</b>. | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(3):527--537, | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
2013. | Proceedings</em>, pages 264-267. Karlsruhe Inst Technol (KIT); Leibniz Inst |
[ <a href="http://dx.doi.org/10.5194/amt-6-527-2013">DOI</a> ] | Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804757">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100125">43</a>] | [<a name="WOS:000320763100110">818</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Florian Filipitsch, Robert Buras, and Martin Fuchs. |
| <b>Model Studies on the Retrieval of Aerosol Properties beneath |
| Cirrus Clouds for a Spaceborne HSRL</b>. |
| In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
| ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
| Proceedings</em>, pages 452-455. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804804">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000320763100125">819</a>] |
| </td> |
| <td> |
E. Jaekel, M. Wendisch, and Bernhard Mayer. | E. Jaekel, M. Wendisch, and Bernhard Mayer. |
<b>Influence of Spatial Heterogeneity of Surface Albedo on its | <b>Influence of Spatial Heterogeneity of Surface Albedo on its |
Retrieval from Airborne Irradiance Measurements</b>. | Retrieval from Airborne Irradiance Measurements</b>. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
Proceedings</em>, pages 512--515, 2013. | Proceedings</em>, pages 512-515. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
International Radiation Symposium on Radiation Processes in the | International Radiation Symposium on Radiation Processes in the |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100192">44</a>] | [<a name="WOS:000320763100138">820</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
B. Johnsen, L. T. Nilsen, A. Dahlback, K. Edvardsen, and C. L. Myhre. | Juan Huo and Daren Lu. |
<b>The Norwegian UV-monitoring Network: QC and Results for the | <b>Characteristics of Solar Radiation and the Impact of Clouds at |
Period 1996-2011</b>. | Yangbajing, Tibet</b>. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
Proceedings</em>, pages 784--787, 2013. | Proceedings</em>, pages 564-567. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
International Radiation Symposium on Radiation Processes in the | International Radiation Symposium on Radiation Processes in the |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
2012. | 2012. |
[ <a href="http://dx.doi.org/10.1063/1.4804887">DOI</a> ] | [ <a href="http://dx.doi.org/10.1063/1.4804832">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000328754500091">45</a>] | [<a name="WOS:000320763100192">821</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Jones, S. Noll, W. Kausch, C. Szyszka, and S. Kimeswenger. | B. Johnsen, L. T. Nilsen, A. Dahlback, K. Edvardsen, and C. L. Myhre. |
<b>An advanced scattered moonlight model for Cerro Paranal</b>. | <b>The Norwegian UV-monitoring Network: QC and Results for the |
<em>ASTRONOMY & ASTROPHYSICS</em>, 560, DEC 2013. | Period 1996-2011</b>. |
[ <a href="http://dx.doi.org/10.1051/0004-6361/201322433">DOI</a> ] | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
| ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
| Proceedings</em>, pages 784-787. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804887">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000330266000022">46</a>] | [<a name="WOS:000320763100202">822</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Kanitz, A. Ansmann, P. Seifert, R. Engelmann, J. Kalisch, and D. Althausen. | Luca Egli, Julian Groebner, Marek Smid, Geiland Porrovecchio, Tim Burnitt, |
<b>Radiative effect of aerosols above the northern and southern | Kathryn M. Nield, Steve Gibson, Jimmy Dubard, Saulius Nevas, and Maurizo |
Atlantic Ocean as determined from shipborne lidar observations</b>. | Tormen. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | <b>New Technologies to Reduce Stray Light for Measuring Solar UV |
118(22):12556--12565, NOV 27 2013. | with Array Spectroradiometers</b>. |
[ <a href="http://dx.doi.org/10.1002/2013JD019750">DOI</a> ] | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
| ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
| Proceedings</em>, pages 825-828. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804897">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000323880400008">47</a>] | [<a name="WOS:000320763100210">823</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Susan Kay, John Hedley, and Samantha Lavender. | Henri Diemoz, Luca Egli, Julian Groebner, Anna Maria Siani, and Fabrizio |
<b>Sun glint estimation in marine satellite images: a comparison | Diotri. |
of results from calculation and radiative transfer modeling</b>. | <b>Solar Ultraviolet Irradiance Measurements in Aosta (Italy): an |
<em>APPLIED OPTICS</em>, 52(23):5631--5639, AUG 10 2013. | Analysis of Short- and Middle-Term Spectral Variability</b>. |
[ <a href="http://dx.doi.org/10.1364/AO.52.005631">DOI</a> ] | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
| ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
| Proceedings</em>, pages 856-859. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804905">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000322546800019">48</a>] | [<a name="WOS:000320763100211">824</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kreuter and M. Blumthaler. | Uwe Feister, Gabriele Meyer, and Ulrich Kirst. |
<b>Feasibility of polarized all-sky imaging for aerosol | <b>Solar UV Radiation Exposure of Seamen - Measurements, |
characterization</b>. | Calibration and Model Calculations of Erythemal Irradiance along Ship |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(7):1845--1854, | Routes</b>. |
2013. | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
[ <a href="http://dx.doi.org/10.5194/amt-6-1845-2013">DOI</a> ] | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
| Proceedings</em>, pages 860-863. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804906">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317011200011">49</a>] | [<a name="WOS:000320763100212">825</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kylling, R. Buras, S. Eckhardt, C. Emde, B. Mayer, and A. Stohl. | Rosa Delia Garcia, Emilio Cuevas, Victoria Eugenia Cachorro, Ramon Ramos, and |
<b>Simulation of SEVIRI infrared channels: a case study from the | Angel Maximo de Frutos. |
Eyjafjallajokull April/May 2010 eruption</b>. | <b>Comparison between Measurements and Model Simulations of Solar |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(3):649--660, | Radiation at a High Altitude Site: Case Studies for the Izana BSRN Station</b>. |
2013. | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
[ <a href="http://dx.doi.org/10.5194/amt-6-649-2013">DOI</a> ] | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
| Proceedings</em>, pages 864-867. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804907">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000325489300010">50</a>] | [<a name="WOS:000320763100213">826</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Jaehwa Lee, N. Christina Hsu, Corey Bettenhausen, and Andrew M. Sayer. | J. Hadzimustafic, S. Simic, and M. Fitzka. |
<b>Retrieval of aerosol optical depth under thin cirrus from | <b>UV-Radiation in the Past: Reconstruction and Long-term Changes |
MODIS: Application to an ocean algorithm</b>. | in Austria</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
118(17):10111--10124, SEP 16 2013. | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
[ <a href="http://dx.doi.org/10.1002/jgrd.50806">DOI</a> ] | Proceedings</em>, pages 868-871. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804908">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000325286500014">51</a>] | [<a name="WOS:000320763100218">827</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Lefevre, A. Oumbe, P. Blanc, B. Espinar, B. Gschwind, Z. Qu, L. Wald, | Efterpi Nikitidou, Veerle De Bock, Hugo De Backer, and Andreas Kazantzidis. |
M. Schroedter-Homscheidt, C. Hoyer-Klick, A. Arola, A. Benedetti, J. W. | <b>Aerosol Optical Properties and their Effect on the UV Solar |
Kaiser, and J. J. Morcrette. | Irradiance at Uccle, Belgium</b>. |
<b>McClear: a new model estimating downwelling solar radiation at | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
ground level in clear-sky conditions</b>. | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(9):2403--2418, | Proceedings</em>, pages 887-890. Karlsruhe Inst Technol (KIT); Leibniz Inst |
2013. | Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
[ <a href="http://dx.doi.org/10.5194/amt-6-2403-2013">DOI</a> ] | German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804913">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317605400014">52</a>] | [<a name="WOS:000317605400014">828</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. V. Lindfors, N. Kouremeti, A. Arola, S. Kazadzis, A. F. Bais, and | A. V. Lindfors, N. Kouremeti, A. Arola, S. Kazadzis, A. F. Bais, and |
A. Laaksonen. | A. Laaksonen. |
<b>Effective aerosol optical depth from pyranometer measurements | <b>Effective aerosol optical depth from pyranometer measurements of |
of surface solar radiation (global radiation) at Thessaloniki, Greece</b>. | surface solar radiation (global radiation) at Thessaloniki, Greece</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(7):3733--3741, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(7):3733-3741, 2013. |
2013. | |
[ <a href="http://dx.doi.org/10.5194/acp-13-3733-2013">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-13-3733-2013">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000329378000024">53</a>] | [<a name="WOS:000317605400018">829</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Mateos, M. Anton, A. Sanchez-Lorenzo, J. Calbo, and M. Wild. | O. Meinander, S. Kazadzis, A. Arola, A. Riihela, P. Raisanen, R. Kivi, |
<b>Long-term changes in the radiative effects of aerosols and | A. Kontu, R. Kouznetsov, M. Sofiev, J. Svensson, H. Suokanerva, V. Aaltonen, |
clouds in a mid-latitude region (1985-2010)</b>. | T. Manninen, J. L. Roujean, and O. Hautecoeur. |
<em>GLOBAL AND PLANETARY CHANGE</em>, 111:288--295, DEC 2013. | <b>Spectral albedo of seasonal snow during intensive melt period at |
[ <a href="http://dx.doi.org/10.1016/j.gloplacha.2013.10.004">DOI</a> ] | Sodankyla, beyond the Arctic Circle</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(7):3793-3810, 2013. |
| [ <a href="http://dx.doi.org/10.5194/acp-13-3793-2013">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000324301400001">54</a>] | [<a name="WOS:000317011000012">830</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
David Mateos, Manuel Anton, Antonio Valenzuela, Alberto Cazorla, Francisco J. | F. Ewald, L. Bugliaro, H. Mannstein, and B. Mayer. |
Olmo, and Lucas Alados-Arboledas. | <b>An improved cirrus detection algorithm MeCiDA2 for SEVIRI and |
<b>Short-wave radiative forcing at the surface for cloudy systems | its evaluation with MODIS</b>. |
at a midlatitude site</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(2):309-322, 2013. |
<em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 65, | [ <a href="http://dx.doi.org/10.5194/amt-6-309-2013">DOI</a> ] |
2013. | |
[ <a href="http://dx.doi.org/10.3402/tellusb.v65i0.21069">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317605400018">55</a>] | [<a name="WOS:000317011200002">831</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
O. Meinander, S. Kazadzis, A. Arola, A. Riihela, P. Raisanen, R. Kivi, | E. Jaekel, M. Wendisch, and B. Mayer. |
A. Kontu, R. Kouznetsov, M. Sofiev, J. Svensson, H. Suokanerva, V. Aaltonen, | <b>Influence of spatial heterogeneity of local surface albedo on |
T. Manninen, J. L. Roujean, and O. Hautecoeur. | the area-averaged surface albedo retrieved from airborne irradiance |
<b>Spectral albedo of seasonal snow during intensive melt period | measurements</b>. |
at Sodankyla, beyond the Arctic Circle</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(3):527-537, 2013. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(7):3793--3810, | [ <a href="http://dx.doi.org/10.5194/amt-6-527-2013">DOI</a> ] |
2013. | |
[ <a href="http://dx.doi.org/10.5194/acp-13-3793-2013">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100126">56</a>] | [<a name="WOS:000315176400014">832</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Britta Mey, Evelyn Jaekel, Birgit Heese, Dietrich Althausen, Holger Baars, | G. Pinardi, M. Van Roozendael, N. Abuhassan, C. Adams, A. Cede, K. Clemer, |
Xingfa Gu, Tao Yu, Zhengqiang Li, and Manfred Wendisch. | C. Fayt, U. Friess, M. Gil, J. Herman, C. Hermans, F. Hendrick, H. Irie, |
<b>Airborne Measurements of Urban Surface Reflectivity and | A. Merlaud, M. Navarro Comas, E. Peters, A. J. M. Piters, O. Puentedura, |
Albedo</b>. | A. Richter, A. Schoenhardt, R. Shaiganfar, E. Spinei, K. Strong, |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | H. Takashima, M. Vrekoussis, T. Wagner, F. Wittrock, and S. Yilmaz. |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | <b>MAX-DOAS formaldehyde slant column measurements during CINDI: |
Proceedings</em>, pages 516--519, 2013. | intercomparison and analysis improvement</b>. |
International Radiation Symposium on Radiation Processes in the | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(1):167-185, 2013. |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | [ <a href="http://dx.doi.org/10.5194/amt-6-167-2013">DOI</a> ] |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804820">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000325985900009">57</a>] | [<a name="WOS:000313809500001">833</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Nikitidou and A. Kazantzidis. | R. Roman, M. Anton, A. Valenzuela, J. E. Gil, H. Lyamani, A. De Miguel, F. J. |
<b>On the differences of ultraviolet and visible irradiance | Olmo, J. Bilbao, and L. Alados-Arboledas. |
calculations in the Mediterranean basin due to model- and satellite-derived | <b>Evaluation of the desert dust effects on global, direct and |
climatologies of aerosol optical properties</b>. | diffuse spectral ultraviolet irradiance</b>. |
<em>INTERNATIONAL JOURNAL OF CLIMATOLOGY</em>, | <em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 65, 2013. |
33(13):2877--2888, NOV 15 2013. | [ <a href="http://dx.doi.org/10.3402/tellusb.v65i0.19578">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1002/joc.3638">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000315932800033">58</a>] | [<a name="WOS:000345638903035">834</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Nikitidou, A. Kazantzidis, V. De Bock, and H. De Backer. | Xavier Ceamanos, Jean-Louis Roujean, Dominique Carrer, and Catherine Meurey. |
<b>The aerosol forcing efficiency in the UV region and the | <b>DOWNWELLING SHORTWAVE SURFACE FLUX FROM MSG GEOSTATIONARY |
estimation of single scattering albedo at a typical West European site</b>. | SATELLITE: IMPACT ASSESSMENT ON LAND SURFACE MODELS AND IMPROVEMENTS ON |
<em>ATMOSPHERIC ENVIRONMENT</em>, 69:313--320, APR 2013. | CONSIDERATION OF AEROSOL EFFECTS</b>. |
[ <a href="http://dx.doi.org/10.1016/j.atmosenv.2012.12.035">DOI</a> ] | In <em>2013 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING |
| SYMPOSIUM (IGARSS)</em>, IEEE International Symposium on Geoscience and Remote |
| Sensing IGARSS, pages 3068-3071. IEEE; Inst Elect & Elect Engineers, |
| Geoscience & Remote Sensing Soc, 2013. |
| IEEE International Geoscience and Remote Sensing Symposium (IGARSS), |
| Melbourne, AUSTRALIA, JUL 21-26, 2013. |
| [ <a href="http://dx.doi.org/10.1109/IGARSS.2013.6723474">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000315176400014">59</a>] | [<a name="WOS:000350893000002">835</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Pinardi, M. Van Roozendael, N. Abuhassan, C. Adams, A. Cede, K. Clemer, | C. Demain, M. Journee, and C. Bertrand. |
C. Fayt, U. Friess, M. Gil, J. Herman, C. Hermans, F. Hendrick, H. Irie, | <b>Sensitivity of the RMI's MAGIC/Heliosat-2 method to relevant |
A. Merlaud, M. Navarro Comas, E. Peters, A. J. M. Piters, O. Puentedura, | input data</b>. |
A. Richter, A. Schoenhardt, R. Shaiganfar, E. Spinei, K. Strong, | <em>ADVANCES IN SCIENCE AND RESEARCH</em>, 10:7-13, 2013. |
H. Takashima, M. Vrekoussis, T. Wagner, F. Wittrock, and S. Yilmaz. | 12th EMS Annual Meeting / 9th European Conference on Applied |
<b>MAX-DOAS formaldehyde slant column measurements during CINDI: | Climatology (ECAC), Lodz, POLAND, SEP 10-14, 2012. |
intercomparison and analysis improvement</b>. | [ <a href="http://dx.doi.org/10.5194/asr-10-7-2013">DOI</a> ] |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(1):167--185, | |
2013. | |
[ <a href="http://dx.doi.org/10.5194/amt-6-167-2013">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000316960500004">60</a>] | [<a name="WOS:000316960500004">836</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. A. Randles, S. Kinne, G. Myhre, M. Schulz, P. Stier, J. Fischer, L. Doppler, | C. A. Randles, S. Kinne, G. Myhre, M. Schulz, P. Stier, J. Fischer, L. Doppler, |
E. Highwood, C. Ryder, B. Harris, J. Huttunen, Y. Ma, R. T. Pinker, B. Mayer, | E. Highwood, C. Ryder, B. Harris, J. Huttunen, Y. Ma, R. T. Pinker, B. Mayer, |
global aerosol modeling: results from the AeroCom Radiative Transfer | global aerosol modeling: results from the AeroCom Radiative Transfer |
Experiment</b>. | Experiment</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(5):2347--2379, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(5):2347-2379, 2013. |
2013. | |
[ <a href="http://dx.doi.org/10.5194/acp-13-2347-2013">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-13-2347-2013">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000313809500001">61</a>] | [<a name="WOS:000317605400019">837</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. Roman, M. Anton, A. Valenzuela, J. E. Gil, H. Lyamani, A. De Miguel, F. J. | T. Egorova, E. Rozanov, J. Groebner, M. Hauser, and W. Schmutz. |
Olmo, J. Bilbao, and L. Alados-Arboledas. | <b>Montreal Protocol Benefits simulated with CCM SOCOL</b>. |
<b>Evaluation of the desert dust effects on global, direct and | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(7):3811-3823, 2013. |
diffuse spectral ultraviolet irradiance</b>. | [ <a href="http://dx.doi.org/10.5194/acp-13-3811-2013">DOI</a> ] |
<em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 65, | |
2013. | |
[ <a href="http://dx.doi.org/10.3402/tellusb.v65i0.19578">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000308111000009">62</a>] | [<a name="WOS:000325283800009">838</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Pablo Salvador, Abel Calle, Julia Sanz, Javier Rodriguez, and Jose-Luis | M. von Hobe, S. Bekki, S. Borrmann, F. Cairo, F. D'Amato, G. Di Donfrancesco, |
Casanova. | A. Doernbrack, A. Ebersoldt, M. Ebert, C. Emde, I. Engel, M. Ern, W. Frey, |
<b>An automatic self-learning cloud-filtering algorithm for | S. Genco, S. Griessbach, J. U. Grooss, T. Gulde, G. Guenther, E. Hoesen, |
Meteosat Second Generation-Spinning Enhanced Visible and Infrared Imager</b>. | L. Hoffmann, V. Homonnai, C. R. Hoyle, I. S. A. Isaksen, D. R. Jackson, I. M. |
<em>REMOTE SENSING LETTERS</em>, 4(2):180--189, 2013. | Janosi, R. L. Jones, K. Kandler, C. Kalicinsky, A. Keil, S. M. Khaykin, |
[ <a href="http://dx.doi.org/10.1080/2150704X.2012.714086">DOI</a> ] | F. Khosrawi, R. Kivi, J. Kuttippurath, J. C. Laube, F. Lefevre, R. Lehmann, |
| S. Ludmann, B. P. Luo, M. Marchand, J. Meyer, V. Mitev, S. Molleker, |
| R. Mueller, H. Oelhaf, F. Olschewski, Y. Orsolini, T. Peter, K. Pfeilsticker, |
| C. Piesch, M. C. Pitts, L. R. Poole, F. D. Pope, F. Ravegnani, M. Rex, |
| M. Riese, T. Roeckmann, B. Rognerud, A. Roiger, C. Rolf, M. L. Santee, |
| M. Scheibe, C. Schiller, H. Schlager, M. Siciliani de Cumis, N. Sitnikov, |
| O. A. Sovde, R. Spang, N. Spelten, F. Stordal, O. Suminska-Ebersoldt, |
| A. Ulanovski, J. Ungermann, S. Viciani, C. M. Volk, M. vom Scheidt, |
| P. von der Gathen, K. Walker, T. Wegner, R. Weigel, S. Weinbruch, G. Wetzel, |
| F. G. Wienhold, I. Wohltmann, W. Woiwode, I. A. K. Young, V. Yushkov, |
| B. Zobrist, and F. Stroh. |
| <b>Reconciliation of essential process parameters for an enhanced |
| predictability of Arctic stratospheric ozone loss and its climate |
| interactions (RECONCILE): activities and results</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(18):9233-9268, 2013. |
| [ <a href="http://dx.doi.org/10.5194/acp-13-9233-2013">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000320763100013">63</a>] | [<a name="WOS:000325654900003">839</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Daniel Sauer, Josef Gasteiger, Claudia Emde, Robert Buras, Bernhard Mayer, and | A. Stenke, C. R. Hoyle, B. Luo, E. Rozanov, J. Groebner, L. Maag, |
Bernadett Weinzierl. | S. Broennimann, and T. Peter. |
<b>The Visibility of Airborne Volcanic Ash from the Flight Deck of | <b>Climate and chemistry effects of a regional scale nuclear |
an Aircraft - The Effect of Clouds in the Field of View</b>. | conflict</b>. |
In Cahalan, RF and Fischer, J, editor, <em>RADIATION PROCESSES IN | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(19):9713-9729, 2013. |
THE ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference | [ <a href="http://dx.doi.org/10.5194/acp-13-9713-2013">DOI</a> ] |
Proceedings</em>, pages 63--66, 2013. | |
International Radiation Symposium on Radiation Processes in the | |
Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, | |
2012. | |
[ <a href="http://dx.doi.org/10.1063/1.4804708">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000323978000001">64</a>] | [<a name="WOS:000317011200011">840</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Schaefer, E. Bierwirth, A. Ehrlich, F. Heyner, and M. Wendisch. | A. Kylling, R. Buras, S. Eckhardt, C. Emde, B. Mayer, and A. Stohl. |
<b>Retrieval of cirrus optical thickness and assessment of ice | <b>Simulation of SEVIRI infrared channels: a case study from the |
crystal shape from ground-based imaging spectrometry</b>. | Eyjafjallajokull April/May 2010 eruption</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(8):1855--1868, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(3):649-660, 2013. |
2013. | [ <a href="http://dx.doi.org/10.5194/amt-6-649-2013">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/amt-6-1855-2013">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000321256100010">65</a>] | [<a name="WOS:000325286500014">841</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Marion Schroedter-Homscheidt, Armel Oumbe, Angela Benedetti, and Jean-Jacques | M. Lefevre, A. Oumbe, P. Blanc, B. Espinar, B. Gschwind, Z. Qu, L. Wald, |
Morcrette. | M. Schroedter-Homscheidt, C. Hoyer-Klick, A. Arola, A. Benedetti, J. W. |
<b>AEROSOLS FOR CONCENTRATING SOLAR ELECTRICITY PRODUCTION | Kaiser, and J. J. Morcrette. |
FORECASTS: Requirement Quantification and ECMWF/MACC Aerosol Forecast | <b>McClear: a new model estimating downwelling solar radiation at |
Assessment</b>. | ground level in clear-sky conditions</b>. |
<em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(9):2403-2418, 2013. |
94(6):903--914, JUN 2013. | [ <a href="http://dx.doi.org/10.5194/amt-6-2403-2013">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1175/BAMS-D-11-00259.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000317842800025">66</a>] | [<a name="WOS:000313365100022">842</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ulrich Schumann and Kaspar Graf. | Ping Yang, Lei Bi, Bryan A. Baum, Kuo-Nan Liou, George W. Kattawar, Michael I. |
<b>Aviation-induced cirrus and radiation changes at diurnal | Mishchenko, and Benjamin Cole. |
timescales</b>. | <b>Spectrally Consistent Scattering, Absorption, and Polarization |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | Properties of Atmospheric Ice Crystals at Wavelengths from 0.2 to 100 μm</b>. |
118(5):2404--2421, MAR 16 2013. | <em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 70(1):330-347, JAN 2013. |
[ <a href="http://dx.doi.org/10.1002/jgrd.50184">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/JAS-D-12-039.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000329304200031">67</a>] | [<a name="WOS:000320557800009">843</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Gunther Seckmeyer, Michael Schrempf, Anna Wieczorek, Stefan Riechelmann, | R. R. Cordero, A. Damiani, L. Da Silva, D. Laroze, and F. Labbe. |
Kathrin Graw, Stefan Seckmeyer, and Maria Zankl. | <b>Spectral UV radiance measured at a coastal site: a case study</b>. |
<b>A Novel Method to Calculate Solar UV Exposure Relevant to | <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 12(7):1193-1201, |
Vitamin D Production in Humans</b>. | 2013. |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 89(4, SI):974--983, | [ <a href="http://dx.doi.org/10.1039/c3pp25440b">DOI</a> ] |
JUL 2013. | |
[ <a href="http://dx.doi.org/10.1111/php.12074">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000325654900003">68</a>] | [<a name="WOS:000407525000032">844</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Stenke, C. R. Hoyle, B. Luo, E. Rozanov, J. Groebner, L. Maag, | A. Merlaud, D. E. Constantin, F. Mingireanu, I. Mocanu, C. Fayt, J. Maes, |
S. Broennimann, and T. Peter. | G. Murariu, M. Voiculescu, L. Georgescu, and M. Van Roozendael. |
<b>Climate and chemistry effects of a regional scale nuclear | <b>SMALL WHISKBROOM IMAGER FOR ATMOSPHERIC COMPOSITION MONITORING |
conflict</b>. | (SWING) FROM AN UNMANNED AERIAL VEHICLE (UAV)</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(19):9713--9729, | In L Ouwehand, editor, <em>PROCEEDINGS OF THE 21ST ESA SYMPOSIUM ON |
2013. | EUROPEAN ROCKET & BALLOON PROGRAMMES AND RESEARCH</em>, volume 721 of <em>ESA |
[ <a href="http://dx.doi.org/10.5194/acp-13-9713-2013">DOI</a> ] | Special Publications</em>, pages 233-239. Hsch Luzern; Swiss Space Office; |
| Business Dev Nidwalden, 2013. |
| 21st ESA Symposium on European Rocket and Balloon Programmes and |
| Related Research, Thun, SWITZERLAND, JUN 09-13, 2013. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000326547100007">69</a>] | [<a name="WOS:000320763100126">845</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Vazquez-Navarro, B. Mayer, and H. Mannstein. | Britta Mey, Evelyn Jaekel, Birgit Heese, Dietrich Althausen, Holger Baars, |
<b>A fast method for the retrieval of integrated longwave and | Xingfa Gu, Tao Yu, Zhengqiang Li, and Manfred Wendisch. |
shortwave top-of-atmosphere upwelling irradiances from MSG/SEVIRI (RRUMS)</b>. | <b>Airborne Measurements of Urban Surface Reflectivity and Albedo</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 6(10):2627--2640, | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
2013. | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
[ <a href="http://dx.doi.org/10.5194/amt-6-2627-2013">DOI</a> ] | Proceedings</em>, pages 516-519. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804820">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000319025000041">70</a>] | [<a name="WOS:000320763100168">846</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Christophe Vernay, Philippe Blanc, and Sebastien Pitaval. | M. J. Costa, V. Salgueiro, D. Santos, D. Bortoli, A. M. Silva, and R. Salgado. |
<b>Characterizing measurements campaigns for an innovative | <b>Surface Cloud Radiative Forcing in the South of Portugal</b>. |
calibration approach of the global horizontal irradiation estimated by | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
HelioClim-3</b>. | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
<em>RENEWABLE ENERGY</em>, 57:339--347, SEP 2013. | Proceedings</em>, pages 684-687. Karlsruhe Inst Technol (KIT); Leibniz Inst |
[ <a href="http://dx.doi.org/10.1016/j.renene.2013.01.049">DOI</a> ] | Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804862">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000319744700014">71</a>] | [<a name="WOS:000320763100209">847</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Werner, H. Siebert, P. Pilewskie, T. Schmeissner, R. A. Shaw, and | M. J. Costa, D. Bortoli, S. Pereira, V. Salgueiro, A. M. Silva, A. Serrano, |
M. Wendisch. | M. Anton, J. M. Vilaplana, M. L. Cancillo, D. Santos, and P. Kulkarni. |
<b>New airborne retrieval approach for trade wind cumulus | <b>Surface UV Radiation in the South of Portugal: Monitoring and |
properties under overlying cirrus</b>. | Assessment of Cloud Effects</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, | In RF Cahalan and J Fischer, editors, <em>RADIATION PROCESSES IN THE |
118(9):3634--3649, MAY 16 2013. | ATMOSPHERE AND OCEAN (IRS2012)</em>, volume 1531 of <em>AIP Conference |
[ <a href="http://dx.doi.org/10.1002/jgrd.50334">DOI</a> ] | Proceedings</em>, pages 852-855. Karlsruhe Inst Technol (KIT); Leibniz Inst |
| Tropospher Res (IFT); German Aerosp Ctr (DLR); European Space Agcy (ESA); |
| German Weather Serv (DWD); European Org Exploitat Meteorol Satellites |
| (EUMETSAT); IAMAS, IRC, 2013. |
| International Radiation Symposium on Radiation Processes in the |
| Atmosphere and Ocean (IRS), Free Univ Berlin, Berlin, GERMANY, AUG 06-10, |
| 2012. |
| [ <a href="http://dx.doi.org/10.1063/1.4804904">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000326017600011">72</a>] | [<a name="WOS:000311557300013">848</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Wilbert, B. Reinhardt, J. DeVore, M. Roeger, R. Pitz-Paal, C. Gueymard, and | James F. Bramante, Durairaju Kumaran Raju, and Tsai Min Sin. |
R. Buras. | <b>Multispectral derivation of bathymetry in Singapore's shallow, |
<b>Measurement of Solar Radiance Profiles With the Sun and Aureole | turbid waters</b>. |
Measurement System</b>. | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 34(6):2070-2088, |
<em>JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME</em>, | 2013. |
135(4), NOV 2013. | [ <a href="http://dx.doi.org/10.1080/01431161.2012.734934">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1115/1.4024244">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000315368500019">73</a>] | [<a name="WOS:000308111000009">849</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. T. Wilson. | Pablo Salvador, Abel Calle, Julia Sanz, Javier Rodriguez, and Jose-Luis |
<b>Py6S: A Python interface to the 6S radiative transfer model</b>. | Casanova. |
<em>COMPUTERS & GEOSCIENCES</em>, 51:166--171, FEB 2013. | <b>An automatic self-learning cloud-filtering algorithm for |
[ <a href="http://dx.doi.org/10.1016/j.cageo.2012.08.002">DOI</a> ] | Meteosat Second Generation-Spinning Enhanced Visible and Infrared Imager</b>. |
| <em>REMOTE SENSING LETTERS</em>, 4(2):180-189, 2013. |
| [ <a href="http://dx.doi.org/10.1080/2150704X.2012.714086">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000313365100022">74</a>] | [<a name="WOS:000311844500001">850</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ping Yang, Lei Bi, Bryan A. Baum, Kuo-Nan Liou, George W. Kattawar, Michael I. | E. Gerasopoulos, S. Kazadzis, M. Vrekoussis, G. Kouvarakis, E. Liakakou, |
Mishchenko, and Benjamin Cole. | N. Kouremeti, D. Giannadaki, M. Kanakidou, B. Bohn, and N. Mihalopoulos. |
<b>Spectrally Consistent Scattering, Absorption, and Polarization | <b>Factors affecting O<sub>3</sub> and NO<sub>2</sub> photolysis |
Properties of Atmospheric Ice Crystals at Wavelengths from 0.2 to 100 mu m</b>. | frequencies measured in the eastern Mediterranean during the five-year period |
<em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 70(1):330--347, | 2002-2006</b>. |
JAN 2013. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, NOV 28 2012. |
[ <a href="http://dx.doi.org/10.1175/JAS-D-12-039.1">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2012JD017622">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000325283800009">75</a>] | [<a name="WOS:000309520500013">851</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. von Hobe, S. Bekki, S. Borrmann, F. Cairo, F. D'Amato, G. Di Donfrancesco, | Hajime Kawahara, Taro Matsuo, Michihiro Takami, Yuka Fujii, Takayuki Kotani, |
A. Doernbrack, A. Ebersoldt, M. Ebert, C. Emde, I. Engel, M. Ern, W. Frey, | Naoshi Murakami, Motohide Tamura, and Olivier Guyon. |
S. Genco, S. Griessbach, J. U. Grooss, T. Gulde, G. Guenther, E. Hoesen, | <b>CAN GROUND-BASED TELESCOPES DETECT THE OXYGEN 1.27μm ABSORPTION |
L. Hoffmann, V. Homonnai, C. R. Hoyle, I. S. A. Isaksen, D. R. Jackson, I. M. | FEATURE AS A BIOMARKER IN EXOPLANETS?</b> |
Janosi, R. L. Jones, K. Kandler, C. Kalicinsky, A. Keil, S. M. Khaykin, | <em>ASTROPHYSICAL JOURNAL</em>, 758(1), OCT 10 2012. |
F. Khosrawi, R. Kivi, J. Kuttippurath, J. C. Laube, F. Lefevre, R. Lehmann, | [ <a href="http://dx.doi.org/10.1088/0004-637X/758/1/13">DOI</a> ] |
S. Ludmann, B. P. Luo, M. Marchand, J. Meyer, V. Mitev, S. Molleker, | |
R. Mueller, H. Oelhaf, F. Olschewski, Y. Orsolini, T. Peter, K. Pfeilsticker, | |
C. Piesch, M. C. Pitts, L. R. Poole, F. D. Pope, F. Ravegnani, M. Rex, | |
M. Riese, T. Roeckmann, B. Rognerud, A. Roiger, C. Rolf, M. L. Santee, | |
M. Scheibe, C. Schiller, H. Schlager, M. Siciliani de Cumis, N. Sitnikov, | |
O. A. Sovde, R. Spang, N. Spelten, F. Stordal, O. Suminska-Ebersoldt, | |
A. Ulanovski, J. Ungermann, S. Viciani, C. M. Volk, M. vom Scheidt, | |
P. von der Gathen, K. Walker, T. Wegner, R. Weigel, S. Weinbruch, G. Wetzel, | |
F. G. Wienhold, I. Wohltmann, W. Woiwode, I. A. K. Young, V. Yushkov, | |
B. Zobrist, and F. Stroh. | |
<b>Reconciliation of essential process parameters for an enhanced | |
predictability of Arctic stratospheric ozone loss and its climate | |
interactions (RECONCILE): activities and results</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 13(18):9233--9268, | |
2013. | |
[ <a href="http://dx.doi.org/10.5194/acp-13-9233-2013">DOI</a> ] | |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2012</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000309331100009">1</a>] | [<a name="WOS:000309331100009">852</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Mikhail D. Alexandrov, Brian Cairns, Claudia Emde, Andrew S. Ackerman, and | Mikhail D. Alexandrov, Brian Cairns, Claudia Emde, Andrew S. Ackerman, and |
Bastiaan van Diedenhoven. | Bastiaan van Diedenhoven. |
<b>Accuracy assessments of cloud droplet size retrievals from | <b>Accuracy assessments of cloud droplet size retrievals from |
polarized reflectance measurements by the research scanning polarimeter</b>. | polarized reflectance measurements by the research scanning polarimeter</b>. |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 125:92--111, OCT 2012. | <em>REMOTE SENSING OF ENVIRONMENT</em>, 125:92-111, OCT 2012. |
[ <a href="http://dx.doi.org/10.1016/j.rse.2012.07.012">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.rse.2012.07.012">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000312665300030">2</a>] | [<a name="WOS:000306719100004">853</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anton, L. Alados-Arboledas, J. L. Guerrero-Rascado, M. J. Costa, J. C. Chiu, | A. de Meij, A. Pozzer, K. J. Pringle, H. Tost, and J. Lelieveld. |
and F. J. Olmo. | <b>EMAC model evaluation and analysis of atmospheric aerosol |
<b>Experimental and modeled UV erythemal irradiance under overcast | properties and distribution with a focus on the Mediterranean region</b>. |
conditions: the role of cloud optical depth</b>. | <em>ATMOSPHERIC RESEARCH</em>, 114:38-69, OCT 1 2012. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(23):11723--11732, | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2012.05.014">DOI</a> ] |
2012. | |
[ <a href="http://dx.doi.org/10.5194/acp-12-11723-2012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000300821000001">3</a>] | [<a name="WOS:000307615000013">854</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anton, M. Sorribas, Y. Bennouna, J. M. Vilaplana, V. E. Cachorro, | Andre Hollstein. |
J. Groebner, and L. Alados-Arboledas. | <b>Verification of radiative transfer results by inserting them |
<b>Effects of an extreme desert dust event on the spectral | into the RTE: A demonstration for Rayleigh scattering</b>. |
ultraviolet irradiance at El Arenosillo (Spain)</b>. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, FEB 14 | 113(15):1970-1973, OCT 2012. |
| [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2012.06.006">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000309416800006">855</a>] |
| </td> |
| <td> |
| Samuel E. LeBlanc, K. S. Schmidt, P. Pilewskie, J. Redemann, C. Hostetler, |
| R. Ferrare, J. Hair, J. M. Langridge, and D. A. Lack. |
| <b>Spectral aerosol direct radiative forcing from airborne |
| radiative measurements during CalNex and ARCTAS</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, SEP 25 2012. |
| [ <a href="http://dx.doi.org/10.1029/2012JD018106">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000309079800053">856</a>] |
| </td> |
| <td> |
| Daryl R. Myers. |
| <b>Direct beam and hemispherical terrestrial solar spectral |
| distributions derived from broadband hourly solar radiation data</b>. |
| <em>SOLAR ENERGY</em>, 86(9):2771-2782, SEP 2012. |
| [ <a href="http://dx.doi.org/10.1016/j.solener.2012.06.014">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000308319100001">857</a>] |
| </td> |
| <td> |
| H. Lindqvist, K. Muinonen, T. Nousiainen, J. Um, G. M. McFarquhar, |
| P. Haapanala, R. Makkonen, and H. Hakkarainen. |
| <b>Ice-cloud particle habit classification using principal |
| components</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, AUG 28 2012. |
| [ <a href="http://dx.doi.org/10.1029/2012JD017573">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000308909400001">858</a>] |
| </td> |
| <td> |
| Oscar Perpinan Lamigueiro. |
| <b>solaR: Solar Radiation and Photovoltaic Systems with R</b>. |
| <em>JOURNAL OF STATISTICAL SOFTWARE</em>, 50(9):1-32, AUG 2012. |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000306089600011">859</a>] |
| </td> |
| <td> |
| Linda Forster, Claudia Emde, Bernhard Mayer, and Simon Unterstrasser. |
| <b>Effects of Three-Dimensional Photon Transport on the Radiative |
| Forcing of Realistic Contrails</b>. |
| <em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 69(7):2243-2255, JUL |
2012. | 2012. |
[ <a href="http://dx.doi.org/10.1029/2011JD016645">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/JAS-D-11-0206.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000304005700002">4</a>] | [<a name="WOS:000306769200014">860</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Rajan K. Chakrabarty, Mark A. Garro, Eric M. Wilcox, and Hans Moosmueller. | U. Schumann, B. Mayer, K. Graf, and H. Mannstein. |
<b>Strong radiative heating due to wintertime black carbon | <b>A Parametric Radiative Forcing Model for Contrail Cirrus</b>. |
aerosols in the Brahmaputra River Valley</b>. | <em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, |
<em>GEOPHYSICAL RESEARCH LETTERS</em>, 39, MAY 9 2012. | 51(7):1391-1406, JUL 2012. |
[ <a href="http://dx.doi.org/10.1029/2012GL051148">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/JAMC-D-11-0242.1">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000304772800004">861</a>] |
| </td> |
| <td> |
| Ben Kravitz, Douglas G. MacMartin, and Ken Caldeira. |
| <b>Geoengineering: Whiter skies?</b> |
| <em>GEOPHYSICAL RESEARCH LETTERS</em>, 39, JUN 1 2012. |
| [ <a href="http://dx.doi.org/10.1029/2012GL051652">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000303300000004">5</a>] | [<a name="WOS:000303300000004">862</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Drusch, U. Del Bello, S. Carlier, O. Colin, V. Fernandez, F. Gascon, | M. Drusch, U. Del Bello, S. Carlier, O. Colin, V. Fernandez, F. Gascon, |
B. Hoersch, C. Isola, P. Laberinti, P. Martimort, A. Meygret, F. Spoto, | B. Hoersch, C. Isola, P. Laberinti, P. Martimort, A. Meygret, F. Spoto, |
<b>Sentinel-2: ESA's Optical High-Resolution Mission for GMES | <b>Sentinel-2: ESA's Optical High-Resolution Mission for GMES |
Operational Services</b>. | Operational Services</b>. |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 120(SI):25--36, MAY 15 | <em>REMOTE SENSING OF ENVIRONMENT</em>, 120(SI):25-36, MAY 15 2012. |
2012. | |
[ <a href="http://dx.doi.org/10.1016/j.rse.2011.11.026">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.rse.2011.11.026">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000302806700022">6</a>] | [<a name="WOS:000304005700002">863</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Ehrlich, E. Bierwirth, M. Wendisch, A. Herber, and J. F. Gayet. | Rajan K. Chakrabarty, Mark A. Garro, Eric M. Wilcox, and Hans Moosmueller. |
<b>Airborne hyperspectral observations of surface and cloud | <b>Strong radiative heating due to wintertime black carbon aerosols |
directional reflectivity using a commercial digital camera</b>. | in the Brahmaputra River Valley</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(7):3493--3510, | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 39, MAY 9 2012. |
2012. | [ <a href="http://dx.doi.org/10.1029/2012GL051148">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-12-3493-2012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000306089600011">7</a>] | [<a name="WOS:000303122600004">864</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Linda Forster, Claudia Emde, Bernhard Mayer, and Simon Unterstrasser. | Paivi Haapanala, Petri Raisanen, Michael Kahnert, and Timo Nousiainen. |
<b>Effects of Three-Dimensional Photon Transport on the Radiative | <b>Sensitivity of the shortwave radiative effect of dust on |
Forcing of Realistic Contrails</b>. | particle shape: Comparison of spheres and spheroids</b>. |
<em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 69(7):2243--2255, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, APR 17 2012. |
JUL 2012. | [ <a href="http://dx.doi.org/10.1029/2011JD017216">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1175/JAS-D-11-0206.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000311844500001">8</a>] | [<a name="WOS:000302528500006">865</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
E. Gerasopoulos, S. Kazadzis, M. Vrekoussis, G. Kouvarakis, E. Liakakou, | S. Romakkaniemi, A. Arola, H. Kokkola, W. Birmili, T. Tuch, V. M. Kerminen, |
N. Kouremeti, D. Giannadaki, M. Kanakidou, B. Bohn, and N. Mihalopoulos. | P. Raisanen, J. N. Smith, H. Korhonen, and A. Laaksonen. |
<b>Factors affecting O-3 and NO2 photolysis frequencies measured | <b>Effect of aerosol size distribution changes on AOD, CCN and |
in the eastern Mediterranean during the five-year period 2002-2006</b>. | cloud droplet concentration: Case studies from Erfurt and Melpitz, Germany</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, NOV 28 | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, APR 4 2012. |
2012. | [ <a href="http://dx.doi.org/10.1029/2011JD017091">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1029/2012JD017622">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000301136900018">9</a>] | [<a name="WOS:000301136900018">866</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Julian Groebner. | Julian Groebner. |
<b>A transfer standard radiometer for atmospheric longwave | <b>A transfer standard radiometer for atmospheric longwave |
irradiance measurements</b>. | irradiance measurements</b>. |
<em>METROLOGIA</em>, 49(2):S105--S111, APR 2012. | <em>METROLOGIA</em>, 49(2):S105-S111, APR 2012. |
11th International Conference on New Developments and Applications | 11th International Conference on New Developments and Applications in |
in Optical Radiometry (NEWARD), HI, SEP 18-23, 2011. | Optical Radiometry (NEWARD), HI, SEP 18-23, 2011. |
[ <a href="http://dx.doi.org/10.1088/0026-1394/49/2/S105">DOI</a> ] | [ <a href="http://dx.doi.org/10.1088/0026-1394/49/2/S105">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000303122600004">10</a>] | [<a name="WOS:000301941500002">867</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Paivi Haapanala, Petri Raisanen, Michael Kahnert, and Timo Nousiainen. | David Painemal and Patrick Minnis. |
<b>Sensitivity of the shortwave radiative effect of dust on | <b>On the dependence of albedo on cloud microphysics over marine |
particle shape: Comparison of spheres and spheroids</b>. | stratocumulus clouds regimes determined from Clouds and the Earth's Radiant |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, APR 17 | Energy System (CERES) data</b>. |
2012. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, MAR 20 2012. |
[ <a href="http://dx.doi.org/10.1029/2011JD017216">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2011JD017120">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000307615000013">11</a>] | [<a name="WOS:000301347500004">868</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Andre Hollstein. | P. Rannou, S. Le Mouelic, C. Sotin, and R. H. Brown. |
<b>Verification of radiative transfer results by inserting them | <b>CLOUD AND HAZE IN THE WINTER POLAR REGION OF TITAN OBSERVED WITH |
into the RTE: A demonstration for Rayleigh scattering</b>. | VISUAL AND INFRARED MAPPING SPECTROMETER ON BOARD <i>CASSINI</i></b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>ASTROPHYSICAL JOURNAL</em>, 748(1), MAR 20 2012. |
113(15):1970--1973, OCT 2012. | [ <a href="http://dx.doi.org/10.1088/0004-637X/748/1/4">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2012.06.006">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000312411300022">12</a>] | [<a name="WOS:000300517700018">869</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
B. J. Jonkheid, R. A. Roebeling, and E. van Meijgaard. | R. Posselt, R. W. Mueller, R. Stoeckli, and J. Trentmann. |
<b>A fast SEVIRI simulator for quantifying retrieval uncertainties | <b>Remote sensing of solar surface radiation for climate monitoring |
in the CM SAF cloud physical property algorithm</b>. | - the CM-SAF retrieval in international comparison</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(22):10957--10969, | <em>REMOTE SENSING OF ENVIRONMENT</em>, 118:186-198, MAR 15 2012. |
2012. | [ <a href="http://dx.doi.org/10.1016/j.rse.2011.11.016">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-12-10957-2012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000309520500013">13</a>] | [<a name="WOS:000306756900004">870</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Hajime Kawahara, Taro Matsuo, Michihiro Takami, Yuka Fujii, Takayuki Kotani, | Richard Mueller, Tanja Behrendt, Annette Hammer, and Axel Kemper. |
Naoshi Murakami, Motohide Tamura, and Olivier Guyon. | <b>A New Algorithm for the Satellite-Based Retrieval of Solar |
<b>CAN GROUND-BASED TELESCOPES DETECT THE OXYGEN 1.27 mu m | Surface Irradiance in Spectral Bands</b>. |
ABSORPTION FEATURE AS A BIOMARKER IN EXOPLANETS?</b> | <em>REMOTE SENSING</em>, 4(3):622-647, MAR 2012. |
<em>ASTROPHYSICAL JOURNAL</em>, 758(1), OCT 10 2012. | [ <a href="http://dx.doi.org/10.3390/rs4030622">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1088/0004-637X/758/1/13">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000304772800004">14</a>] | [<a name="WOS:000300724300027">871</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ben Kravitz, Douglas G. MacMartin, and Ken Caldeira. | Pasquale Sellitto, Fabio Del Frate, Domenico Solimini, and Stefano Casadio. |
<b>Geoengineering: Whiter skies?</b> | <b>Tropospheric Ozone Column Retrieval From ESA-Envisat SCIAMACHY |
<em>GEOPHYSICAL RESEARCH LETTERS</em>, 39, JUN 1 2012. | Nadir UV/VIS Radiance Measurements by Means of a Neural Network Algorithm</b>. |
[ <a href="http://dx.doi.org/10.1029/2012GL051652">DOI</a> ] | <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, |
| 50(3):998-1011, MAR 2012. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2011.2163198">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000300483200010">15</a>] | [<a name="WOS:000420911700003">872</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Stephane Le Mouelic, Pascal Rannou, Sebastien Rodriguez, Christophe Sotin, | R. D. Garcia, V. E. Cachorro, E. Cuevas, A. Redondas, A. M. de Frutos, and |
Caitlin A. Griffith, Lucille Le Corre, Jason W. Barnes, Robert H. Brown, | A. Berjon. |
Kevin H. Baines, Bonnie J. Buratti, Roger N. Clark, Philip D. Nicholson, and | <b>Comparison of measured and modeled UV spectral irradiance at the |
Gabriel Tobie. | Izana station based on LibRadtran and UVA-GOA models</b>. |
<b>Dissipation of Titan's north polar cloud at northern spring | <em>OPTICA PURA Y APLICADA</em>, 45(1):11-15, MAR 2012. |
equinox</b>. | [ <a href="http://dx.doi.org/10.7149/OPA.45.1.11">DOI</a> ] |
<em>PLANETARY AND SPACE SCIENCE</em>, 60(1):86--92, JAN | |
2012. | |
Titan Through Time-A Workshop on Titans Formation, Evolution and | |
Fate, MD, APR 06-08, 2010. | |
[ <a href="http://dx.doi.org/10.1016/j.pss.2011.04.006">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000309416800006">16</a>] | [<a name="WOS:000300821000001">873</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Samuel E. LeBlanc, K. S. Schmidt, P. Pilewskie, J. Redemann, C. Hostetler, | M. Anton, M. Sorribas, Y. Bennouna, J. M. Vilaplana, V. E. Cachorro, |
R. Ferrare, J. Hair, J. M. Langridge, and D. A. Lack. | J. Groebner, and L. Alados-Arboledas. |
<b>Spectral aerosol direct radiative forcing from airborne | <b>Effects of an extreme desert dust event on the spectral |
radiative measurements during CalNex and ARCTAS</b>. | ultraviolet irradiance at El Arenosillo (Spain)</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, SEP 25 | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, FEB 14 2012. |
2012. | [ <a href="http://dx.doi.org/10.1029/2011JD016645">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1029/2012JD018106">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000308287000022">17</a>] | [<a name="WOS:000299702900001">874</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Lee, J. Kim, P. Yang, and N. C. Hsu. | Manuel Nunez, M. Pilar Utrillas, and Jose A. Martinez-Lozano. |
<b>Improvement of aerosol optical depth retrieval from MODIS | <b>Approaches to partitioning the global UVER irradiance into its |
spectral reflectance over the global ocean using new aerosol models archived | direct and diffuse components in Valencia, Spain</b>. |
from AERONET inversion data and tri-axial ellipsoidal dust database</b>. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, JAN 27 2012. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(15):7087--7102, | [ <a href="http://dx.doi.org/10.1029/2011JD016087">DOI</a> ] |
2012. | |
[ <a href="http://dx.doi.org/10.5194/acp-12-7087-2012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000314418900001">18</a>] | [<a name="WOS:000314418900001">875</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Giorgio Antonino Licciardi, Muhammad Murtaza Khan, Jocelyn Chanussot, Annick | Giorgio Antonino Licciardi, Muhammad Murtaza Khan, Jocelyn Chanussot, Annick |
Montanvert, Laurent Condat, and Christian Jutten. | Montanvert, Laurent Condat, and Christian Jutten. |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000308319100001">19</a>] | [<a name="WOS:000312411300022">876</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
H. Lindqvist, K. Muinonen, T. Nousiainen, J. Um, G. M. McFarquhar, | B. J. Jonkheid, R. A. Roebeling, and E. van Meijgaard. |
P. Haapanala, R. Makkonen, and H. Hakkarainen. | <b>A fast SEVIRI simulator for quantifying retrieval uncertainties |
<b>Ice-cloud particle habit classification using principal | in the CM SAF cloud physical property algorithm</b>. |
components</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(22):10957-10969, 2012. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, AUG 28 | [ <a href="http://dx.doi.org/10.5194/acp-12-10957-2012">DOI</a> ] |
2012. | |
[ <a href="http://dx.doi.org/10.1029/2012JD017573">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000308288400014">20</a>] | [<a name="WOS:000308288400011">877</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| R. Roman, M. Anton, A. Cazorla, A. de Miguel, F. J. Olmo, J. Bilbao, and |
| L. Alados-Arboledas. |
| <b>Calibration of an all-sky camera for obtaining sky radiance at |
| three wavelengths</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 5(8):2013-2024, 2012. |
| [ <a href="http://dx.doi.org/10.5194/amt-5-2013-2012">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000308288400014">878</a>] |
| </td> |
| <td> |
A. Merlaud, M. Van Roozendael, J. van Gent, C. Fayt, J. Maes, | A. Merlaud, M. Van Roozendael, J. van Gent, C. Fayt, J. Maes, |
X. Toledo-Fuentes, O. Ronveaux, and M. De Maziere. | X. Toledo-Fuentes, O. Ronveaux, and M. De Maziere. |
<b>DOAS measurements of NO2 from an ultralight aircraft during the | <b>DOAS measurements of NO<sub>2</sub> from an ultralight aircraft |
Earth Challenge expedition</b>. | during the Earth Challenge expedition</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 5(8):2057--2068, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 5(8):2057-2068, 2012. |
2012. | |
[ <a href="http://dx.doi.org/10.5194/amt-5-2057-2012">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/amt-5-2057-2012">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000306756900004">21</a>] | [<a name="WOS:000308287000022">879</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Richard Mueller, Tanja Behrendt, Annette Hammer, and Axel Kemper. | J. Lee, J. Kim, P. Yang, and N. C. Hsu. |
<b>A New Algorithm for the Satellite-Based Retrieval of Solar | <b>Improvement of aerosol optical depth retrieval from MODIS |
Surface Irradiance in Spectral Bands</b>. | spectral reflectance over the global ocean using new aerosol models archived |
<em>REMOTE SENSING</em>, 4(3):622--647, MAR 2012. | from AERONET inversion data and tri-axial ellipsoidal dust database</b>. |
[ <a href="http://dx.doi.org/10.3390/rs4030622">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(15):7087-7102, 2012. |
| [ <a href="http://dx.doi.org/10.5194/acp-12-7087-2012">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000309079800053">22</a>] | [<a name="WOS:000307418600010">880</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Daryl R. Myers. | Bernadett Weinzierl, Daniel Sauer, Andreas Minikin, Oliver Reitebuch, Florian |
<b>Direct beam and hemispherical terrestrial solar spectral | Dahlkoetter, Bernhard Mayer, Claudia Emde, Ina Tegen, Josef Gasteiger, |
distributions derived from broadband hourly solar radiation data</b>. | Andreas Petzold, Andreas Veira, Ulrich Kueppers, and Ulrich Schumann. |
<em>SOLAR ENERGY</em>, 86(9):2771--2782, SEP 2012. | <b>On the visibility of airborne volcanic ash and mineral dust from |
[ <a href="http://dx.doi.org/10.1016/j.solener.2012.06.014">DOI</a> ] | the pilot's perspective in flight</b>. |
| <em>PHYSICS AND CHEMISTRY OF THE EARTH</em>, 45-46:87-102, 2012. |
| [ <a href="http://dx.doi.org/10.1016/j.pce.2012.04.003">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000299702900001">23</a>] | [<a name="WOS:000304061200001">881</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Manuel Nunez, M. Pilar Utrillas, and Jose A. Martinez-Lozano. | U. Schumann. |
<b>Approaches to partitioning the global UVER irradiance into its | <b>A contrail cirrus prediction model</b>. |
direct and diffuse components in Valencia, Spain</b>. | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 5(3):543-580, 2012. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, JAN 27 | [ <a href="http://dx.doi.org/10.5194/gmd-5-543-2012">DOI</a> ] |
2012. | |
[ <a href="http://dx.doi.org/10.1029/2011JD016087">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000301941500002">24</a>] | [<a name="WOS:000302806700022">882</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
David Painemal and Patrick Minnis. | A. Ehrlich, E. Bierwirth, M. Wendisch, A. Herber, and J. F. Gayet. |
<b>On the dependence of albedo on cloud microphysics over marine | <b>Airborne hyperspectral observations of surface and cloud |
stratocumulus clouds regimes determined from Clouds and the Earth's Radiant | directional reflectivity using a commercial digital camera</b>. |
Energy System (CERES) data</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(7):3493-3510, 2012. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, MAR 20 | [ <a href="http://dx.doi.org/10.5194/acp-12-3493-2012">DOI</a> ] |
2012. | |
[ <a href="http://dx.doi.org/10.1029/2011JD017120">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000306975500002">25</a>] | [<a name="WOS:000300656500009">883</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. V. Panchenko, T. B. Zhuravleva, S. A. Terpugova, V. V. Polkin, and V. S. | O. Suminska-Ebersoldt, R. Lehmann, T. Wegner, J-U Grooss, E. Hoesen, R. Weigel, |
Kozlov. | W. Frey, S. Griessbach, V. Mitev, C. Emde, C. M. Volk, S. Borrmann, M. Rex, |
<b>An empirical model of optical and radiative characteristics of | F. Stroh, and M. von Hobe. |
the tropospheric aerosol over West Siberia in summer</b>. | <b>ClOOCl photolysis at high solar zenith angles: analysis of the |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 5(7):1513--1527, | RECONCILE self-match flight</b>. |
2012. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(3):1353-1365, 2012. |
[ <a href="http://dx.doi.org/10.5194/amt-5-1513-2012">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-12-1353-2012">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000308909400001">26</a>] | [<a name="WOS:000300483200010">884</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Oscar Perpinan Lamigueiro. | Stephane Le Mouelic, Pascal Rannou, Sebastien Rodriguez, Christophe Sotin, |
<b>solaR: Solar Radiation and Photovoltaic Systems with R</b>. | Caitlin A. Griffith, Lucille Le Corre, Jason W. Barnes, Robert H. Brown, |
<em>JOURNAL OF STATISTICAL SOFTWARE</em>, 50(9):1--32, AUG | Kevin H. Baines, Bonnie J. Buratti, Roger N. Clark, Philip D. Nicholson, and |
2012. | Gabriel Tobie. |
| <b>Dissipation of Titan's north polar cloud at northern spring |
| equinox</b>. |
| <em>PLANETARY AND SPACE SCIENCE</em>, 60(1):86-92, JAN 2012. |
| Titan Through Time-A Workshop on Titans Formation, Evolution and |
| Fate, MD, APR 06-08, 2010. |
| [ <a href="http://dx.doi.org/10.1016/j.pss.2011.04.006">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000300517700018">27</a>] | [<a name="WOS:000298740400028">885</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. Posselt, R. W. Mueller, R. Stoeckli, and J. Trentmann. | Gunther Seckmeyer, Marcus Klingebiel, Stefan Riechelmann, Insa Lohse, |
<b>Remote sensing of solar surface radiation for climate | Richard L. McKenzie, J. Ben Liley, Martin W. Allen, Anna-Maria Siani, and |
monitoring - the CM-SAF retrieval in international comparison</b>. | Giuseppe R. Casale. |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 118:186--198, MAR 15 | <b>A Critical Assessment of Two Types of Personal UV Dosimeters</b>. |
2012. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 88(1):215-222, JAN-FEB 2012. |
[ <a href="http://dx.doi.org/10.1016/j.rse.2011.11.016">DOI</a> ] | [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2011.01018.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000300321500023">28</a>] | [<a name="WOS:000433695900013">886</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Huo Juan and Lu Da-Ren. |
| <b>Characteristics of Solar Radiation and the Impact of Clouds at |
| Yangbajing, Tibet</b>. |
| <em>ATMOSPHERIC AND OCEANIC SCIENCE LETTERS</em>, 5(3):235-239, 2012. |
| [ <a href="http://dx.doi.org/10.1080/16742834.2012.11446994">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000300321500023">887</a>] |
| </td> |
| <td> |
A. Pozzer, A. de Meij, K. J. Pringle, H. Tost, U. M. Doering, J. van Aardenne, | A. Pozzer, A. de Meij, K. J. Pringle, H. Tost, U. M. Doering, J. van Aardenne, |
and J. Lelieveld. | and J. Lelieveld. |
<b>Distributions and regional budgets of aerosols and their | <b>Distributions and regional budgets of aerosols and their |
precursors simulated with the EMAC chemistry-climate model</b>. | precursors simulated with the EMAC chemistry-climate model</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(2):961--987, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(2):961-987, 2012. |
2012. | |
[ <a href="http://dx.doi.org/10.5194/acp-12-961-2012">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-12-961-2012">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000301347500004">29</a>] | [<a name="WOS:000301547500004">888</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Rannou, S. Le Mouelic, C. Sotin, and R. H. Brown. | P. Weihs, J. E. Wagner, S. F. Schreier, H. E. Rieder, F. Angelini, |
<b>CLOUD AND HAZE IN THE WINTER POLAR REGION OF TITAN OBSERVED | M. Blumthaler, M. Fitzka, G. P. Gobbi, R. Kift, A. Kreuter, S. Simic, and |
WITH VISUAL AND INFRARED MAPPING SPECTROMETER ON BOARD CASSINI</b>. | A. R. Webb. |
<em>ASTROPHYSICAL JOURNAL</em>, 748(1), MAR 20 2012. | <b>The influence of the spatial resolution of topographic input |
[ <a href="http://dx.doi.org/10.1088/0004-637X/748/1/4">DOI</a> ] | data on the accuracy of 3-D UV actinic flux and irradiance calculations</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(5):2297-2312, 2012. |
| [ <a href="http://dx.doi.org/10.5194/acp-12-2297-2012">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000302528500006">30</a>] | [<a name="WOS:000301547500014">889</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Romakkaniemi, A. Arola, H. Kokkola, W. Birmili, T. Tuch, V. M. Kerminen, | C. S. Zerefos, K. Tourpali, K. Eleftheratos, S. Kazadzis, C. Meleti, |
P. Raisanen, J. N. Smith, H. Korhonen, and A. Laaksonen. | U. Feister, T. Koskela, and A. Heikkila. |
<b>Effect of aerosol size distribution changes on AOD, CCN and | <b>Evidence of a possible turning point in solar UV-B over Canada, |
cloud droplet concentration: Case studies from Erfurt and Melpitz, Germany</b>. | Europe and Japan</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 117, APR 4 | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(5):2469-2477, 2012. |
2012. | [ <a href="http://dx.doi.org/10.5194/acp-12-2469-2012">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1029/2011JD017091">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000308288400011">31</a>] | [<a name="WOS:000312665300030">890</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. Roman, M. Anton, A. Cazorla, A. de Miguel, F. J. Olmo, J. Bilbao, and | M. Anton, L. Alados-Arboledas, J. L. Guerrero-Rascado, M. J. Costa, J. C. Chiu, |
L. Alados-Arboledas. | and F. J. Olmo. |
<b>Calibration of an all-sky camera for obtaining sky radiance at | <b>Experimental and modeled UV erythemal irradiance under overcast |
three wavelengths</b>. | conditions: the role of cloud optical depth</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 5(8):2013--2024, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(23):11723-11732, 2012. |
2012. | [ <a href="http://dx.doi.org/10.5194/acp-12-11723-2012">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/amt-5-2013-2012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000304061200001">32</a>] | [<a name="WOS:000306975500002">891</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
U. Schumann. | M. V. Panchenko, T. B. Zhuravleva, S. A. Terpugova, V. V. Polkin, and V. S. |
<b>A contrail cirrus prediction model</b>. | Kozlov. |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 5(3):543--580, 2012. | <b>An empirical model of optical and radiative characteristics of |
[ <a href="http://dx.doi.org/10.5194/gmd-5-543-2012">DOI</a> ] | the tropospheric aerosol over West Siberia in summer</b>. |
| <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 5(7):1513-1527, 2012. |
| [ <a href="http://dx.doi.org/10.5194/amt-5-1513-2012">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000306769200014">33</a>] | [<a name="WOS:000334268400013">892</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
U. Schumann, B. Mayer, K. Graf, and H. Mannstein. | E. Lorenz and D. Heinemann. |
<b>A Parametric Radiative Forcing Model for Contrail Cirrus</b>. | <b>Prediction of Solar Irradiance and Photovoltaic Power</b>. |
<em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, | In WGJHM VanSark and A Sayigh, editors, <em>COMPREHENSIVE RENEWABLE |
51(7):1391--1406, JUL 2012. | ENERGY, VOL 1: PHOTOVOLTAIC SOLAR ENERGY</em>, pages 239-292. 2012. |
[ <a href="http://dx.doi.org/10.1175/JAMC-D-11-0242.1">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/B978-0-08-087872-0.00114-1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000298740400028">34</a>] | [<a name="WOS:000334320500002">893</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Gunther Seckmeyer, Marcus Klingebiel, Stefan Riechelmann, Insa Lohse, | H. D. Kambezidis. |
Richard L. McKenzie, J. Ben Liley, Martin W. Allen, Anna-Maria Siani, and | <b>The Solar Resource</b>. |
Giuseppe R. Casale. | In A Sayigh, editor, <em>COMPREHENSIVE RENEWABLE ENERGY, VOL 3: |
<b>A Critical Assessment of Two Types of Personal UV Dosimeters</b>. | SOLAR THERMAL SYSTEMS: COMPONENTS AND APPLICATIONS</em>, pages 27-84. 2012. |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 88(1):215--222, | [ <a href="http://dx.doi.org/10.1016/B978-0-08-087872-0.00302-4">DOI</a> ] |
JAN-FEB 2012. | |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2011.01018.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000300724300027">35</a>] | [<a name="WOS:000340342400001">894</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Pasquale Sellitto, Fabio Del Frate, Domenico Solimini, and Stefano Casadio. | <b>RES Programme Context</b>. |
<b>Tropospheric Ozone Column Retrieval From ESA-Envisat SCIAMACHY | In <em>SENTINEL-2: ESA'S OPTICAL HIGH-RESOLUTION MISSION FOR GMES |
Nadir UV/VIS Radiance Measurements by Means of a Neural Network Algorithm</b>. | OPERATIONAL SERVICES</em>, volume 1322 of <em>ESA Special Publications</em>, |
<em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, | pages 5+. 2012. |
50(3):998--1011, MAR 2012. | |
[ <a href="http://dx.doi.org/10.1109/TGRS.2011.2163198">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000300656500009">36</a>] | [<a name="WOS:000298747600001">895</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
O. Suminska-Ebersoldt, R. Lehmann, T. Wegner, J-U Grooss, E. Hoesen, R. Weigel, | David Painemal and Paquita Zuidema. |
W. Frey, S. Griessbach, V. Mitev, C. Emde, C. M. Volk, S. Borrmann, M. Rex, | <b>Assessment of MODIS cloud effective radius and optical thickness |
F. Stroh, and M. von Hobe. | retrievals over the Southeast Pacific with VOCALS-REx in situ measurements</b>. |
<b>ClOOCl photolysis at high solar zenith angles: analysis of the | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, DEC 30 2011. |
RECONCILE self-match flight</b>. | [ <a href="http://dx.doi.org/10.1029/2011JD016155">DOI</a> ] |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(3):1353--1365, | |
2012. | |
[ <a href="http://dx.doi.org/10.5194/acp-12-1353-2012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000301547500004">37</a>] | [<a name="WOS:000298019500008">896</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Weihs, J. E. Wagner, S. F. Schreier, H. E. Rieder, F. Angelini, | Sebastian W. Huch, C. David Whiteman, and Bernhard Mayer. |
M. Blumthaler, M. Fitzka, G. P. Gobbi, R. Kift, A. Kreuter, S. Simic, and | <b>A Systematic Study of Longwave Radiative Heating and Cooling |
A. R. Webb. | within Valleys and Basins Using a Three-Dimensional Radiative Transfer |
<b>The influence of the spatial resolution of topographic input | Model</b>. |
data on the accuracy of 3-D UV actinic flux and irradiance calculations</b>. | <em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(5):2297--2312, | 50(12):2473-2489, DEC 2011. |
2012. | [ <a href="http://dx.doi.org/10.1175/JAMC-D-11-083.1">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-12-2297-2012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000307418600010">38</a>] | [<a name="WOS:000297896300007">897</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Bernadett Weinzierl, Daniel Sauer, Andreas Minikin, Oliver Reitebuch, Florian | A. Kazantzidis, K. Eleftheratos, and C. S. Zerefos. |
Dahlkoetter, Bernhard Mayer, Claudia Emde, Ina Tegen, Josef Gasteiger, | <b>Effects of cirrus cloudiness on solar irradiance in four |
Andreas Petzold, Andreas Veira, Ulrich Kueppers, and Ulrich Schumann. | spectral bands</b>. |
<b>On the visibility of airborne volcanic ash and mineral dust | <em>ATMOSPHERIC RESEARCH</em>, 102(4):452-459, DEC 2011. |
from the pilot's perspective in flight</b>. | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.09.015">DOI</a> ] |
<em>PHYSICS AND CHEMISTRY OF THE EARTH</em>, 45-46:87--102, | |
2012. | |
[ <a href="http://dx.doi.org/10.1016/j.pce.2012.04.003">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000301547500014">39</a>] | [<a name="WOS:000295387200051">898</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. S. Zerefos, K. Tourpali, K. Eleftheratos, S. Kazadzis, C. Meleti, | S. Janjai, K. Sricharoen, and S. Pattarapanitchai. |
U. Feister, T. Koskela, and A. Heikkila. | <b>Semi-empirical models for the estimation of clear sky solar |
<b>Evidence of a possible turning point in solar UV-B over Canada, | global and direct normal irradiances in the tropics</b>. |
Europe and Japan</b>. | <em>APPLIED ENERGY</em>, 88(12):4749-4755, DEC 2011. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 12(5):2469--2477, | [ <a href="http://dx.doi.org/10.1016/j.apenergy.2011.06.021">DOI</a> ] |
2012. | |
[ <a href="http://dx.doi.org/10.5194/acp-12-2469-2012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000306719100004">40</a>] | [<a name="WOS:000297654100001">899</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. de Meij, A. Pozzer, K. J. Pringle, H. Tost, and J. Lelieveld. | Julia Bilbao, Roberto Roman, Argimiro de Miguel, and David Mateos. |
<b>EMAC model evaluation and analysis of atmospheric aerosol | <b>Long-term solar erythemal UV irradiance data reconstruction in |
properties and distribution with a focus on the Mediterranean region</b>. | Spain using a semiempirical method</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 114:38--69, OCT 1 2012. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, NOV 29 2011. |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2012.05.014">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2011JD015836">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2011</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000297421100002">900</a>] |
| </td> |
| <td> |
| Paivi Mauno, Greg M. McFarquhar, Petri Raisanen, Michael Kahnert, Michael S. |
| Timlin, and Timo Nousiainen. |
| <b>The influence of observed cirrus microphysical properties on |
| shortwave radiation: A case study over Oklahoma</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, NOV 22 2011. |
| [ <a href="http://dx.doi.org/10.1029/2011JD016058">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000292620500004">1</a>] | [<a name="WOS:000297270900002">901</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Vassilis Amiridis, Dimitrios Balis, Eleni Giannakaki, Stylianos Kazadzis, Antti | T. J. Smyth. |
Arola, and Evangelos Gerasopoulos. | <b>Penetration of UV irradiance into the global ocean</b>. |
<b>Characterization of the aerosol type using simultaneous | <em>JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS</em>, 116, NOV 15 2011. |
measurements of the lidar ratio and estimations of the single scattering | [ <a href="http://dx.doi.org/10.1029/2011JC007183">DOI</a> ] |
albedo</b>. | |
<em>ATMOSPHERIC RESEARCH</em>, 101(1-2):46--53, JUL 2011. | |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.01.010">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000288911000008">2</a>] | [<a name="WOS:000298008200002">902</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anton, J. E. Gil, A. Cazorla, J. Fernandez-Galvez, J. M. Vilaplana, F. J. | Donghyun Seo and Moncef Krarti. |
Olmo, and L. Alados-Arboledas. | <b>Hourly Solar Radiation Model Suitable for Worldwide Typical |
<b>Influence of the calibration on experimental UV index at a | Weather File Generation</b>. |
midlatitude site, Granada (Spain)</b>. | <em>JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME</em>, |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 4(3):499--507, | 133(4), NOV 2011. |
2011. | [ <a href="http://dx.doi.org/10.1115/1.4003883">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/amt-4-499-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000288770400008">3</a>] | [<a name="WOS:000296348400027">903</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anton, A. Serrano, M. L. Cancillo, and J. M. Vilaplana. | Katarzyna Baczynska, John B. O'Hagan, Andy J. Pearson, and Paul Eriksen. |
<b>Quality assurance of broadband erythemal radiometers at the | <b>Temperature Correction of UV Spectral Solar Measurements for |
Extremadura UV Monitoring Network (Southwestern Spain)</b>. | ICEPURE Project</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 100(1):83--92, APR 2011. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 87(6):1464-1467, NOV-DEC |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2010.12.029">DOI</a> ] | 2011. |
| [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2011.00981.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000291939100007">4</a>] | [<a name="WOS:000297482300004">904</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
V. Aquila, J. Hendricks, A. Lauer, N. Riemer, H. Vogel, D. Baumgardner, | J. E. Wagner, F. Angelini, M. Blumthaler, M. Fitzka, G. P. Gobbi, R. Kift, |
A. Minikin, A. Petzold, J. P. Schwarz, J. R. Spackman, B. Weinzierl, | A. Kreuter, H. E. Rieder, S. Simic, A. Webb, and P. Weihs. |
M. Righi, and M. Dall'Amico. | <b>Investigation of the 3-D actinic flux field in mountainous |
<b>MADE-in: a new aerosol microphysics submodel for global | terrain</b>. |
simulation of insoluble particles and their mixing state</b>. | <em>ATMOSPHERIC RESEARCH</em>, 102(3):300-310, NOV 2011. |
<em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 4(2):325--355, 2011. | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.07.008">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/gmd-4-325-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000287871200028">5</a>] | [<a name="WOS:000295653500012">905</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Margit Aun, Kalju Eerme, Ilmar Ansko, Uno Veismann, and Silver Latt. | Argimiro de Miguel, David Mateos, Julia Bilbao, and Roberto Roman. |
<b>Modification of Spectral Ultraviolet Doses by Different Types | <b>Sensitivity analysis of ratio between ultraviolet and total |
of Overcast Cloudiness and Atmospheric Aerosol</b>. | shortwave solar radiation to cloudiness, ozone, aerosols and precipitable |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 87(2):461--469, | water</b>. |
MAR-APR 2011. | <em>ATMOSPHERIC RESEARCH</em>, 102(1-2):136-144, OCT 2011. |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2011.00889.x">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.06.019">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000296348400027">6</a>] | [<a name="WOS:000294572600002">906</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Katarzyna Baczynska, John B. O'Hagan, Andy J. Pearson, and Paul Eriksen. | Bingqi Yi, Christine N. Hsu, Ping Yang, and Si-Chee Tsay. |
<b>Temperature Correction of UV Spectral Solar Measurements for | <b>Radiative transfer simulation of dust-like aerosols: |
ICEPURE Project</b>. | Uncertainties from particle shape and refractive index</b>. |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 87(6):1464--1467, | <em>JOURNAL OF AEROSOL SCIENCE</em>, 42(10):631-644, OCT 2011. |
NOV-DEC 2011. | [ <a href="http://dx.doi.org/10.1016/j.jaerosci.2011.06.008">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2011.00981.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000293826500008">7</a>] | [<a name="WOS:000294581100006">907</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. F. Bais, K. Tourpali, A. Kazantzidis, H. Akiyoshi, S. Bekki, P. Braesicke, | S. Simic, M. Fitzka, A. Schmalwieser, P. Weihs, and J. Hadzimustafic. |
M. P. Chipperfield, M. Dameris, V. Eyring, H. Garny, D. Iachetti, P. Joeckel, | <b>Factors affecting UV irradiance at selected wavelengths at Hoher |
A. Kubin, U. Langematz, E. Mancini, M. Michou, O. Morgenstern, T. Nakamura, | Sonnblick</b>. |
P. A. Newman, G. Pitari, D. A. Plummer, E. Rozanov, T. G. Shepherd, | <em>ATMOSPHERIC RESEARCH</em>, 101(4):869-878, SEP 2011. |
K. Shibata, W. Tian, and Y. Yamashita. | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.05.022">DOI</a> ] |
<b>Projections of UV radiation changes in the 21st century: impact | |
of ozone recovery and cloud effects</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(15):7533--7545, | |
2011. | |
[ <a href="http://dx.doi.org/10.5194/acp-11-7533-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000294216700019">8</a>] | [<a name="WOS:000294216700019">908</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Bauer, E. Bierwirth, M. Esselborn, A. Petzold, A. Macke, T. Trautmann, and | S. Bauer, E. Bierwirth, M. Esselborn, A. Petzold, A. Macke, T. Trautmann, and |
M. Wendisch. | M. Wendisch. |
particles</b>. | particles</b>. |
<em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 63(4, | <em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 63(4, |
SI):742--750, SEP 2011. | SI):742-750, SEP 2011. |
[ <a href="http://dx.doi.org/10.1111/j.1600-0889.2011.00567.x">DOI</a> ] | [ <a href="http://dx.doi.org/10.1111/j.1600-0889.2011.00567.x">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000298667600030">9</a>] | [<a name="WOS:000294216700020">909</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Bernhard. | Claas H. Koehler, Thomas Trautmann, Erwin Lindermeir, Willem Vreeling, Kirsten |
<b>Trends of solar ultraviolet irradiance at Barrow, Alaska, and | Lieke, Konrad Kandler, Bernadett Weinzierl, Silke Gross, Matthias Tesche, and |
the effect of measurement uncertainties on trend detection</b>. | Manfred Wendisch. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(24):13029--13045, | <b>Thermal IR radiative properties of mixed mineral dust and |
2011. | biomass aerosol during SAMUM-2</b>. |
[ <a href="http://dx.doi.org/10.5194/acp-11-13029-2011">DOI</a> ] | <em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 63(4, |
| SI):751-769, SEP 2011. |
| [ <a href="http://dx.doi.org/10.1111/j.1600-0889.2011.00563.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000297654100001">10</a>] | [<a name="WOS:000294591800017">910</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Julia Bilbao, Roberto Roman, Argimiro de Miguel, and David Mateos. | David Mateos, Alcide di Sarra, Daniela Meloni, Claudia Di Biagio, and |
<b>Long-term solar erythemal UV irradiance data reconstruction in | Damiano M. Sferlazzo. |
Spain using a semiempirical method</b>. | <b>Experimental determination of cloud influence on the spectral UV |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, NOV 29 | irradiance and implications for biological effects</b>. |
2011. | <em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, |
[ <a href="http://dx.doi.org/10.1029/2011JD015836">DOI</a> ] | 73(13):1739-1746, AUG 2011. |
| [ <a href="http://dx.doi.org/10.1016/j.jastp.2011.04.003">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000291939800005">11</a>] | [<a name="WOS:000293669900026">911</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
L. Bugliaro, T. Zinner, C. Keil, B. Mayer, R. Hollmann, M. Reuter, and | M. R. Perrone and A. Bergamo. |
W. Thomas. | <b>Direct radiative forcing during Sahara dust intrusions at a site |
<b>Validation of cloud property retrievals with simulated | in the Central Mediterranean: Anthropogenic particle contribution</b>. |
satellite radiances: a case study for SEVIRI</b>. | <em>ATMOSPHERIC RESEARCH</em>, 101(3):783-798, AUG 2011. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(12):5603--5624, | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.05.011">DOI</a> ] |
2011. | |
[ <a href="http://dx.doi.org/10.5194/acp-11-5603-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000292661300010">12</a>] | [<a name="WOS:000292661300010">912</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Robert Buras, Timothy Dowling, and Claudia Emde. | Robert Buras, Timothy Dowling, and Claudia Emde. |
<b>New secondary-scattering correction in DISORT with increased | <b>New secondary-scattering correction in DISORT with increased |
efficiency for forward scattering</b>. | efficiency for forward scattering</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
112(12):2028--2034, AUG 2011. | 112(12):2028-2034, AUG 2011. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2011.03.019">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2011.03.019">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000286960000006">13</a>] | [<a name="WOS:000292620500004">913</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Robert Buras and Bernhard Mayer. | Vassilis Amiridis, Dimitrios Balis, Eleni Giannakaki, Stylianos Kazadzis, Antti |
<b>Efficient unbiased variance reduction techniques for Monte | Arola, and Evangelos Gerasopoulos. |
Carlo simulations of radiative transfer in cloudy atmospheres: The | <b>Characterization of the aerosol type using simultaneous |
solution</b>. | measurements of the lidar ratio and estimations of the single scattering |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | albedo</b>. |
112(3):434--447, FEB 2011. | <em>ATMOSPHERIC RESEARCH</em>, 101(1-2):46-53, JUL 2011. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2010.10.005">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.01.010">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000294457700012">14</a>] | [<a name="WOS:000291714600012">914</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
H. Diemoz, A. M. Siani, G. R. Casale, A. di Sarra, B. Serpillo, B. Petkov, | |
S. Scaglione, A. Bonino, S. Facta, F. Fedele, D. Grifoni, L. Verdi, and | |
G. Zipoli. | |
<b>First national intercomparison of solar ultraviolet radiometers | |
in Italy</b>. | |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 4(8):1689--1703, | |
2011. | |
[ <a href="http://dx.doi.org/10.5194/amt-4-1689-2011">DOI</a> ] | |
| |
</td> | |
</tr> | |
| |
| |
<tr valign="top"> | |
<td align="right" class="bibtexnumber"> | |
[<a name="ISI:000289085600004">15</a>] | |
</td> | |
<td class="bibtexitem"> | |
C. Domenech, T. Wehr, and J. Fischer. | |
<b>Toward an Earth Clouds, Aerosols and Radiation Explore | |
(EarthCARE) thermal flux determination: Evaluation using Clouds and the | |
Earth's Radiant Energy System (CERES) true along-track data</b>. | |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, MAR 29 | |
2011. | |
[ <a href="http://dx.doi.org/10.1029/2010JD015212">DOI</a> ] | |
| |
</td> | |
</tr> | |
| |
| |
<tr valign="top"> | |
<td align="right" class="bibtexnumber"> | |
[<a name="ISI:000291714600012">16</a>] | |
</td> | |
<td class="bibtexitem"> | |
Claudia Emde, Robert Buras, and Bernhard Mayer. | Claudia Emde, Robert Buras, and Bernhard Mayer. |
<b>ALIS: An efficient method to compute high spectral resolution | <b>ALIS: An efficient method to compute high spectral resolution |
polarized solar radiances using the Monte Carlo approach</b>. | polarized solar radiances using the Monte Carlo approach</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
112(10):1622--1631, JUL 2011. | 112(10):1622-1631, JUL 2011. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2011.03.018">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2011.03.018">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000287000600008">17</a>] | [<a name="WOS:000290873100004">915</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Uwe Feister, Gudrun Laschewski, and Rolf-Dieter Grewe. | |
<b>UV index forecasts and measurements of health-effective | |
radiation</b>. | |
<em>JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY</em>, | |
102(1):55--68, JAN 10 2011. | |
[ <a href="http://dx.doi.org/10.1016/j.jphotobiol.2010.09.005">DOI</a> ] | |
| |
</td> | |
</tr> | |
| |
| |
<tr valign="top"> | |
<td align="right" class="bibtexnumber"> | |
[<a name="ISI:000290873100004">18</a>] | |
</td> | |
<td class="bibtexitem"> | |
Piers M. Forster, Victor I. Fomichev, Eugene Rozanov, Chiara Cagnazzo, | Piers M. Forster, Victor I. Fomichev, Eugene Rozanov, Chiara Cagnazzo, |
Andreas I. Jonsson, Ulrike Langematz, Boris Fomin, Michael J. Iacono, | Andreas I. Jonsson, Ulrike Langematz, Boris Fomin, Michael J. Iacono, |
<b>Evaluation of radiation scheme performance within chemistry | <b>Evaluation of radiation scheme performance within chemistry |
climate models</b>. | climate models</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, MAY 18 | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, MAY 18 2011. |
2011. | |
[ <a href="http://dx.doi.org/10.1029/2010JD015361">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2010JD015361">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000288368900023">19</a>] | [<a name="WOS:000289774200030">916</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Gasteiger, S. Gross, V. Freudenthaler, and M. Wiegner. | David Vernez, Antoine Milon, Laurent Francioli, Jean-Luc Bulliard, Laurent |
<b>Volcanic ash from Iceland over Munich: mass concentration | Vuilleumier, and Laurent Moccozet. |
retrieved from ground-based remote sensing measurements</b>. | <b>A Numeric Model to Simulate Solar Individual Ultraviolet |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(5):2209--2223, | Exposure</b>. |
2011. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 87(3):721-728, MAY-JUN 2011. |
[ <a href="http://dx.doi.org/10.5194/acp-11-2209-2011">DOI</a> ] | [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2011.00895.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000292183400004">20</a>] | [<a name="WOS:000306749500011">917</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Hendrick, J. P. Pommereau, F. Goutail, R. D. Evans, D. Ionov, A. Pazmino, | Rebekka Posselt, Richard Mueller, Reto Stoeckli, and Joerg Trentmann. |
E. Kyro, G. Held, P. Eriksen, V. Dorokhov, M. Gil, and M. Van Roozendael. | <b>Spatial and Temporal Homogeneity of Solar Surface Irradiance |
<b>NDACC/SAOZ UV-visible total ozone measurements: improved | across Satellite Generations</b>. |
retrieval and comparison with correlative ground-based and satellite | <em>REMOTE SENSING</em>, 3(5):1029-1046, MAY 2011. |
observations</b>. | [ <a href="http://dx.doi.org/10.3390/rs3051029">DOI</a> ] |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(12):5975--5995, | |
2011. | |
[ <a href="http://dx.doi.org/10.5194/acp-11-5975-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000289559000030">21</a>] | [<a name="WOS:000289559000030">918</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. C. Hirschberger and G. Ehret. | M. C. Hirschberger and G. Ehret. |
<b>Simulation and high-precision wavelength determination of noisy | <b>Simulation and high-precision wavelength determination of noisy |
2D Fabry-Perot interferometric rings for direct-detection Doppler lidar and | 2D Fabry-Perot interferometric rings for direct-detection Doppler lidar and |
laser spectroscopy</b>. | laser spectroscopy</b>. |
<em>APPLIED PHYSICS B-LASERS AND OPTICS</em>, 103(1):207--222, | <em>APPLIED PHYSICS B-LASERS AND OPTICS</em>, 103(1):207-222, APR 2011. |
APR 2011. | |
[ <a href="http://dx.doi.org/10.1007/s00340-011-4391-9">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/s00340-011-4391-9">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000298019500008">22</a>] | [<a name="WOS:000288770400008">919</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sebastian W. Huch, C. David Whiteman, and Bernhard Mayer. | M. Anton, A. Serrano, M. L. Cancillo, and J. M. Vilaplana. |
<b>A Systematic Study of Longwave Radiative Heating and Cooling | <b>Quality assurance of broadband erythemal radiometers at the |
within Valleys and Basins Using a Three-Dimensional Radiative Transfer | Extremadura UV Monitoring Network (Southwestern Spain)</b>. |
Model</b>. | <em>ATMOSPHERIC RESEARCH</em>, 100(1):83-92, APR 2011. |
<em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2010.12.029">DOI</a> ] |
50(12):2473--2489, DEC 2011. | |
[ <a href="http://dx.doi.org/10.1175/JAMC-D-11-083.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000295387200051">23</a>] | [<a name="WOS:000289085600004">920</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Janjai, K. Sricharoen, and S. Pattarapanitchai. | C. Domenech, T. Wehr, and J. Fischer. |
<b>Semi-empirical models for the estimation of clear sky solar | <b>Toward an Earth Clouds, Aerosols and Radiation Explore |
global and direct normal irradiances in the tropics</b>. | (EarthCARE) thermal flux determination: Evaluation using Clouds and the |
<em>APPLIED ENERGY</em>, 88(12):4749--4755, DEC 2011. | Earth's Radiant Energy System (CERES) true along-track data</b>. |
[ <a href="http://dx.doi.org/10.1016/j.apenergy.2011.06.021">DOI</a> ] | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, MAR 29 2011. |
| [ <a href="http://dx.doi.org/10.1029/2010JD015212">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000297896300007">24</a>] | [<a name="WOS:000287067400010">921</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kazantzidis, K. Eleftheratos, and C. S. Zerefos. | Sebastian Westermann, Moritz Langer, and Julia Boike. |
<b>Effects of cirrus cloudiness on solar irradiance in four | <b>Spatial and temporal variations of summer surface temperatures |
spectral bands</b>. | of high-arctic tundra on Svalbard - Implications for MODIS LST based |
<em>ATMOSPHERIC RESEARCH</em>, 102(4):452--459, DEC 2011. | permafrost monitoring</b>. |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.09.015">DOI</a> ] | <em>REMOTE SENSING OF ENVIRONMENT</em>, 115(3):908-922, MAR 15 2011. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2010.11.018">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000296594000013">25</a>] | [<a name="WOS:000287871200028">922</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Kiemle, M. Quatrevalet, G. Ehret, A. Amediek, A. Fix, and M. Wirth. | Margit Aun, Kalju Eerme, Ilmar Ansko, Uno Veismann, and Silver Latt. |
<b>Sensitivity studies for a space-based methane lidar mission</b>. | <b>Modification of Spectral Ultraviolet Doses by Different Types of |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 4(10):2195--2211, | Overcast Cloudiness and Atmospheric Aerosol</b>. |
2011. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 87(2):461-469, MAR-APR 2011. |
[ <a href="http://dx.doi.org/10.5194/amt-4-2195-2011">DOI</a> ] | [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2011.00889.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000294216700020">26</a>] | [<a name="WOS:000286782500040">923</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Claas H. Koehler, Thomas Trautmann, Erwin Lindermeir, Willem Vreeling, Kirsten | J. C. Perez, A. Gonzalez, and M. Armas-Padilla. |
Lieke, Konrad Kandler, Bernadett Weinzierl, Silke Gross, Matthias Tesche, and | <b>Remote sensing of water cloud properties from MSG/SEVIRI |
Manfred Wendisch. | nighttime imagery</b>. |
<b>Thermal IR radiative properties of mixed mineral dust and | <em>REMOTE SENSING OF ENVIRONMENT</em>, 115(2):738-746, FEB 15 2011. |
biomass aerosol during SAMUM-2</b>. | [ <a href="http://dx.doi.org/10.1016/j.rse.2010.10.015">DOI</a> ] |
<em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, 63(4, | |
SI):751--769, SEP 2011. | |
[ <a href="http://dx.doi.org/10.1111/j.1600-0889.2011.00563.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000296593000011">27</a>] | [<a name="WOS:000286960000006">924</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kylling, B. Mayer, and M. Blumthaler. | Robert Buras and Bernhard Mayer. |
<b>Technical Note: A new discrete ordinate first-order rotational | <b>Efficient unbiased variance reduction techniques for Monte Carlo |
Raman scattering radiative transfer model - implementation and first | simulations of radiative transfer in cloudy atmospheres: The solution</b>. |
results</b>. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(20):10471--10485, | 112(3):434-447, FEB 2011. |
2011. | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2010.10.005">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-11-10471-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000294591800017">28</a>] | [<a name="WOS:000287000600008">925</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
David Mateos, Alcide di Sarra, Daniela Meloni, Claudia Di Biagio, and | Uwe Feister, Gudrun Laschewski, and Rolf-Dieter Grewe. |
Damiano M. Sferlazzo. | <b>UV index forecasts and measurements of health-effective |
<b>Experimental determination of cloud influence on the spectral | radiation</b>. |
UV irradiance and implications for biological effects</b>. | <em>JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY</em>, |
<em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, | 102(1):55-68, JAN 10 2011. |
73(13):1739--1746, AUG 2011. | [ <a href="http://dx.doi.org/10.1016/j.jphotobiol.2010.09.005">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.jastp.2011.04.003">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000297421100002">29</a>] | [<a name="WOS:000298667600030">926</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Paivi Mauno, Greg M. McFarquhar, Petri Raisanen, Michael Kahnert, Michael S. | G. Bernhard. |
Timlin, and Timo Nousiainen. | <b>Trends of solar ultraviolet irradiance at Barrow, Alaska, and |
<b>The influence of observed cirrus microphysical properties on | the effect of measurement uncertainties on trend detection</b>. |
shortwave radiation: A case study over Oklahoma</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(24):13029-13045, 2011. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, NOV 22 | [ <a href="http://dx.doi.org/10.5194/acp-11-13029-2011">DOI</a> ] |
2011. | |
[ <a href="http://dx.doi.org/10.1029/2011JD016058">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000294809200020">30</a>] | [<a name="WOS:000294457700012">927</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Merlaud, M. Van Roozendael, N. Theys, C. Fayt, C. Hermans, B. Quennehen, | H. Diemoz, A. M. Siani, G. R. Casale, A. di Sarra, B. Serpillo, B. Petkov, |
A. Schwarzenboeck, G. Ancellet, M. Pommier, J. Pelon, J. Burkhart, A. Stohl, | S. Scaglione, A. Bonino, S. Facta, F. Fedele, D. Grifoni, L. Verdi, and |
and M. De Maziere. | G. Zipoli. |
<b>Airborne DOAS measurements in Arctic: vertical distributions of | <b>First national intercomparison of solar ultraviolet radiometers |
aerosol extinction coefficient and NO2 concentration</b>. | in Italy</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(17):9219--9236, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 4(8):1689-1703, 2011. |
2011. | [ <a href="http://dx.doi.org/10.5194/amt-4-1689-2011">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-11-9219-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000298747600001">31</a>] | [<a name="WOS:000286864900007">928</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
David Painemal and Paquita Zuidema. | Eleni Gemtou. |
<b>Assessment of MODIS cloud effective radius and optical | <b>Depictions of Sunsets as Information Sources</b>. |
thickness retrievals over the Southeast Pacific with VOCALS-REx in situ | <em>LEONARDO</em>, 44(1):49+, 2011. |
measurements</b>. | [ <a href="http://dx.doi.org/10.1162/LEON\_a\_00093">DOI</a> ] |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 116, DEC 30 | |
2011. | |
[ <a href="http://dx.doi.org/10.1029/2011JD016155">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000291636400021">32</a>] | [<a name="WOS:000351396200008">929</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. G. Palancar, R. E. Shetter, S. R. Hall, B. M. Toselli, and S. Madronich. | Rudolf Richter. |
<b>Ultraviolet actinic flux in clear and cloudy atmospheres: model | <b>Atmospheric Correction Methods for Optical Remote Sensing |
calculations and aircraft-based measurements</b>. | Imagery of Land</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(11):5457--5469, | In Q Weng, editor, <em>ADVANCES IN ENVIRONMENTAL REMOTE SENSING: |
2011. | SENSORS, ALGORITHMS, AND APPLICATIONS</em>, Taylor & Francis Series in Remote |
[ <a href="http://dx.doi.org/10.5194/acp-11-5457-2011">DOI</a> ] | Sensing Applications, pages 161-172. 2011. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000286782500040">33</a>] | [<a name="WOS:000287795700027">930</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. C. Perez, A. Gonzalez, and M. Armas-Padilla. | N. Theys, M. Van Roozendael, F. Hendrick, X. Yang, I. De Smedt, A. Richter, |
<b>Remote sensing of water cloud properties from MSG/SEVIRI | M. Begoin, Q. Errera, P. V. Johnston, K. Kreher, and M. De Maziere. |
nighttime imagery</b>. | <b>Global observations of tropospheric BrO columns using GOME-2 |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 115(2):738--746, FEB | satellite data</b>. |
15 2011. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(4):1791-1811, 2011. |
[ <a href="http://dx.doi.org/10.1016/j.rse.2010.10.01">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-11-1791-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000293669900026">34</a>] | [<a name="WOS:000288368900023">931</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. R. Perrone and A. Bergamo. | J. Gasteiger, S. Gross, V. Freudenthaler, and M. Wiegner. |
<b>Direct radiative forcing during Sahara dust intrusions at a | <b>Volcanic ash from Iceland over Munich: mass concentration |
site in the Central Mediterranean: Anthropogenic particle contribution</b>. | retrieved from ground-based remote sensing measurements</b>. |
<em>ATMOSPHERIC RESEARCH</em>, 101(3):783--798, AUG 2011. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(5):2209-2223, 2011. |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.05.011">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-11-2209-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000306749500011">35</a>] | [<a name="WOS:000291636400021">932</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Rebekka Posselt, Richard Mueller, Reto Stoeckli, and Joerg Trentmann. | G. G. Palancar, R. E. Shetter, S. R. Hall, B. M. Toselli, and S. Madronich. |
<b>Spatial and Temporal Homogeneity of Solar Surface Irradiance | <b>Ultraviolet actinic flux in clear and cloudy atmospheres: model |
across Satellite Generations</b>. | calculations and aircraft-based measurements</b>. |
<em>REMOTE SENSING</em>, 3(5):1029--1046, MAY 2011. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(11):5457-5469, 2011. |
[ <a href="http://dx.doi.org/10.3390/rs3051029">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-11-5457-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000293226100007">36</a>] | [<a name="WOS:000291939800005">933</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Potes, M. J. Costa, J. C. B. da Silva, A. M. Silva, and M. Morais. | L. Bugliaro, T. Zinner, C. Keil, B. Mayer, R. Hollmann, M. Reuter, and |
<b>Remote sensing of water quality parameters over Alqueva | W. Thomas. |
Reservoir in the south of Portugal</b>. | <b>Validation of cloud property retrievals with simulated satellite |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | radiances: a case study for SEVIRI</b>. |
32(12):3373--3388, 2011. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(12):5603-5624, 2011. |
[ <a href="http://dx.doi.org/10.1080/01431161003747513">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-11-5603-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000289946700007">37</a>] | [<a name="WOS:000292183400004">934</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Santos, M. J. Costa, A. M. Silva, R. Salgado, A. Domingues, and D. Bortoli. | F. Hendrick, J. P. Pommereau, F. Goutail, R. D. Evans, D. Ionov, A. Pazmino, |
<b>Saharan desert dust radiative effects: a study based on | E. Kyro, G. Held, P. Eriksen, V. Dorokhov, M. Gil, and M. Van Roozendael. |
atmospheric modelling</b>. | <b>NDACC/SAOZ UV-visible total ozone measurements: improved |
<em>INTERNATIONAL JOURNAL OF GLOBAL WARMING</em>, | retrieval and comparison with correlative ground-based and satellite |
3(1-2):88--102, 2011. | observations</b>. |
[ <a href="http://dx.doi.org/10.1504/IJGW.2011.038372">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(12):5975-5995, 2011. |
| [ <a href="http://dx.doi.org/10.5194/acp-11-5975-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000298008200002">38</a>] | [<a name="WOS:000292728400008">935</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Donghyun Seo and Moncef Krarti. | A. O. Steen, T. Berg, A. P. Dastoor, D. A. Durnford, O. Engelsen, L. R. Hole, |
<b>Hourly Solar Radiation Model Suitable for Worldwide Typical | and K. A. Pfaffhuber. |
Weather File Generation</b>. | <b>Natural and anthropogenic atmospheric mercury in the European |
<em>JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME</em>, | Arctic: a fractionation study</b>. |
133(4), NOV 2011. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(13):6273-6284, 2011. |
[ <a href="http://dx.doi.org/10.1115/1.4003883">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-11-6273-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000294581100006">39</a>] | [<a name="WOS:000293826500008">936</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Simic, M. Fitzka, A. Schmalwieser, P. Weihs, and J. Hadzimustafic. | A. F. Bais, K. Tourpali, A. Kazantzidis, H. Akiyoshi, S. Bekki, P. Braesicke, |
<b>Factors affecting UV irradiance at selected wavelengths at | M. P. Chipperfield, M. Dameris, V. Eyring, H. Garny, D. Iachetti, P. Joeckel, |
Hoher Sonnblick</b>. | A. Kubin, U. Langematz, E. Mancini, M. Michou, O. Morgenstern, T. Nakamura, |
<em>ATMOSPHERIC RESEARCH</em>, 101(4):869--878, SEP 2011. | P. A. Newman, G. Pitari, D. A. Plummer, E. Rozanov, T. G. Shepherd, |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.05.022">DOI</a> ] | K. Shibata, W. Tian, and Y. Yamashita. |
| <b>Projections of UV radiation changes in the 21st century: impact |
| of ozone recovery and cloud effects</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(15):7533-7545, 2011. |
| [ <a href="http://dx.doi.org/10.5194/acp-11-7533-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000297270900002">40</a>] | [<a name="WOS:000294809200020">937</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. J. Smyth. | A. Merlaud, M. Van Roozendael, N. Theys, C. Fayt, C. Hermans, B. Quennehen, |
<b>Penetration of UV irradiance into the global ocean</b>. | A. Schwarzenboeck, G. Ancellet, M. Pommier, J. Pelon, J. Burkhart, A. Stohl, |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS</em>, 116, NOV 15 | and M. De Maziere. |
2011. | <b>Airborne DOAS measurements in Arctic: vertical distributions of |
[ <a href="http://dx.doi.org/10.1029/2011JC007183">DOI</a> ] | aerosol extinction coefficient and NO<sub>2</sub> concentration</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(17):9219-9236, 2011. |
| [ <a href="http://dx.doi.org/10.5194/acp-11-9219-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000292728400008">41</a>] | [<a name="WOS:000296593000011">938</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. O. Steen, T. Berg, A. P. Dastoor, D. A. Durnford, O. Engelsen, L. R. Hole, | A. Kylling, B. Mayer, and M. Blumthaler. |
and K. A. Pfaffhuber. | <b>Technical Note: A new discrete ordinate first-order rotational |
<b>Natural and anthropogenic atmospheric mercury in the European | Raman scattering radiative transfer model - implementation and first |
Arctic: a fractionation study</b>. | results</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(13):6273--6284, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(20):10471-10485, 2011. |
2011. | [ <a href="http://dx.doi.org/10.5194/acp-11-10471-2011">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-11-6273-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000287795700027">42</a>] | [<a name="WOS:000288911000008">939</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
N. Theys, M. Van Roozendael, F. Hendrick, X. Yang, I. De Smedt, A. Richter, | M. Anton, J. E. Gil, A. Cazorla, J. Fernandez-Galvez, J. M. Vilaplana, F. J. |
M. Begoin, Q. Errera, P. V. Johnston, K. Kreher, and M. De Maziere. | Olmo, and L. Alados-Arboledas. |
<b>Global observations of tropospheric BrO columns using GOME-2 | <b>Influence of the calibration on experimental UV index at a |
satellite data</b>. | midlatitude site, Granada (Spain)</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 11(4):1791--1811, | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 4(3):499-507, 2011. |
2011. | [ <a href="http://dx.doi.org/10.5194/amt-4-499-2011">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/acp-11-1791-2011">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000289774200030">43</a>] | [<a name="WOS:000296594000013">940</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
David Vernez, Antoine Milon, Laurent Francioli, Jean-Luc Bulliard, Laurent | C. Kiemle, M. Quatrevalet, G. Ehret, A. Amediek, A. Fix, and M. Wirth. |
Vuilleumier, and Laurent Moccozet. | <b>Sensitivity studies for a space-based methane lidar mission</b>. |
<b>A Numeric Model to Simulate Solar Individual Ultraviolet | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 4(10):2195-2211, 2011. |
Exposure</b>. | [ <a href="http://dx.doi.org/10.5194/amt-4-2195-2011">DOI</a> ] |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 87(3):721--728, | |
MAY-JUN 2011. | |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2011.00895.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000297482300004">44</a>] | [<a name="WOS:000216371300063">941</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. E. Wagner, F. Angelini, M. Blumthaler, M. Fitzka, G. P. Gobbi, R. Kift, | Paivi Mauno, Michael Kahnert, Petri Raisanen, and Timo Nousiainen. |
A. Kreuter, H. E. Rieder, S. Simic, A. Webb, and P. Weihs. | <b>SENSITIVITY OF RADIATIVE IMPACT OF DUST TO PARTICLE SHAPE: |
<b>Investigation of the 3-D actinic flux field in mountainous | COMPARISON OF SPHERES AND SPHEROIDS</b>. |
terrain</b>. | <em>ATTI ACCADEMIA PELORITANA DEI PERICOLANTI-CLASSE DI SCIENZE |
<em>ATMOSPHERIC RESEARCH</em>, 102(3):300--310, NOV 2011. | FISICHE MATEMATICHE E NATURALI</em>, 89(1), 2011. |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.07.008">DOI</a> ] | [ <a href="http://dx.doi.org/10.1478/C1V89S1P063">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000287067400010">45</a>] | [<a name="WOS:000291939100007">942</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sebastian Westermann, Moritz Langer, and Julia Boike. | V. Aquila, J. Hendricks, A. Lauer, N. Riemer, H. Vogel, D. Baumgardner, |
<b>Spatial and temporal variations of summer surface temperatures | A. Minikin, A. Petzold, J. P. Schwarz, J. R. Spackman, B. Weinzierl, |
of high-arctic tundra on Svalbard - Implications for MODIS LST based | M. Righi, and M. Dall'Amico. |
permafrost monitoring</b>. | <b>MADE-in: a new aerosol microphysics submodel for global |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 115(3):908--922, MAR | simulation of insoluble particles and their mixing state</b>. |
15 2011. | <em>GEOSCIENTIFIC MODEL DEVELOPMENT</em>, 4(2):325-355, 2011. |
[ <a href="http://dx.doi.org/10.1016/j.rse.2010.11.018">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/gmd-4-325-2011">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000294572600002">46</a>] | [<a name="WOS:000289946700007">943</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Bingqi Yi, Christine N. Hsu, Ping Yang, and Si-Chee Tsay. | D. Santos, M. J. Costa, A. M. Silva, R. Salgado, A. Domingues, and D. Bortoli. |
<b>Radiative transfer simulation of dust-like aerosols: | <b>Saharan desert dust radiative effects: a study based on |
Uncertainties from particle shape and refractive index</b>. | atmospheric modelling</b>. |
<em>JOURNAL OF AEROSOL SCIENCE</em>, 42(10):631--644, OCT | <em>INTERNATIONAL JOURNAL OF GLOBAL WARMING</em>, 3(1-2):88-102, 2011. |
2011. | [ <a href="http://dx.doi.org/10.1504/IJGW.2011.038372">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.jaerosci.2011.06.008">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000295653500012">47</a>] | [<a name="WOS:000293226100007">944</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Argimiro de Miguel, David Mateos, Julia Bilbao, and Roberto Roman. | M. Potes, M. J. Costa, J. C. B. da Silva, A. M. Silva, and M. Morais. |
<b>Sensitivity analysis of ratio between ultraviolet and total | <b>Remote sensing of water quality parameters over Alqueva |
shortwave solar radiation to cloudiness, ozone, aerosols and precipitable | Reservoir in the south of Portugal</b>. |
water</b>. | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 32(12):3373-3388, |
<em>ATMOSPHERIC RESEARCH</em>, 102(1-2):136--144, OCT 2011. | 2011. |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2011.06.019">DOI</a> ] | [ <a href="http://dx.doi.org/10.1080/01431161003747513">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2010</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000217243000005">945</a>] |
| </td> |
| <td> |
| J. M. Sancho, M. C. Sanchez de Cos, and C. Jimenez. |
| <b>Comparison of global irradiance measurements of the official |
| Spanish radiometric network for 2006 with satellite estimated data</b>. |
| <em>TETHYS-JOURNAL OF MEDITERRANEAN METEOROLOGY & CLIMATOLOGY</em>, |
| (8):43-52, 2011. |
| [ <a href="http://dx.doi.org/10.3369/tethys.2011.8.05">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000279670500024">1</a>] | [<a name="WOS:000285837200001">946</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Avishai Ben-David and Jose-Luis Sagripanti. | Ina Tegen, Eike Bierwirth, Bernd Heinold, Juergen Helmert, and Manfred |
<b>A Model for Inactivation of Microbes Suspended in the | Wendisch. |
Atmosphere by Solar Ultraviolet Radiation</b>. | <b>Effect of measured surface albedo on modeled Saharan dust solar |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 86(4):895--908, | radiative forcing</b>. |
JUL-AUG 2010. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, DEC 29 2010. |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2010.00738.x">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2009JD013764">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000280587200007">2</a>] | [<a name="WOS:000285642200002">947</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Eike Bierwirth, Manfred Wendisch, Evelyn Jaekel, Andre Ehrlich, K. Sebastian | F. Henrich, H. Siebert, E. Jaekel, R. A. Shaw, and M. Wendisch. |
Schmidt, Harald Stark, Peter Pilewskie, Michael Esselborn, Gian Paolo Gobbi, | <b>Collocated measurements of boundary layer cloud microphysical |
Richard Ferrare, Thomas Mueller, and Antony Clarke. | and radiative properties: A feasibility study</b>. |
<b>A new method to retrieve the aerosol layer absorption | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, DEC 23 2010. |
coefficient from airborne flux density and actinic radiation measurements</b>. | [ <a href="http://dx.doi.org/10.1029/2010JD013930">DOI</a> ] |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, JUL 30 | |
2010. | |
[ <a href="http://dx.doi.org/10.1029/2009JD013636">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000208356500004">3</a>] | [<a name="WOS:000285463300001">948</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Marc Bouvet and Fabrizio Ramoino. | J. Kaurola, A. Lindfors, K. Lakkala, G. Hansen, W. Josefsson, L. Vuilleumier, |
<b>Radiometric intercomparison of AATSR, MERIS, and Aqua MODIS | U. Feister, and H. Slaper. |
over Dome Concordia (Antarctica)</b>. | <b>On the usability of the ERA-40 reanalysis in the estimation of |
<em>CANADIAN JOURNAL OF REMOTE SENSING</em>, 36(5, SI):464--473, | past surface UV radiation over Europe</b>. |
OCT 2010. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, DEC 18 2010. |
| [ <a href="http://dx.doi.org/10.1029/2010JD013810">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000282506800003">4</a>] | [<a name="WOS:000284389300004">949</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Buntoung and A. R. Webb. | D. S. Lee, G. Pitari, V. Grewe, K. Gierens, J. E. Penner, A. Petzold, M. J. |
<b>Comparison of erythemal UV irradiances from Ozone Monitoring | Prather, U. Schumann, A. Bais, T. Berntsen, D. Iachetti, L. L. Lim, and |
Instrument (OMI) and ground-based data at four Thai stations</b>. | R. Sausen. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, SEP 28 | <b>Transport impacts on atmosphere and climate: Aviation</b>. |
2010. | <em>ATMOSPHERIC ENVIRONMENT</em>, 44(37, SI):4678-4734, DEC 2010. |
[ <a href="http://dx.doi.org/10.1029/2009JD013567">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2009.06.005">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000324467700019">5</a>] | [<a name="WOS:000282242000025">950</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Y. Chee and F. P. Mills. | Michel Journee and Cedric Bertrand. |
<b>An initial assessment of the impact of Australian aerosols on | <b>Improving the spatio-temporal distribution of surface solar |
surface ultraviolet radiation and implications for human health</b>. | radiation data by merging ground and satellite measurements</b>. |
In <em>17TH NATIONAL CONFERENCE OF THE AUSTRALIAN METEOROLOGICAL | <em>REMOTE SENSING OF ENVIRONMENT</em>, 114(11):2692-2704, NOV 15 2010. |
AND OCEANOGRAPHIC SOCIETY</em>, volume 11 of <em>IOP Conference Series-Earth | [ <a href="http://dx.doi.org/10.1016/j.rse.2010.06.010">DOI</a> ] |
and Environmental Science</em>, 2010. | |
17th National Conference of the | |
Australian-Meteorological-and-Oceanographic-Society, Australian Natl Univ | |
(ANU), Canberra, AUSTRALIA, JAN 27-29, 2010. | |
[ <a href="http://dx.doi.org/10.1088/1755-1315/11/1/012019">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000281755600002">6</a>] | [<a name="WOS:000284983400019">951</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sean Davis, Dennis Hlavka, Eric Jensen, Karen Rosenlof, Qiong Yang, Sebastian | A. Kreuter, C. Emde, and M. Blumthaler. |
Schmidt, Stephan Borrmann, Wiebke Frey, Paul Lawson, Holger Voemel, and T. P. | <b>Measuring the influence of aerosols and albedo on sky |
Bui. | polarization</b>. |
<b>In situ and lidar observations of tropopause subvisible cirrus | <em>ATMOSPHERIC RESEARCH</em>, 98(2-4):363-367, NOV-DEC 2010. |
clouds during TC4</b>. | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2010.07.010">DOI</a> ] |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, SEP 10 | |
2010. | |
[ <a href="http://dx.doi.org/10.1029/2009JD013093">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000273954200006">7</a>] | [<a name="WOS:000283546600001">952</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Emde, R. Buras, B. Mayer, and M. Blumthaler. | K. Sebastian Schmidt, Peter Pilewskie, Bernhard Mayer, Manfred Wendisch, Bruce |
<b>The impact of aerosols on polarized sky radiance: model | Kindel, Steven Platnick, Michael D. King, Gala Wind, G. Tom Arnold, Lin Tian, |
development, validation, and applications</b>. | Gerald Heymsfield, and Heike Kalesse. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(2):383--396, | <b>Apparent absorption of solar spectral irradiance in |
2010. | heterogeneous ice clouds</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, OCT 23 2010. |
| [ <a href="http://dx.doi.org/10.1029/2009JD013124">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000287933802153">8</a>] | [<a name="WOS:000208356500004">953</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Attilio Gambardella, Thomas Huld, and Jean Verdebout. | Marc Bouvet and Fabrizio Ramoino. |
<b>SURFACE SOLAR IRRADIANCE MAPS FROM SEVIRI MSG DATA</b>. | <b>Radiometric intercomparison of AATSR, MERIS, and Aqua MODIS over |
In <em>2010 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING | Dome Concordia (Antarctica)</b>. |
SYMPOSIUM</em>, IEEE International Symposium on Geoscience and Remote Sensing | <em>CANADIAN JOURNAL OF REMOTE SENSING</em>, 36(5, SI):464-473, OCT |
IGARSS, pages 2452--2455, 2010. | 2010. |
IEEE International Geoscience and Remote Sensing Symposium, | [ <a href="http://dx.doi.org/10.5589/m10-081">DOI</a> ] |
Honolulu, HI, JUN 25-30, 2010. | |
[ <a href="http://dx.doi.org/10.1109/IGARSS.2010.5648968">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000278742400001">9</a>] | [<a name="WOS:000284240400008">954</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Hennes Henniger and Otakar Wilfert. | Jochen E. Wagner, Federico Angelini, Antti Arola, Mario Blumthaler, Michael |
<b>An Introduction to Free-space Optical Communications</b>. | Fitzka, Gian Paolo Gobbi, Richard Kift, Axel Kreuter, Harald E. Rieder, Stana |
<em>RADIOENGINEERING</em>, 19(2):203--212, JUN 2010. | Simic, Ann Webb, and Philipp Weihs. |
| <b>Comparison of surface UV irradiance in mountainous regions |
| derived from satellite observations and model calculations with ground-based |
| measurements</b>. |
| <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 19(5, SI):481-490, OCT 2010. |
| 30th International Conference on Alpine Meteorology (ICAM), Rastatt, |
| GERMANY, MAY 11-15, 2009. |
| [ <a href="http://dx.doi.org/10.1127/0941-2948/2010/0347">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000285642200002">10</a>] | [<a name="WOS:000282166400009">955</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Henrich, H. Siebert, E. Jaekel, R. A. Shaw, and M. Wendisch. | J. Verdebout. |
<b>Collocated measurements of boundary layer cloud microphysical | <b>Estimating natural UV personal exposure with radiative transfer |
and radiative properties: A feasibility study</b>. | calculations</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, DEC 23 | <em>RADIATION PROTECTION DOSIMETRY</em>, 141(3):275-282, OCT 2010. |
2010. | [ <a href="http://dx.doi.org/10.1093/rpd/ncq186">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1029/2010JD013930">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000273954200003">11</a>] | [<a name="WOS:000282506800003">956</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. Ialongo, V. Buchard, C. Brogniez, G. R. Casale, and A. M. Siani. | S. Buntoung and A. R. Webb. |
<b>Aerosol Single Scattering Albedo retrieval in the UV range: an | <b>Comparison of erythemal UV irradiances from Ozone Monitoring |
application to OMI satellite validation</b>. | Instrument (OMI) and ground-based data at four Thai stations</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(2):331--340, | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, SEP 28 2010. |
2010. | [ <a href="http://dx.doi.org/10.1029/2009JD013567">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000282242000025">12</a>] | [<a name="WOS:000279495200015">957</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Michel Journee and Cedric Bertrand. | Moritz Langer, Sebastian Westermann, and Julia Boike. |
<b>Improving the spatio-temporal distribution of surface solar | <b>Spatial and temporal variations of summer surface temperatures |
radiation data by merging ground and satellite measurements</b>. | of wet polygonal tundra in Siberia - implications for MODIS LST based |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 114(11):2692--2704, NOV | permafrost monitoring</b>. |
15 2010. | <em>REMOTE SENSING OF ENVIRONMENT</em>, 114(9):2059-2069, SEP 15 2010. |
[ <a href="http://dx.doi.org/10.1016/j.rse.2010.06.010">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.rse.2010.04.012">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000285463300001">13</a>] | [<a name="WOS:000281755600002">958</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Kaurola, A. Lindfors, K. Lakkala, G. Hansen, W. Josefsson, L. Vuilleumier, | Sean Davis, Dennis Hlavka, Eric Jensen, Karen Rosenlof, Qiong Yang, Sebastian |
U. Feister, and H. Slaper. | Schmidt, Stephan Borrmann, Wiebke Frey, Paul Lawson, Holger Voemel, and T. P. |
<b>On the usability of the ERA-40 reanalysis in the estimation of | Bui. |
past surface UV radiation over Europe</b>. | <b>In situ and lidar observations of tropopause subvisible cirrus |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, DEC 18 | clouds during TC4</b>. |
2010. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, SEP 10 2010. |
[ <a href="http://dx.doi.org/10.1029/2010JD013810">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2009JD013093">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000281432100016">14</a>] | [<a name="WOS:000281934500011">959</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Kazadzis, J. Groebner, A. Arola, and V. Amiridis. | Jose A. Ruiz-Arias, Tomas Cebecauer, Joaquin Tovar-Pescador, and Marcel Suri. |
<b>The effect of the global UV irradiance measurement accuracy on | <b>Spatial disaggregation of satellite-derived irradiance using a |
the single scattering albedo retrieval</b>. | high-resolution digital elevation model</b>. |
<em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 3(4):1029--1037, | <em>SOLAR ENERGY</em>, 84(9):1644-1657, SEP 2010. |
2010. | [ <a href="http://dx.doi.org/10.1016/j.solener.2010.06.002">DOI</a> ] |
[ <a href="http://dx.doi.org/10.5194/amt-3-1029-2010">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000273318800015">15</a>] | [<a name="WOS:000280183000027">960</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Andreas Kazantzidis, Kleareti Tourpali, and Alkiviadis F. Bais. | P. Rannou, T. Cours, S. Le Mouelic, S. Rodriguez, C. Sotin, P. Drossart, and |
<b>Variability of Cloud-free Ultraviolet Dose Rates on Global | R. Brown. |
Scale Due to Modeled Scenarios of Future Ozone Recovery</b>. | <b>Titan haze distribution and optical properties retrieved from |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 86(1):117--122, | recent observations</b>. |
JAN-FEB 2010. | <em>ICARUS</em>, 208(2):850-867, AUG 2010. |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2009.00645.x">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.icarus.2010.03.016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000279512000006">16</a>] | [<a name="WOS:000279512000006">961</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Alexander A. Kokhanovsky, Vladimir P. Budak, Celine Cornet, Minzheng Duan, | Alexander A. Kokhanovsky, Vladimir P. Budak, Celine Cornet, Minzheng Duan, |
Claudia Emde, Iosif L. Katsev, Dmitriy A. Klyukov, Sergey V. Korkin, | Claudia Emde, Iosif L. Katsev, Dmitriy A. Klyukov, Sergey V. Korkin, |
<b>Benchmark results in vector atmospheric radiative transfer</b>. | <b>Benchmark results in vector atmospheric radiative transfer</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
111(12-13):1931--1946, AUG 2010. | 111(12-13):1931-1946, AUG 2010. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2010.03.005">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2010.03.005">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000284983400019">17</a>] | [<a name="WOS:000280587200007">962</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kreuter, C. Emde, and M. Blumthaler. | Eike Bierwirth, Manfred Wendisch, Evelyn Jaekel, Andre Ehrlich, K. Sebastian |
<b>Measuring the influence of aerosols and albedo on sky | Schmidt, Harald Stark, Peter Pilewskie, Michael Esselborn, Gian Paolo Gobbi, |
polarization</b>. | Richard Ferrare, Thomas Mueller, and Antony Clarke. |
<em>ATMOSPHERIC RESEARCH</em>, 98(2-4):363--367, NOV-DEC | <b>A new method to retrieve the aerosol layer absorption |
2010. | coefficient from airborne flux density and actinic radiation measurements</b>. |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2010.07.010">DOI</a> ] | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, JUL 30 2010. |
| [ <a href="http://dx.doi.org/10.1029/2009JD013636">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000279495200015">18</a>] | [<a name="WOS:000279441500006">963</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Moritz Langer, Sebastian Westermann, and Julia Boike. | Andrew R. D. Smedley, Ann R. Webb, and Arnold J. Wilkins. |
<b>Spatial and temporal variations of summer surface temperatures | <b>Potential of wind turbines to elicit seizures under various |
of wet polygonal tundra in Siberia - implications for MODIS LST based | meteorological conditions</b>. |
permafrost monitoring</b>. | <em>EPILEPSIA</em>, 51(7):1146-1151, JUL 2010. |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 114(9):2059--2069, SEP | [ <a href="http://dx.doi.org/10.1111/j.1528-1167.2009.02402.x">DOI</a> ] |
15 2010. | |
[ <a href="http://dx.doi.org/10.1016/j.rse.2010.04.012">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000284389300004">19</a>] | [<a name="WOS:000279670500024">964</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. S. Lee, G. Pitari, V. Grewe, K. Gierens, J. E. Penner, A. Petzold, M. J. | Avishai Ben-David and Jose-Luis Sagripanti. |
Prather, U. Schumann, A. Bais, T. Berntsen, D. Iachetti, L. L. Lim, and | <b>A Model for Inactivation of Microbes Suspended in the Atmosphere |
R. Sausen. | by Solar Ultraviolet Radiation</b>. |
<b>Transport impacts on atmosphere and climate: Aviation</b>. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 86(4):895-908, JUL-AUG 2010. |
<em>ATMOSPHERIC ENVIRONMENT</em>, 44(37, SI):4678--4734, DEC | [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2010.00738.x">DOI</a> ] |
2010. | |
[ <a href="http://dx.doi.org/10.1016/j.atmosenv.2009.06.005">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000281762500004">20</a>] | [<a name="WOS:000278742400001">965</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. G. Loyola R, W. Thomas, R. Spurr, and B. Mayer. | Hennes Henniger and Otakar Wilfert. |
<b>Global patterns in daytime cloud properties derived from GOME | <b>An Introduction to Free-space Optical Communications</b>. |
backscatter UV-VIS measurements</b>. | <em>RADIOENGINEERING</em>, 19(2):203-212, JUN 2010. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | |
31(16):4295--4318, 2010. | |
[ <a href="http://dx.doi.org/10.1080/01431160903246741">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000282429000004">21</a>] | [<a name="WOS:000273596200004">966</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
B. Mayer, S. W. Hoch, and C. D. Whiteman. | S. Redi, G. S. Aglietti, A. R. Tatnall, and T. Markvart. |
<b>Validating the MYSTIC three-dimensional radiative transfer | <b>An Evaluation of a High Altitude Solar Radiation Platform</b>. |
model with observations from the complex topography of Arizona's Meteor | <em>JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME</em>, |
Crater</b>. | 132(1), FEB 2010. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(18):8685--8696, | [ <a href="http://dx.doi.org/10.1115/1.4000327">DOI</a> ] |
2010. | |
[ <a href="http://dx.doi.org/10.5194/acp-10-8685-2010">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000290751000016">22</a>] | [<a name="WOS:000324467700019">967</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Pazmino. | C. Y. Chee and F. P. Mills. |
<b>O(3) and NO(2) vertical columns using SAOZ UV-Visible | <b>An initial assessment of the impact of Australian aerosols on |
spectrometer</b>. | surface ultraviolet radiation and implications for human health</b>. |
In Boutron, C, editor, <em>ERCA 9: FROM THE GLOBAL MERCURY CYCLE | In <em>17TH NATIONAL CONFERENCE OF THE AUSTRALIAN METEOROLOGICAL AND |
TO THE DISCOVERIES OF KUIPER BELT OBJECTS</em>, volume 9 of <em>EPJ Web of | OCEANOGRAPHIC SOCIETY</em>, volume 11 of <em>IOP Conference Series-Earth and |
Conferences</em>, pages 201--214, 2010. | Environmental Science</em>. Australian Meteorol & Oceanog Soc (AMOS); Australian |
Conference on European Research Course on Atmospheres (ERCA 9) - | Natl Univ (ANU), Fenner Sch Environm & Soc; Australian Natl Univ (ANU), Res |
From the Global Mercury Cycle to the Discoveries of Kuiper Belt Objects, | Sch Earth Sci, 2010. |
Grenoble, FRANCE, JAN 11-FEB 12, 2010. | 17th National Conference of the |
[ <a href="http://dx.doi.org/10.1051/epjconf/201009016">DOI</a> ] | Australian-Meteorological-and-Oceanographic-Society, Australian Natl Univ |
| (ANU), Canberra, AUSTRALIA, JAN 27-29, 2010. |
| [ <a href="http://dx.doi.org/10.1088/1755-1315/11/1/012019">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000287123900073">23</a>] | [<a name="WOS:000287933802153">968</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Gerhard Peharz, Luca Bugliaro, Gerald Siefer, and Andreas W. Bett. | Attilio Gambardella, Thomas Huld, and Jean Verdebout. |
<b>Evaluation of Satellite Cirrus Data for Performance Models of | <b>SURFACE SOLAR IRRADIANCE MAPS FROM SEVIRI MSG DATA</b>. |
CPV Modules</b>. | In <em>2010 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING |
In Betts, AW and Dimroth, F and McConnell, RD and Sala, G, editor, | SYMPOSIUM</em>, IEEE International Symposium on Geoscience and Remote Sensing |
<em>6TH INTERNATIONAL CONFERENCE ON CONCENTRATING PHOTOVOLTAIC SYSTEMS | IGARSS, pages 2452-2455. IEEE, 2010. |
(CPV-6)</em>, volume 1277 of <em>AIP Conference Proceedings</em>, pages | IEEE International Geoscience and Remote Sensing Symposium, Honolulu, |
312--315, 2010. | HI, JUN 25-30, 2010. |
6th International Conference on Concentrating Photovoltaic Systems, | [ <a href="http://dx.doi.org/10.1109/IGARSS.2010.5648968">DOI</a> ] |
Freiburg im Breisgau, GERMANY, APR 07-09, 2010. | |
[ <a href="http://dx.doi.org/10.1063/1.3509219">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000280183000027">24</a>] | [<a name="WOS:000287123900073">969</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Rannou, T. Cours, S. Le Mouelic, S. Rodriguez, C. Sotin, P. Drossart, and | Gerhard Peharz, Luca Bugliaro, Gerald Siefer, and Andreas W. Bett. |
R. Brown. | <b>Evaluation of Satellite Cirrus Data for Performance Models of |
<b>Titan haze distribution and optical properties retrieved from | CPV Modules</b>. |
recent observations</b>. | In AW Betts, F Dimroth, RD McConnell, and G Sala, editors, <em>6TH |
<em>ICARUS</em>, 208(2):850--867, AUG 2010. | INTERNATIONAL CONFERENCE ON CONCENTRATING PHOTOVOLTAIC SYSTEMS (CPV-6)</em>, |
[ <a href="http://dx.doi.org/10.1016/j.icarus.2010.03.016">DOI</a> ] | volume 1277 of <em>AIP Conference Proceedings</em>, pages 312+. Fraunhofer Inst |
| Solar Energy Syst ISE; Concentrix Solar GmbH; AZUR SPACE Solar Power GmbH; |
| Boeing Co, Spectrolab Inc; Amonix Inc; SolFocus Inc; Evonik Rohm GmbH; |
| AIXTRON AG; Emcore Corp; Aescusoft GmbH; Concentrator Opt GmbH, 2010. |
| 6th International Conference on Concentrating Photovoltaic Systems, |
| Freiburg im Breisgau, GERMANY, APR 07-09, 2010. |
| [ <a href="http://dx.doi.org/10.1063/1.3509219">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000273596200004">25</a>] | [<a name="WOS:000273954200003">970</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Redi, G. S. Aglietti, A. R. Tatnall, and T. Markvart. | I. Ialongo, V. Buchard, C. Brogniez, G. R. Casale, and A. M. Siani. |
<b>An Evaluation of a High Altitude Solar Radiation Platform</b>. | <b>Aerosol Single Scattering Albedo retrieval in the UV range: an |
<em>JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME</em>, | application to OMI satellite validation</b>. |
132(1), FEB 2010. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(2):331-340, 2010. |
[ <a href="http://dx.doi.org/10.1115/1.4000327">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-10-331-2010">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000281934500011">26</a>] | [<a name="WOS:000273954200006">971</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Jose A. Ruiz-Arias, Tomas Cebecauer, Joaquin Tovar-Pescador, and Marcel Suri. | C. Emde, R. Buras, B. Mayer, and M. Blumthaler. |
<b>Spatial disaggregation of satellite-derived irradiance using a | <b>The impact of aerosols on polarized sky radiance: model |
high-resolution digital elevation model</b>. | development, validation, and applications</b>. |
<em>SOLAR ENERGY</em>, 84(9):1644--1657, SEP 2010. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(2):383-396, 2010. |
[ <a href="http://dx.doi.org/10.1016/j.solener.2010.06.002">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-10-383-2010">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000281432800021">27</a>] | [<a name="WOS:000281432800021">972</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. S. Schmidt, P. Pilewskie, R. Bergstrom, O. Coddington, J. Redemann, | K. S. Schmidt, P. Pilewskie, R. Bergstrom, O. Coddington, J. Redemann, |
J. Livingston, P. Russell, E. Bierwirth, M. Wendisch, W. Gore, M. K. Dubey, | J. Livingston, P. Russell, E. Bierwirth, M. Wendisch, W. Gore, M. K. Dubey, |
<b>A new method for deriving aerosol solar radiative forcing and | <b>A new method for deriving aerosol solar radiative forcing and |
its first application within MILAGRO/INTEX-B</b>. | its first application within MILAGRO/INTEX-B</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(16):7829--7843, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(16):7829-7843, 2010. |
2010. | |
[ <a href="http://dx.doi.org/10.5194/acp-10-7829-2010">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-10-7829-2010">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000283546600001">28</a>] | [<a name="WOS:000282429000004">973</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. Sebastian Schmidt, Peter Pilewskie, Bernhard Mayer, Manfred Wendisch, Bruce | B. Mayer, S. W. Hoch, and C. D. Whiteman. |
Kindel, Steven Platnick, Michael D. King, Gala Wind, G. Tom Arnold, Lin Tian, | <b>Validating the MYSTIC three-dimensional radiative transfer model |
Gerald Heymsfield, and Heike Kalesse. | with observations from the complex topography of Arizona's Meteor Crater</b>. |
<b>Apparent absorption of solar spectral irradiance in | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(18):8685-8696, 2010. |
heterogeneous ice clouds</b>. | [ <a href="http://dx.doi.org/10.5194/acp-10-8685-2010">DOI</a> ] |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, OCT 23 | |
2010. | |
[ <a href="http://dx.doi.org/10.1029/2009JD013124">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000279441500006">29</a>] | [<a name="WOS:000283066300020">974</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Andrew R. D. Smedley, Ann R. Webb, and Arnold J. Wilkins. | T. Zinner, G. Wind, S. Platnick, and A. S. Ackerman. |
<b>Potential of wind turbines to elicit seizures under various | <b>Testing remote sensing on artificial observations: impact of |
meteorological conditions</b>. | drizzle and 3-D cloud structure on effective radius retrievals</b>. |
<em>EPILEPSIA</em>, 51(7):1146--1151, JUL 2010. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(19):9535-9549, 2010. |
[ <a href="http://dx.doi.org/10.1111/j.1528-1167.2009.02402.x">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-10-9535-2010">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000285837200001">30</a>] | [<a name="WOS:000281432100016">975</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ina Tegen, Eike Bierwirth, Bernd Heinold, Juergen Helmert, and Manfred | S. Kazadzis, J. Groebner, A. Arola, and V. Amiridis. |
Wendisch. | <b>The effect of the global UV irradiance measurement accuracy on |
<b>Effect of measured surface albedo on modeled Saharan dust solar | the single scattering albedo retrieval</b>. |
radiative forcing</b>. | <em>ATMOSPHERIC MEASUREMENT TECHNIQUES</em>, 3(4):1029-1037, 2010. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 115, DEC 29 | [ <a href="http://dx.doi.org/10.5194/amt-3-1029-2010">DOI</a> ] |
2010. | |
[ <a href="http://dx.doi.org/10.1029/2009JD013764">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000282166400009">31</a>] | [<a name="WOS:000290751000016">976</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Verdebout. | A. Pazmino. |
<b>Estimating natural UV personal exposure with radiative transfer | <b>O<sub>3</sub> and NO<sub>2</sub> vertical columns using SAOZ |
calculations</b>. | UV-Visible spectrometer</b>. |
<em>RADIATION PROTECTION DOSIMETRY</em>, 141(3):275--282, OCT | In C Boutron, editor, <em>ERCA 9: FROM THE GLOBAL MERCURY CYCLE TO |
2010. | THE DISCOVERIES OF KUIPER BELT OBJECTS</em>, volume 9 of <em>EPJ Web of |
[ <a href="http://dx.doi.org/10.1093/rpd/ncq186">DOI</a> ] | Conferences</em>, pages 201-214. European Res Course Atmosphere (ERCA), 2010. |
| Conference on European Research Course on Atmospheres (ERCA 9) - From |
| the Global Mercury Cycle to the Discoveries of Kuiper Belt Objects, Grenoble, |
| FRANCE, JAN 11-FEB 12, 2010. |
| [ <a href="http://dx.doi.org/10.1051/epjconf/201009016">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000284240400008">32</a>] | [<a name="WOS:000273644800014">977</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Jochen E. Wagner, Federico Angelini, Antti Arola, Mario Blumthaler, Michael | |
Fitzka, Gian Paolo Gobbi, Richard Kift, Axel Kreuter, Harald E. Rieder, Stana | |
Simic, Ann Webb, and Philipp Weihs. | |
<b>Comparison of surface UV irradiance in mountainous regions | |
derived from satellite observations and model calculations with ground-based | |
measurements</b>. | |
<em>METEOROLOGISCHE ZEITSCHRIFT</em>, 19(5, SI):481--490, OCT | |
2010. | |
30th International Conference on Alpine Meteorology (ICAM), Rastatt, | |
GERMANY, MAY 11-15, 2009. | |
[ <a href="http://dx.doi.org/10.1127/0941-2948/2010/0347">DOI</a> ] | |
| |
</td> | |
</tr> | |
| |
| |
<tr valign="top"> | |
<td align="right" class="bibtexnumber"> | |
[<a name="ISI:000273644800014">33</a>] | |
</td> | |
<td class="bibtexitem"> | |
Magdy Abdel Wahab, Mossad El-Metwally, Reda Hassan, Mireille Lefevre, Armel | Magdy Abdel Wahab, Mossad El-Metwally, Reda Hassan, Mireille Lefevre, Armel |
Oumbe, and Lucien Wald. | Oumbe, and Lucien Wald. |
<b>Assessing surface solar irradiance and its long-term variations | <b>Assessing surface solar irradiance and its long-term variations |
in the northern Africa desert climate using Meteosat images</b>. | in the northern Africa desert climate using Meteosat images</b>. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 31(1):261-280, 2010. |
31(1):261--280, 2010. | |
[ <a href="http://dx.doi.org/10.1080/01431160902882645">DOI</a> ] | [ <a href="http://dx.doi.org/10.1080/01431160902882645">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000283066300020">34</a>] | [<a name="WOS:000281762500004">978</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Zinner, G. Wind, S. Platnick, and A. S. Ackerman. | D. G. Loyola R, W. Thomas, R. Spurr, and B. Mayer. |
<b>Testing remote sensing on artificial observations: impact of | <b>Global patterns in daytime cloud properties derived from GOME |
drizzle and 3-D cloud structure on effective radius retrievals</b>. | backscatter UV-VIS measurements</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 10(19):9535--9549, | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 31(16):4295-4318, |
2010. | 2010. |
[ <a href="http://dx.doi.org/10.5194/acp-10-9535-2010">DOI</a> ] | [ <a href="http://dx.doi.org/10.1080/01431160903246741">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2009</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000269440700020">1</a>] | [<a name="WOS:000282079700006">979</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anton, M. Lopez, M. J. Costa, A. Serrano, D. Bortoli, M. Banon, J. M. | Alexei Lyapustin, Tolegen Muldashev, and Yujie Wang. |
Vilaplana, and A. M. Silva. | <b>Code SHARM: fast and accurate radiative transfer over spatially |
<b>Influence of the ozone profile above Madrid (Spain) on Brewer | variable anisotropic surfaces</b>. |
estimation of ozone air mass factor</b>. | In AA Kokhanovsky, editor, <em>LIGHT SCATTERING REVIEWS 5: SINGLE |
<em>ANNALES GEOPHYSICAE</em>, 27(8):3179--3183, 2009. | LIGHT SCATTERING AND RADIATIVE TRANSFER</em>, Springer-Praxis Books in |
| Environmental Sciences, pages 205-247. 2010. |
| [ <a href="http://dx.doi.org/10.1007/978-3-642-10336-0\_6">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000264421900005">2</a>] | [<a name="WOS:000273318800015">980</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Hein Dieter Behr, Rainer Hollmann, and Richard W. Mueller. | Andreas Kazantzidis, Kleareti Tourpali, and Alkiviadis F. Bais. |
<b>Surface radiation at sea - validation of satellite-derived data | <b>Variability of Cloud-free Ultraviolet Dose Rates on Global Scale |
with shipboard measurements</b>. | Due to Modeled Scenarios of Future Ozone Recovery</b>. |
<em>METEOROLOGISCHE ZEITSCHRIFT</em>, 18(1):61--74, 2009. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 86(1):117-122, JAN-FEB 2010. |
[ <a href="http://dx.doi.org/10.1127/0941-2948/2009/356">DOI</a> ] | [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2009.00645.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000262514400019">3</a>] | [<a name="WOS:000363646200018">981</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Eike Bierwirth, Manfred Wendisch, Andre Ehrlich, Birgit Heese, Matthias Tesche, | G. S. Aglietti, S. Redi, A. R. Tatnall, T. Markvart, and S. J. I. Walker. |
Dietrich Althausen, Alexander Schladitz, Detlef Mueller, Sebastian Otto, | <b>Aerostat for Solar Power Generation</b>. |
Thomas Trautmann, Tilman Dinter, Wolfgang von Hoyningen-Huene, and Ralph | In RD Rugescu, editor, <em>SOLAR ENERGY</em>, pages 399-412. 2010. |
Kahn. | |
<b>Spectral surface albedo over Morocco and its impact on | |
radiative forcing of Saharan dust</b>. | |
<em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, | |
61(1):252--269, FEB 2009. | |
[ <a href="http://dx.doi.org/10.1111/j.1600-0889.2008.00395.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000269004200031">4</a>] | [<a name="WOS:000277962100003">982</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Bortoli, A. M. Silva, M. J. Costa, A. F. Domingues, and G. Giovanelli. | Germar Bernhard, Charles R. Booth, and James C. Ehramjian. |
<b>Measurements of stratospheric ozone and nitrogen dioxide at | <b>Climatology of Ultraviolet Radiation at High Latitudes Derived |
Evora, Portugal</b>. | from Measurements of the National Science Foundation's Ultraviolet Spectral |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | Irradiance Monitoring Network</b>. |
30(15-16):4209--4226, 2009. | In <em>UV RADIATION IN GLOBAL CLIMATE CHANGE: MEASUREMENTS, MODELING |
[ <a href="http://dx.doi.org/10.1080/01431160902822849">DOI</a> ] | AND EFFECTS ON ECOSYSTEMS</em>, pages 48-72. 2010. |
| [ <a href="http://dx.doi.org/10.1007/978-3-642-03313-1\_3">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000270009300002">5</a>] | [<a name="WOS:000264747000012">983</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Hanne Breitkreuz, Marion Schroedter-Homscheidt, Thomas Holzer-Popp, and Stefan | D. Pissulla, G. Seckmeyer, R. R. Cordero, M. Blumthaler, B. Schallhart, |
Dech. | A. Webb, R. Kift, A. Smedley, A. F. Bais, N. Kouremeti, A. Cede, J. Herman, |
<b>Short-Range Direct and Diffuse Irradiance Forecasts for Solar | and M. Kowalewskig. |
Energy Applications Based on Aerosol Chemical Transport and Numerical Weather | <b>Comparison of atmospheric spectral radiance measurements from |
Modeling</b>. | five independently calibrated systems</b>. |
<em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, | <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 8(4):516-527, 2009. |
48(9):1766--1779, SEP 2009. | [ <a href="http://dx.doi.org/10.1039/b817018e">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1175/2009JAMC2090.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000270136200003">6</a>] | [<a name="WOS:000337499500009">984</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Emmanuel Brocard, Marc Schneebeli, and Christian Maetzler. | Carlos Domenech, Tobias Wehr, and Kotska Wallace. |
<b>Deriving Winds at Cloud-Base Height With an Infrared Camera</b>. | <b>Top of atmosphere thermal flux retrieval algorithm for the |
<em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, | EarthCARE Mission: A preview</b>. |
47(10):3319--3325, OCT 2009. | In RH Picard, K Schafer, A Comeron, E Kassianov, and CJ Mertens, |
[ <a href="http://dx.doi.org/10.1109/TGRS.2009.2021158">DOI</a> ] | editors, <em>REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE XIV</em>, volume 7475 |
| of <em>Proceedings of SPIE</em>. SPIE Europe, 2009. |
| 14th Conference on Remote Sensing of Clouds and the Atmosphere, |
| Berlin, GERMANY, AUG 31-SEP 01, 2009. |
| [ <a href="http://dx.doi.org/10.1117/12.829465">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000268678400026">7</a>] | [<a name="WOS:000272494200027">985</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. X. Chu and L. H. Liu. | Anna Pribullova and Miroslav Chmelik. |
<b>Analysis of terrestrial solar radiation exergy</b>. | <b>Estimation of UV radiation long-term variability over Slovakia</b>. |
<em>SOLAR ENERGY</em>, 83(8):1390--1404, AUG 2009. | In A Pribullova and S Bicarova, editors, <em>SUSTAINABLE DEVELOPMENT |
[ <a href="http://dx.doi.org/10.1016/j.solener.2009.03.011">DOI</a> ] | AND BIOCLIMATE: REVIEWED CONFERENCE PROCEEDINGS</em>, pages 54+. Slovak Acad Sci; |
| Slovak Bioclimatol Soc; Czech Bioclimatol Soc; SAS, Geophys Inst; SAS, Inst |
| Hydrol; Comenius Univ Bratisiava, Fac Math Phys & Informat; Tech Univ |
| Zvolen; Slovak Univ Agr Nitra; Slovak Hydrometeorol Inst; Slovak Minist Human |
| Hlth; State Forests T Lomnica, Tatra Natl Pk Adm; Environm Protect T Strba, |
| Tata Natl Pk Adm; High Tatras, Adm Off, 2009. |
| International Scientific Conference on Sustainable Development and |
| Bioclimate, Stara Lesna, SLOVAKIA, OCT 05-08, 2009. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000262849900006">8</a>] | [<a name="WOS:000272616600012">986</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Gunther Seckmeyer, Darius Pissulla, and Fernando Labbe. | Joonsuk Lee, Ping Yang, Andrew E. Dessler, Bo-Cai Gao, and Steven Platnick. |
<b>Exploitation of spectral direct UV irradiance measurements</b>. | <b>Distribution and Radiative Forcing of Tropical Thin Cirrus |
<em>METROLOGIA</em>, 46(1):19--25, FEB 2009. | Clouds</b>. |
[ <a href="http://dx.doi.org/10.1088/0026-1394/46/1/003">DOI</a> ] | <em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 66(12):3721-3731, DEC |
| 2009. |
| [ <a href="http://dx.doi.org/10.1175/2009JAS3183.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000337499500009">9</a>] | [<a name="WOS:000272307500002">987</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Carlos Domenech, Tobias Wehr, and Kotska Wallace. | P. Koepke. |
<b>Top of atmosphere thermal flux retrieval algorithm for the | <b>RADIATIVE MODELS FOR THE EVALUATION OF THE UV RADIATION AT THE |
EarthCARE Mission: A preview</b>. | GROUND</b>. |
In Picard, RH and Schafer, K and Comeron, A and Kassianov, E and | <em>RADIATION PROTECTION DOSIMETRY</em>, 137(3-4):188-192, DEC 2009. |
Mertens, CJ, editor, <em>REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE | 4th Workshop on Physical Agents Environmental Monitoring, Vercelli, |
XIV</em>, volume 7475 of <em>Proceedings of SPIE</em>, 2009. | ITALY, MAR 24-27, 2009. |
14th Conference on Remote Sensing of Clouds and the Atmosphere, | [ <a href="http://dx.doi.org/10.1093/rpd/ncp211">DOI</a> ] |
Berlin, GERMANY, AUG 31-SEP 01, 2009. | |
[ <a href="http://dx.doi.org/10.1117/12.829465">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000273060200005">10</a>] | [<a name="WOS:000272827800010">988</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Ehrlich, M. Wendisch, E. Bierwirth, J. F. Gayet, G. Mioche, A. Lampert, and | Ruth Reef, Paulina Kaniewska, and Ove Hoegh-Guldberg. |
B. Mayer. | <b>Coral Skeletons Defend against Ultraviolet Radiation</b>. |
<b>Evidence of ice crystals at cloud top of Arctic boundary-layer | <em>PLOS ONE</em>, 4(11), NOV 25 2009. |
mixed-phase clouds derived from airborne remote sensing</b>. | [ <a href="http://dx.doi.org/10.1371/journal.pone.0007995">DOI</a> ] |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(24):9401--9416, | |
2009. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000270463300003">11</a>] | [<a name="WOS:000270463300003">989</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
H. Eichler, A. Ehrlich, M. Wendisch, G. Mioche, J. F. Gayet, M. Wirth, C. Emde, | H. Eichler, A. Ehrlich, M. Wendisch, G. Mioche, J. F. Gayet, M. Wirth, C. Emde, |
and A. Minikin. | and A. Minikin. |
<b>Influence of ice crystal shape on retrieval of cirrus optical | <b>Influence of ice crystal shape on retrieval of cirrus optical |
thickness and effective radius: A case study</b>. | thickness and effective radius: A case study</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 114, OCT 3 | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 114, OCT 3 2009. |
2009. | |
[ <a href="http://dx.doi.org/10.1029/2009JD012215">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2009JD012215">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000270817600013">12</a>] | [<a name="WOS:000270136200003">990</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Emmanuel Brocard, Marc Schneebeli, and Christian Maetzler. |
| <b>Deriving Winds at Cloud-Base Height With an Infrared Camera</b>. |
| <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, |
| 47(10):3319-3325, OCT 2009. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2009.2021158">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000270817600013">991</a>] |
| </td> |
| <td> |
Juan Huo and Daren Lu. | Juan Huo and Daren Lu. |
<b>Cloud Determination of All-Sky Images under Low-Visibility | <b>Cloud Determination of All-Sky Images under Low-Visibility |
Conditions</b>. | Conditions</b>. |
<em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, | <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, |
26(10):2172--2181, OCT 2009. | 26(10):2172-2181, OCT 2009. |
[ <a href="http://dx.doi.org/10.1175/2009JTECHA1324.1">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/2009JTECHA1324.1">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000271449100003">13</a>] | [<a name="WOS:000269730400004">992</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Pierre Ineichen, Carla Sofia Barroso, Bernhard Geiger, Rainer Hollmann, Anne | A. Osmancevic, L. T. Nilsen, K. Landin-Wilhelmsen, E. Soyland, P. Abusdal |
Marsouin, and Richard Mueller. | Torjesen, T. A. Hagve, M. S. Nenseter, and A. L. Krogstad. |
<b>Satellite Application Facilities irradiance products: hourly | <b>Effect of climate therapy at Gran Canaria on vitamin D |
time step comparison and validation over Europe</b>. | production, blood glucose and lipids in patients with psoriasis</b>. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | <em>JOURNAL OF THE EUROPEAN ACADEMY OF DERMATOLOGY AND VENEREOLOGY</em>, |
30(21):5549--5571, 2009. | 23(10):1133-1140, OCT 2009. |
[ <a href="http://dx.doi.org/10.1080/01431160802680560">DOI</a> ] | [ <a href="http://dx.doi.org/10.1111/j.1468-3083.2009.03245.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000263936600002">14</a>] | [<a name="WOS:000271441400007">993</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
B. Kaercher, B. Mayer, K. Gierens, U. Burkhardt, H. Mannstein, and | Anders Lindfors, Aapo Tanskanen, Antti Arola, Ronald van der A, Alkiviadis |
R. Chatterjee. | Bais, Uwe Feister, Michal Janouch, Weine Josefsson, Tapani Koskela, Kaisa |
<b>Aerodynamic Contrails: Microphysics and Optical Properties</b>. | Lakkala, Peter N. den Outer, Andrew R. D. Smedley, Harry Slaper, and Ann R. |
<em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 66(2):227--243, | Webb. |
FEB 2009. | <b>The PROMOTE UV Record: Toward a Global Satellite-Based |
[ <a href="http://dx.doi.org/10.1175/2008JAS2768.1">DOI</a> ] | Climatology of Surface Ultraviolet Irradiance</b>. |
| <em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS |
| AND REMOTE SENSING</em>, 2(3):207-212, SEP 2009. |
| [ <a href="http://dx.doi.org/10.1109/JSTARS.2009.2030876">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000263325700016">15</a>] | [<a name="WOS:000270009300002">994</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Kazadzis, A. Bais, A. Arola, N. Krotkov, N. Kouremeti, and C. Meleti. | Hanne Breitkreuz, Marion Schroedter-Homscheidt, Thomas Holzer-Popp, and Stefan |
<b>Ozone Monitoring Instrument spectral UV irradiance products: | Dech. |
comparison with ground based measurements at an urban environment</b>. | <b>Short-Range Direct and Diffuse Irradiance Forecasts for Solar |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(2):585--594, | Energy Applications Based on Aerosol Chemical Transport and Numerical Weather |
2009. | Modeling</b>. |
| <em>JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY</em>, |
| 48(9):1766-1779, SEP 2009. |
| [ <a href="http://dx.doi.org/10.1175/2009JAMC2090.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000267543600024">16</a>] | [<a name="WOS:000269463700024">995</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Kazadzis, N. Kouremeti, A. Bais, A. Kazantzidis, and C. Meleti. | Anders Lindfors, Anu Heikkila, Jussi Kaurola, Tapani Koskela, and Kaisa |
<b>Aerosol forcing efficiency in the UVA region from spectral | Lakkala. |
solar irradiance measurements at an urban environment</b>. | <b>Reconstruction of Solar Spectral Surface UV Irradiances Using |
<em>ANNALES GEOPHYSICAE</em>, 27(6):2515--2522, 2009. | Radiative Transfer Simulations</b>. |
| <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 85(5):1233-1239, SEP-OCT |
| 2009. |
| [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2009.00578.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000269004200035">17</a>] | [<a name="WOS:000269087100007">996</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kazantzidis, A. F. Bais, M. M. Zempila, C. Meleti, K. Eleftheratos, and | C. S. Zerefos, K. Eleftheratos, C. Meleti, S. Kazadzis, A. Romanou, C. Ichoku, |
C. S. Zerefos. | G. Tselioudis, and A. Bais. |
<b>Evaluation of ozone column measurements over Greece with | <b>Solar dimming and brightening over Thessaloniki, Greece, and |
NILU-UV multi-channel radiometers</b>. | Beijing, China</b>. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | <em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, |
30(15-16):4273--4281, 2009. | 61(4):657-665, SEP 2009. |
[ <a href="http://dx.doi.org/10.1080/01431160902825073">DOI</a> ] | [ <a href="http://dx.doi.org/10.1111/j.1600-0889.2009.00425.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000272307500002">18</a>] | [<a name="WOS:000268819400007">997</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
P. Koepke. | J. P. Schwarz, H. Stark, J. R. Spackman, T. B. Ryerson, J. Peischl, W. H. |
<b>RADIATIVE MODELS FOR THE EVALUATION OF THE UV RADIATION AT THE | Swartz, R. S. Gao, L. A. Watts, and D. W. Fahey. |
GROUND</b>. | <b>Heating rates and surface dimming due to black carbon aerosol |
<em>RADIATION PROTECTION DOSIMETRY</em>, 137(3-4):188--192, | absorption associated with a major US city</b>. |
DEC 2009. | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 36, AUG 4 2009. |
4th Workshop on Physical Agents Environmental Monitoring, Vercelli, | [ <a href="http://dx.doi.org/10.1029/2009GL039213">DOI</a> ] |
ITALY, MAR 24-27, 2009. | |
[ <a href="http://dx.doi.org/10.1093/rpd/ncp211">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000265743100003">19</a>] | [<a name="WOS:000267885200006">998</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Lampert, A. Ehrlich, A. Doernbrack, O. Jourdan, J. F. Gayet, G. Mioche, | Lill T. N. Nilsen, Elisabeth Soyland, and Anne. L. Krogstad. |
V. Shcherbakov, C. Ritter, and M. Wendisch. | <b>Estimated ultraviolet doses to psoriasis patients during climate |
<b>Microphysical and radiative characterization of a subvisible | therapy</b>. |
midlevel Arctic ice cloud by airborne observations - a case study</b>. | <em>PHOTODERMATOLOGY PHOTOIMMUNOLOGY & PHOTOMEDICINE</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(8):2647--2661, | 25(4):202-208, AUG 2009. |
2009. | [ <a href="http://dx.doi.org/10.1111/j.1600-0781.2009.00443.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000272616600012">20</a>] | [<a name="WOS:000268678400026">999</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Joonsuk Lee, Ping Yang, Andrew E. Dessler, Bo-Cai Gao, and Steven Platnick. | S. X. Chu and L. H. Liu. |
<b>Distribution and Radiative Forcing of Tropical Thin Cirrus | <b>Analysis of terrestrial solar radiation exergy</b>. |
Clouds</b>. | <em>SOLAR ENERGY</em>, 83(8):1390-1404, AUG 2009. |
<em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 66(12):3721--3731, | [ <a href="http://dx.doi.org/10.1016/j.solener.2009.03.011">DOI</a> ] |
DEC 2009. | |
[ <a href="http://dx.doi.org/10.1175/2009JAS3183.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000265904700006">21</a>] | [<a name="WOS:000265904700006">1000</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Li Li, Gu Xing-Fa, Yu Tao, Hu Xiu-Qing, Chen Liang-Fu, and Cheng Tian-Hai. | Li Li, Gu Xing-Fa, Yu Tao, Hu Xiu-Qing, Chen Liang-Fu, and Cheng Tian-Hai. |
<b>INFLUENCE OF DUST AEROSOL ON THE BRIGHTNESS TEMPERATURE OF | <b>INFLUENCE OF DUST AEROSOL ON THE BRIGHTNESS TEMPERATURE OF |
THERMAL INFRARED SPLIT WINDOW AND LAND SURFACE TEMPERATURE RETRIEVAL</b>. | THERMAL INFRARED SPLIT WINDOW AND LAND SURFACE TEMPERATURE RETRIEVAL</b>. |
<em>JOURNAL OF INFRARED AND MILLIMETER WAVES</em>, | <em>JOURNAL OF INFRARED AND MILLIMETER WAVES</em>, 28(2):102-106, APR |
28(2):102--106, APR 2009. | 2009. |
| [ <a href="http://dx.doi.org/10.3724/SP.J.1010.2009.00102">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000265672300015">22</a>] | [<a name="WOS:000264301600012">1001</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anders Lindfors and Antti Arola. | J. C. Perez, A. Cerdena, A. Gonzalez, and M. Armas. |
<b>On the wavelength-dependent attenuation of radiation in the | <b>Nighttime cloud properties retrieval using MODIS and artificial |
UV-visible range by a homogeneous cloud layer</b>. | neural networks</b>. |
In Nakajima, T and Yamasoe, MA, editor, <em>CURRENT PROBLEMS IN | <em>ADVANCES IN SPACE RESEARCH</em>, 43(5):852-858, MAR 2 2009. |
ATMOSPHERIC RADIATION (IRS 2008)</em>, volume 1100 of <em>AIP Conference | [ <a href="http://dx.doi.org/10.1016/j.asr.2008.06.013">DOI</a> ] |
Proceedings</em>, pages 61--64, 2009. | |
International Radiation Symposium (IRC/IAMAS), Foz do Iguacu, | |
BRAZIL, AUG 03-08, 2008. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000269463700024">23</a>] | [<a name="WOS:000263174500007">1002</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anders Lindfors, Anu Heikkila, Jussi Kaurola, Tapani Koskela, and Kaisa | N. Theys, M. Van Roozendael, B. Dils, F. Hendrick, N. Hao, and M. De Maziere. |
Lakkala. | <b>First satellite detection of volcanic bromine monoxide emission |
<b>Reconstruction of Solar Spectral Surface UV Irradiances Using | after the Kasatochi eruption</b>. |
Radiative Transfer Simulations</b>. | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 36, FEB 6 2009. |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 85(5):1233--1239, | [ <a href="http://dx.doi.org/10.1029/2008GL036552">DOI</a> ] |
SEP-OCT 2009. | |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2009.00578.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000271441400007">24</a>] | [<a name="WOS:000263936600002">1003</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anders Lindfors, Aapo Tanskanen, Antti Arola, Ronald van der A, Alkiviadis | B. Kaercher, B. Mayer, K. Gierens, U. Burkhardt, H. Mannstein, and |
Bais, Uwe Feister, Michal Janouch, Weine Josefsson, Tapani Koskela, Kaisa | R. Chatterjee. |
Lakkala, Peter N. den Outer, Andrew R. D. Smedley, Harry Slaper, and Ann R. | <b>Aerodynamic Contrails: Microphysics and Optical Properties</b>. |
Webb. | <em>JOURNAL OF THE ATMOSPHERIC SCIENCES</em>, 66(2):227-243, FEB 2009. |
<b>The PROMOTE UV Record: Toward a Global Satellite-Based | [ <a href="http://dx.doi.org/10.1175/2008JAS2768.1">DOI</a> ] |
Climatology of Surface Ultraviolet Irradiance</b>. | |
<em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS | |
AND REMOTE SENSING</em>, 2(3):207--212, SEP 2009. | |
[ <a href="http://dx.doi.org/10.1109/JSTARS.2009.2030876">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000268062600007">25</a>] | [<a name="WOS:000262849900006">1004</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
B. Mayer. | Raul R. Cordero, Gunther Seckmeyer, Darius Pissulla, and Fernando Labbe. |
<b>Radiative transfer in the cloudy atmosphere</b>. | <b>Exploitation of spectral direct UV irradiance measurements</b>. |
In Boutron, C, editor, <em>ERCA: FROM THE HUMAN DIMENSIONS OF | <em>METROLOGIA</em>, 46(1):19-25, FEB 2009. |
GLOBAL ENVIRONMENTAL CHANGE TO THE OBSERVATION OF THE EARTH FROM SPACE, VOL | [ <a href="http://dx.doi.org/10.1088/0026-1394/46/1/003">DOI</a> ] |
8</em>, volume 1 of <em>EPJ Web of Conferences</em>, pages 75--99, 2009. | |
8th European Research Course on Atmospheres, Grenoble, FRANCE, | |
2008. | |
[ <a href="http://dx.doi.org/10.1140/epjconf/e2009-00912-1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000264132800015">26</a>] | [<a name="WOS:000262514400019">1005</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. Meerkoetter and L. Bugliaro. | Eike Bierwirth, Manfred Wendisch, Andre Ehrlich, Birgit Heese, Matthias Tesche, |
<b>Diurnal evolution of cloud base heights in convective cloud | Dietrich Althausen, Alexander Schladitz, Detlef Mueller, Sebastian Otto, |
fields from MSG/SEVIRI data</b>. | Thomas Trautmann, Tilman Dinter, Wolfgang von Hoyningen-Huene, and Ralph |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(5):1767--1778, | Kahn. |
2009. | <b>Spectral surface albedo over Morocco and its impact on radiative |
| forcing of Saharan dust</b>. |
| <em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, |
| 61(1):252-269, FEB 2009. |
| [ <a href="http://dx.doi.org/10.1111/j.1600-0889.2008.00395.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000269004200028">27</a>] | [<a name="WOS:000267543600024">1006</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Meleti, A. F. Bais, S. Kazadzis, N. Kouremeti, K. Garane, and C. Zerefos. | S. Kazadzis, N. Kouremeti, A. Bais, A. Kazantzidis, and C. Meleti. |
<b>Factors affecting solar ultraviolet irradiance measured since | <b>Aerosol forcing efficiency in the UVA region from spectral solar |
1990 at Thessaloniki, Greece</b>. | irradiance measurements at an urban environment</b>. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | <em>ANNALES GEOPHYSICAE</em>, 27(6):2515-2522, 2009. |
30(15-16):4167--4179, 2009. | [ <a href="http://dx.doi.org/10.5194/angeo-27-2515-2009">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1080/01431160902822864">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000267885200006">28</a>] | [<a name="WOS:000269440700020">1007</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Lill T. N. Nilsen, Elisabeth Soyland, and Anne. L. Krogstad. | M. Anton, M. Lopez, M. J. Costa, A. Serrano, D. Bortoli, M. Banon, J. M. |
<b>Estimated ultraviolet doses to psoriasis patients during | Vilaplana, and A. M. Silva. |
climate therapy</b>. | <b>Influence of the ozone profile above Madrid (Spain) on Brewer |
<em>PHOTODERMATOLOGY PHOTOIMMUNOLOGY & PHOTOMEDICINE</em>, | estimation of ozone air mass factor</b>. |
25(4):202--208, AUG 2009. | <em>ANNALES GEOPHYSICAE</em>, 27(8):3179-3183, 2009. |
| [ <a href="http://dx.doi.org/10.5194/angeo-27-3179-2009">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000269730400004">29</a>] | [<a name="WOS:000263325700016">1008</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Osmancevic, L. T. Nilsen, K. Landin-Wilhelmsen, E. Soyland, P. Abusdal | S. Kazadzis, A. Bais, A. Arola, N. Krotkov, N. Kouremeti, and C. Meleti. |
Torjesen, T. A. Hagve, M. S. Nenseter, and A. L. Krogstad. | <b>Ozone Monitoring Instrument spectral UV irradiance products: |
<b>Effect of climate therapy at Gran Canaria on vitamin D | comparison with ground based measurements at an urban environment</b>. |
production, blood glucose and lipids in patients with psoriasis</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(2):585-594, 2009. |
<em>JOURNAL OF THE EUROPEAN ACADEMY OF DERMATOLOGY AND | [ <a href="http://dx.doi.org/10.5194/acp-9-585-2009">DOI</a> ] |
VENEREOLOGY</em>, 23(10):1133--1140, OCT 2009. | |
[ <a href="http://dx.doi.org/10.1111/j.1468-3083.2009.03245.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000264301600012">30</a>] | [<a name="WOS:000263642000006">1009</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. C. Perez, A. Cerdena, A. Gonzalez, and M. Armas. | K. Tourpali, A. F. Bais, A. Kazantzidis, C. S. Zerefos, H. Akiyoshi, J. Austin, |
<b>Nighttime cloud properties retrieval using MODIS and artificial | C. Bruehl, N. Butchart, M. P. Chipperfield, M. Dameris, M. Deushi, V. Eyring, |
neural networks</b>. | M. A. Giorgetta, D. E. Kinnison, E. Mancini, D. R. Marsh, T. Nagashima, |
<em>ADVANCES IN SPACE RESEARCH</em>, 43(5):852--858, MAR 2 | G. Pitari, D. A. Plummer, E. Rozanov, K. Shibata, and W. Tian. |
2009. | <b>Clear sky UV simulations for the 21st century based on ozone and |
[ <a href="http://dx.doi.org/10.1016/j.asr.2008.06.013">DOI</a> ] | temperature projections from Chemistry-Climate Models</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(4):1165-1172, 2009. |
| [ <a href="http://dx.doi.org/10.5194/acp-9-1165-2009">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000264747000012">31</a>] | [<a name="WOS:000264132800015">1010</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
D. Pissulla, G. Seckmeyer, R. R. Cordero, M. Blumthaler, B. Schallhart, | R. Meerkoetter and L. Bugliaro. |
A. Webb, R. Kift, A. Smedley, A. F. Bais, N. Kouremeti, A. Cede, J. Herman, | <b>Diurnal evolution of cloud base heights in convective cloud |
and M. Kowalewskig. | fields from MSG/SEVIRI data</b>. |
<b>Comparison of atmospheric spectral radiance measurements from | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(5):1767-1778, 2009. |
five independently calibrated systems</b>. | [ <a href="http://dx.doi.org/10.5194/acp-9-1767-2009">DOI</a> ] |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, | |
8(4):516--527, 2009. | |
[ <a href="http://dx.doi.org/10.1039/b817018e">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000272494200027">32</a>] | [<a name="WOS:000265743100003">1011</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anna Pribullova and Miroslav Chmelik. | A. Lampert, A. Ehrlich, A. Doernbrack, O. Jourdan, J. F. Gayet, G. Mioche, |
<b>Estimation of UV radiation long-term variability over | V. Shcherbakov, C. Ritter, and M. Wendisch. |
Slovakia</b>. | <b>Microphysical and radiative characterization of a subvisible |
In Pribullova, A and Bicarova, S, editor, <em>SUSTAINABLE | midlevel Arctic ice cloud by airborne observations - a case study</b>. |
DEVELOPMENT AND BIOCLIMATE: REVIEWED CONFERENCE PROCEEDINGS</em>, pages | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(8):2647-2661, 2009. |
54--55, 2009. | [ <a href="http://dx.doi.org/10.5194/acp-9-2647-2009">DOI</a> ] |
International Scientific Conference on Sustainable Development and | |
Bioclimate, Stara Lesna, SLOVAKIA, OCT 05-08, 2009. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000272827800010">33</a>] | [<a name="WOS:000273060200005">1012</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ruth Reef, Paulina Kaniewska, and Ove Hoegh-Guldberg. | A. Ehrlich, M. Wendisch, E. Bierwirth, J. F. Gayet, G. Mioche, A. Lampert, and |
<b>Coral Skeletons Defend against Ultraviolet Radiation</b>. | B. Mayer. |
<em>PLOS ONE</em>, 4(11), NOV 25 2009. | <b>Evidence of ice crystals at cloud top of Arctic boundary-layer |
[ <a href="http://dx.doi.org/10.1371/journal.pone.0007995">DOI</a> ] | mixed-phase clouds derived from airborne remote sensing</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(24):9401-9416, 2009. |
| [ <a href="http://dx.doi.org/10.5194/acp-9-9401-2009">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000269004200029">34</a>] | [<a name="WOS:000273060200011">1013</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
O. Roots, A. Roose, K. Eerme, and E. Teinemaa. | C. Vigouroux, F. Hendrick, T. Stavrakou, B. Dils, I. De Smedt, C. Hermans, |
<b>Developing long-term monitoring of ozone in Estonia: the | A. Merlaud, F. Scolas, C. Senten, G. Vanhaelewyn, S. Fally, M. Carleer, J. M. |
mandate of the Montreal Protocol</b>. | Metzger, J. F. Muller, M. Van Roozendael, and M. De Maziere. |
<em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, | <b>Ground-based FTIR and MAX-DOAS observations of formaldehyde at |
30(15-16):4181--4194, 2009. | R,union Island and comparisons with satellite and model data</b>. |
[ <a href="http://dx.doi.org/10.1080/01431160902825024">DOI</a> ] | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(24):9523-9544, 2009. |
| [ <a href="http://dx.doi.org/10.5194/acp-9-9523-2009">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000268819400007">35</a>] | [<a name="WOS:000265672300015">1014</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. P. Schwarz, H. Stark, J. R. Spackman, T. B. Ryerson, J. Peischl, W. H. | Anders Lindfors and Antti Arola. |
Swartz, R. S. Gao, L. A. Watts, and D. W. Fahey. | <b>On the wavelength-dependent attenuation of radiation in the |
<b>Heating rates and surface dimming due to black carbon aerosol | UV-visible range by a homogeneous cloud layer</b>. |
absorption associated with a major US city</b>. | In T Nakajima and MA Yamasoe, editors, <em>CURRENT PROBLEMS IN |
<em>GEOPHYSICAL RESEARCH LETTERS</em>, 36, AUG 4 2009. | ATMOSPHERIC RADIATION (IRS 2008)</em>, volume 1100 of <em>AIP Conference |
[ <a href="http://dx.doi.org/10.1029/2009GL039213">DOI</a> ] | Proceedings</em>, pages 61-64. Coordinat Improve Higher Educat Personnel; Ctr |
| Climate Syst Res; Natl Council Sci & Technol Dev; EKO Instruments; Sao Paulo |
| St Res Support Fdn; Natl Inst Sp Res; Itaipu Binatl; Japan Aerosp Explorat |
| Agcy; Kipp & Zonen; Natl Aeronaut & Space Administrat; Univ Sao Paulo, Grad |
| Prorectorate, 2009. |
| International Radiation Symposium (IRC/IAMAS), Foz do Iguacu, BRAZIL, |
| AUG 03-08, 2008. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000263174500007">36</a>] | [<a name="WOS:000268062600007">1015</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
N. Theys, M. Van Roozendael, B. Dils, F. Hendrick, N. Hao, and M. De Maziere. | B. Mayer. |
<b>First satellite detection of volcanic bromine monoxide emission | <b>Radiative transfer in the cloudy atmosphere</b>. |
after the Kasatochi eruption</b>. | In C Boutron, editor, <em>ERCA: FROM THE HUMAN DIMENSIONS OF GLOBAL |
<em>GEOPHYSICAL RESEARCH LETTERS</em>, 36, FEB 6 2009. | ENVIRONMENTAL CHANGE TO THE OBSERVATION OF THE EARTH FROM SPACE, VOL 8</em>, |
[ <a href="http://dx.doi.org/10.1029/2008GL036552">DOI</a> ] | volume 1 of <em>EPJ Web of Conferences</em>, pages 75-99, 2009. |
| 8th European Research Course on Atmospheres, Grenoble, FRANCE, 2008. |
| [ <a href="http://dx.doi.org/10.1140/epjconf/e2009-00912-1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000263642000006">37</a>] | [<a name="WOS:000269004200028">1016</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. Tourpali, A. F. Bais, A. Kazantzidis, C. S. Zerefos, H. Akiyoshi, J. Austin, | C. Meleti, A. F. Bais, S. Kazadzis, N. Kouremeti, K. Garane, and C. Zerefos. |
C. Bruehl, N. Butchart, M. P. Chipperfield, M. Dameris, M. Deushi, V. Eyring, | <b>Factors affecting solar ultraviolet irradiance measured since |
M. A. Giorgetta, D. E. Kinnison, E. Mancini, D. R. Marsh, T. Nagashima, | 1990 at Thessaloniki, Greece</b>. |
G. Pitari, D. A. Plummer, E. Rozanov, K. Shibata, and W. Tian. | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 30(15-16):4167-4179, |
<b>Clear sky UV simulations for the 21st century based on ozone | |
and temperature projections from Chemistry-Climate Models</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(4):1165--1172, | |
2009. | 2009. |
| [ <a href="http://dx.doi.org/10.1080/01431160902822864">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000273060200011">38</a>] | [<a name="WOS:000269004200029">1017</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Vigouroux, F. Hendrick, T. Stavrakou, B. Dils, I. De Smedt, C. Hermans, | O. Roots, A. Roose, K. Eerme, and E. Teinemaa. |
A. Merlaud, F. Scolas, C. Senten, G. Vanhaelewyn, S. Fally, M. Carleer, J. M. | <b>Developing long-term monitoring of ozone in Estonia: the mandate |
Metzger, J. F. Muller, M. Van Roozendael, and M. De Maziere. | of the Montreal Protocol</b>. |
<b>Ground-based FTIR and MAX-DOAS observations of formaldehyde at | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 30(15-16):4181-4194, |
R,union Island and comparisons with satellite and model data</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 9(24):9523--9544, | |
2009. | 2009. |
| [ <a href="http://dx.doi.org/10.1080/01431160902825024">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000269087100007">39</a>] | [<a name="WOS:000269004200031">1018</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. S. Zerefos, K. Eleftheratos, C. Meleti, S. Kazadzis, A. Romanou, C. Ichoku, | D. Bortoli, A. M. Silva, M. J. Costa, A. F. Domingues, and G. Giovanelli. |
G. Tselioudis, and A. Bais. | <b>Measurements of stratospheric ozone and nitrogen dioxide at |
<b>Solar dimming and brightening over Thessaloniki, Greece, and | Evora, Portugal</b>. |
Beijing, China</b>. | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 30(15-16):4209-4226, |
<em>TELLUS SERIES B-CHEMICAL AND PHYSICAL METEOROLOGY</em>, | 2009. |
61(4):657--665, SEP 2009. | [ <a href="http://dx.doi.org/10.1080/01431160902822849">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1111/j.1600-0889.2009.00425.x">DOI</a> ] | |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2008</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000257153400017">1</a>] | [<a name="WOS:000269004200035">1019</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. Ansko, K. Eerme, S. Latt, M. Noorma, and U. Veismann. | A. Kazantzidis, A. F. Bais, M. M. Zempila, C. Meleti, K. Eleftheratos, and |
<b>Study of suitability of AvaSpec array spectrometer for solar UV | C. S. Zerefos. |
field measurements</b>. | <b>Evaluation of ozone column measurements over Greece with NILU-UV |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(12):3247--3253, | multi-channel radiometers</b>. |
2008. | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 30(15-16):4273-4281, |
| 2009. |
| [ <a href="http://dx.doi.org/10.1080/01431160902825073">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000261107900009">2</a>] | [<a name="WOS:000271449100003">1020</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Manuel Anton, Antonio Serrano, Maria L. Cancillo, Jose M. Vilaplana, | Pierre Ineichen, Carla Sofia Barroso, Bernhard Geiger, Rainer Hollmann, Anne |
Victoria E. Cachorro, and Julian Grobner. | Marsouin, and Richard Mueller. |
<b>Correction of Angular Response Error in Brewer UV Irradiance | <b>Satellite Application Facilities irradiance products: hourly |
Measurements</b>. | time step comparison and validation over Europe</b>. |
<em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, | <em>INTERNATIONAL JOURNAL OF REMOTE SENSING</em>, 30(21):5549-5571, |
25(11):2018--2027, NOV 2008. | 2009. |
[ <a href="http://dx.doi.org/10.1175/2008JTECHA1040.1">DOI</a> ] | [ <a href="http://dx.doi.org/10.1080/01431160802680560">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258863900021">3</a>] | [<a name="WOS:000264421900005">1021</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Bernhard, C. R. Booth, and J. C. Ehramjian. | Hein Dieter Behr, Rainer Hollmann, and Richard W. Mueller. |
<b>Comparison of UV irradiance measurements at Summit, Greenland; | <b>Surface radiation at sea - validation of satellite-derived data |
Barrow, Alaska; and South Pole, Antarctica</b>. | with shipboard measurements</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(16):4799--4810, | <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 18(1):61-74, 2009. |
2008. | [ <a href="http://dx.doi.org/10.1127/0941-2948/2009/356">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000257997900002">4</a>] | [<a name="WOS:000262496400003">1022</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Germar Bernhard, Richard L. McKenzie, Michael Kotkamp, Stephen Wood, Charles R. | Kathrin Wapler and Bernhard Mayer. |
Booth, James C. Ehramjian, Paul Johnston, and Sylvia E. Nichol. | <b>A Fast Three-Dimensional Approximation for the Calculation of |
<b>Comparison of ultraviolet spectroradiometers in Antarctica</b>. | Surface Irradiance in Large-Eddy Simulation Models</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 113(D14), | <em>Journal of Applied Meteorology and Climatology</em>, |
JUL 26 2008. | 47(12):3061-3071, DEC 2008. |
[ <a href="http://dx.doi.org/10.1029/2007JD009489">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/2008JAMC1842.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000256468400008">5</a>] | [<a name="WOS:000261855100013">1023</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Mario Blumthaler, Barbara Schallhart, Michael Schwarzmann, Richard McKenzie, | Uelle Kikas, Aivo Reinart, Anna Pugatshova, Eduard Tamm, and Vidmantas |
Paul Johnston, Michael Kotkamp, and Hisako Shiona. | Ulevicius. |
<b>Spectral UV measurements of global irradiance, solar radiance, | <b>Microphysical, chemical and optical aerosol properties in the |
and actinic flux in New Zealand: Intercomparison between instruments and | Baltic Sea region</b>. |
model calculations</b>. | <em>ATMOSPHERIC RESEARCH</em>, 90(2-4, SI):211-222, NOV-DEC 2008. |
<em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2008.02.009">DOI</a> ] |
25(6):945--958, JUN 2008. | |
[ <a href="http://dx.doi.org/10.1175/2007JTECHA1035.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258863900031">6</a>] | [<a name="WOS:000261107900009">1024</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Clerici and F. Melin. | Manuel Anton, Antonio Serrano, Maria L. Cancillo, Jose M. Vilaplana, |
<b>Aerosol direct radiative effect in the Po Valley region derived | Victoria E. Cachorro, and Julian Grobner. |
from AERONET measurements</b>. | <b>Correction of Angular Response Error in Brewer UV Irradiance |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(16):4925--4946, | Measurements</b>. |
2008. | <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, |
| 25(11):2018-2027, NOV 2008. |
| [ <a href="http://dx.doi.org/10.1175/2008JTECHA1040.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258299800007">7</a>] | [<a name="WOS:000260000300011">1025</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Gunther Seckmeyer, and Fernando Labbe. | Riccardo Duca and Fabio Del Frate. |
<b>Cosine error influence on ground-based spectral UV irradiance | <b>Hyperspectral and Multiangle CHRIS-PROBA Images for the |
measurements</b>. | Generation of Land Cover Maps</b>. |
<em>METROLOGIA</em>, 45(4):406--414, AUG 2008. | <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, |
[ <a href="http://dx.doi.org/10.1088/0026-1394/45/4/005">DOI</a> ] | 46(10):2857-2866, OCT 2008. |
| IEEE International Geoscience and Remote Sensing Symposium (IGARSS), |
| Barcelona, SPAIN, JUL 23-27, 2007. |
| [ <a href="http://dx.doi.org/10.1109/TGRS.2008.2000741">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000252951400002">8</a>] | [<a name="WOS:000258785500030">1026</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Gunther Seckmeyer, Darius Pissulla, and Fernando Labbe. | Stanley J. Pope, Michael F. Holick, Steven Mackin, and Dianne E. Godar. |
<b>Uncertainty of experimental integrals: Application to the UV | <b>Action spectrum conversion factors that change erythemally |
index calculation</b>. | weighted to previtamin D<sub>3</sub>-weighted UV doses</b>. |
<em>METROLOGIA</em>, 45(1):1--10, FEB 2008. | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 84(5):1277-1283, SEP-OCT |
[ <a href="http://dx.doi.org/10.1088/0026-1394/45/1/001">DOI</a> ] | 2008. |
| [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2008.00373.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000253104400012">9</a>] | [<a name="WOS:000258510500003">1027</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Xiaoyong Cui, Song Gu, Xinquan Zhao, Jing Wu, Tomomichi Kato, and Yanhong Tang. | Bjorn Johnsen, Berit Kjeldstad, Tommy Nakken Aalerud, Lill Tove Nilsen, Josef |
<b>Diurnal and seasonal variations of UV radiation on the northern | Schreder, Mario Blumthaler, Germar Bernhard, Chrysanthi Topaloglou, Outi |
edge of the Qinghai-Tibetan Plateau</b>. | Meinander, Asadollah Bagheri, James R. Slusser, and John Davis. |
<em>AGRICULTURAL AND FOREST METEOROLOGY</em>, 148(1):144--151, | <b>Intercomparison and harmonization of UV Index measurements from |
JAN 7 2008. | multiband filter radiometers</b>. |
[ <a href="http://dx.doi.org/10.1016/j.agrformet.2007.09.008">DOI</a> ] | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 113(D15), AUG 12 |
| 2008. |
| [ <a href="http://dx.doi.org/10.1029/2007JD009731">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000260000300011">10</a>] | [<a name="WOS:000259613900019">1028</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Riccardo Duca and Fabio Del Frate. | M. Wendisch, O. Hellmuth, A. Ansmann, J. Heintzenberg, R. Engelmann, |
<b>Hyperspectral and Multiangle CHRIS-PROBA Images for the | D. Althausen, H. Eichler, D. Wueller, M. Hu, Y. Zhang, and J. Mao. |
Generation of Land Cover Maps</b>. | <b>Radiative and dynamic effects of absorbing aerosol particles |
<em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, | over the Pearl River Delta, China</b>. |
46(10):2857--2866, OCT 2008. | <em>ATMOSPHERIC ENVIRONMENT</em>, 42(25):6405-6416, AUG 2008. |
IEEE International Geoscience and Remote Sensing Symposium (IGARSS), | [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2008.02.033">DOI</a> ] |
Barcelona, SPAIN, JUL 23-27, 2007. | |
[ <a href="http://dx.doi.org/10.1109/TGRS.2008.2000741">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000253574100039">11</a>] | [<a name="WOS:000258299800007">1029</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Ehret, C. Kiemle, M. Wirth, A. Amediek, A. Fix, and S. Houweling. | Raul R. Cordero, Gunther Seckmeyer, and Fernando Labbe. |
<b>Space-borne remote sensing of CO2, CH4, and N2O by integrated | <b>Cosine error influence on ground-based spectral UV irradiance |
path differential absorption lidar: a sensitivity analysis</b>. | measurements</b>. |
<em>APPLIED PHYSICS B-LASERS AND OPTICS</em>, 90(3-4):593--608, | <em>METROLOGIA</em>, 45(4):406-414, AUG 2008. |
MAR 2008. | [ <a href="http://dx.doi.org/10.1088/0026-1394/45/4/005">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1007/s00340-007-2892-3">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000262411800013">12</a>] | [<a name="WOS:000257997900002">1030</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Ehrlich, E. Bierwirth, M. Wendisch, J. F. Gayet, G. Mioche, A. Lampert, and | Germar Bernhard, Richard L. McKenzie, Michael Kotkamp, Stephen Wood, Charles R. |
J. Heintzenberg. | Booth, James C. Ehramjian, Paul Johnston, and Sylvia E. Nichol. |
<b>Cloud phase identification of Arctic boundary-layer clouds from | <b>Comparison of ultraviolet spectroradiometers in Antarctica</b>. |
airborne spectral reflection measurements: test of three approaches</b>. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 113(D14), JUL 26 |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(24):7493--7505, | |
2008. | 2008. |
| [ <a href="http://dx.doi.org/10.1029/2007JD009489">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000257798200002">13</a>] | [<a name="WOS:000257798200002">1031</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. S. Gao, S. R. Hall, W. H. Swartz, J. P. Schwarz, J. R. Spackman, L. A. | R. S. Gao, S. R. Hall, W. H. Swartz, J. P. Schwarz, J. R. Spackman, L. A. |
Watts, D. W. Fahey, K. C. Aikin, R. E. Shetter, and T. P. Bui. | Watts, D. W. Fahey, K. C. Aikin, R. E. Shetter, and T. P. Bui. |
<b>Calculations of solar shortwave heating rates due to black | <b>Calculations of solar shortwave heating rates due to black |
carbon and ozone absorption using in situ measurements</b>. | carbon and ozone absorption using in situ measurements</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 113(D14), | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 113(D14), JUL 17 |
JUL 17 2008. | 2008. |
[ <a href="http://dx.doi.org/10.1029/2007JD009358">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2007JD009358">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000253930500009">14</a>] | [<a name="WOS:000256872200008">1032</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Christian A. Gueymard. | Andre Ehrlich, Manfred Wendisch, Eike Bierwirth, Andreas Herber, and Alfons |
<b>Prediction and validation of cloudless shortwave solar spectra | Schwarzenboeck. |
incident on horizontal, tilted, or tracking surfaces</b>. | <b>Ice crystal shape effects on solar radiative properties of |
<em>SOLAR ENERGY</em>, 82(3):260--271, 2008. | Arctic mixed-phase clouds -: Dependence on microphysical properties</b>. |
[ <a href="http://dx.doi.org/10.1016/j.solener.2007.04.007">DOI</a> ] | <em>ATMOSPHERIC RESEARCH</em>, 88(3-4):266-276, JUN 2008. |
| [ <a href="http://dx.doi.org/10.1016/j.atmosres.2007.11.018">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258863900026">15</a>] | [<a name="WOS:000256468400008">1033</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Huelsen, J. Groebner, A. Bais, M. Blumthaler, P. Disterhoft, B. Johnsen, | Mario Blumthaler, Barbara Schallhart, Michael Schwarzmann, Richard McKenzie, |
K. O. Lantz, C. Meleti, J. Schreder, J. M. Vilaplana Guerrero, and | Paul Johnston, Michael Kotkamp, and Hisako Shiona. |
L. Ylianttila. | <b>Spectral UV measurements of global irradiance, solar radiance, |
<b>Intercomparison of erythemal broadband radiometers calibrated | and actinic flux in New Zealand: Intercomparison between instruments and |
by seven UV calibration facilities in Europe and the USA</b>. | model calculations</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(16):4865--4875, | <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, 25(6):945-958, |
2008. | JUN 2008. |
| [ <a href="http://dx.doi.org/10.1175/2007JTECHA1035.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258510500003">16</a>] | [<a name="WOS:000255959200003">1034</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Bjorn Johnsen, Berit Kjeldstad, Tommy Nakken Aalerud, Lill Tove Nilsen, Josef | Aleksander Pietruczuk and Janusz Jaroslawski. |
Schreder, Mario Blumthaler, Germar Bernhard, Chrysanthi Topaloglou, Outi | <b>An alternative method for aerosol optical thickness retrieval in |
Meinander, Asadollah Bagheri, James R. Slusser, and John Davis. | the UV range</b>. |
<b>Intercomparison and harmonization of UV Index measurements from | <em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, |
multiband filter radiometers</b>. | 70(7):973-979, MAY 2008. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 113(D15), | [ <a href="http://dx.doi.org/10.1016/j.jastp.2008.01.017">DOI</a> ] |
AUG 12 2008. | |
[ <a href="http://dx.doi.org/10.1029/2007JD009731">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000255603700004">17</a>] | [<a name="WOS:000255603700004">1035</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Michael Kahnert, Anne Dagrun Sandvik, Marina Biryulina, Jakob J. Stamnes, and | Michael Kahnert, Anne Dagrun Sandvik, Marina Biryulina, Jakob J. Stamnes, and |
Knut Stamnes. | Knut Stamnes. |
case study for an arctic ice cloud</b>. | case study for an arctic ice cloud</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
109(7):1196--1218, MAY 2008. | 109(7):1196-1218, MAY 2008. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2007.10.016">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2007.10.016">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000255372300009">18</a>] | [<a name="WOS:000255872300003">1036</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. B. Kerr and V. E. Fioletov. | Aivo Reinart, Uelle Kikas, and Eduard Tamm. |
<b>Surface ultraviolet radiation</b>. | <b>Aerosol components and types in the Baltic Sea region</b>. |
<em>ATMOSPHERE-OCEAN</em>, 46(1):159--184, MAR 2008. | <em>BOREAL ENVIRONMENT RESEARCH</em>, 13(2):103-112, APR 28 2008. |
[ <a href="http://dx.doi.org/10.3137/ao.460108">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000260558200005">19</a>] | [<a name="WOS:000256872800005">1037</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Kerzenmacher, M. A. Wolff, K. Strong, E. Dupuy, K. A. Walker, L. K. | T. Mielonen, T. Kaurila, A. Arola, H. Lihavainen, M. Komppula, and K. E. J. |
Amekudzi, R. L. Batchelor, P. F. Bernath, G. Berthet, T. Blumenstock, C. D. | Lehtinen. |
Boone, K. Bramstedt, C. Brogniez, S. Brohede, J. P. Burrows, V. Catoire, | <b>Effect of aerosols on the infrared transmission in Lakiala, |
J. Dodion, J. R. Drummond, D. G. Dufour, B. Funke, D. Fussen, F. Goutail, | Finland</b>. |
D. W. T. Griffith, C. S. Haley, F. Hendrick, M. Hoepfner, N. Huret, N. Jones, | <em>ATMOSPHERIC ENVIRONMENT</em>, 42(11):2603-2610, APR 2008. |
J. Kar, I. Kramer, E. J. Llewellyn, M. Lopez-Puertas, G. Manney, C. T. | Conference on Visibility, Aerosols, and Atmospheric Optics, Vienna, |
McElroy, C. A. McLinden, S. Melo, S. Mikuteit, D. Murtagh, F. Nichitiu, | AUSTRIA, SEP 03-06, 2006. |
J. Notholt, C. Nowlan, C. Piccolo, J. P. Pommereau, C. Randall, | [ <a href="http://dx.doi.org/10.1016/j.atmosenv.2007.09.038">DOI</a> ] |
P. Raspollini, M. Ridolfi, A. Richter, M. Schneider, O. Schrems, M. Silicani, | |
G. P. Stiller, J. Taylor, C. Tetard, M. Toohey, F. Vanhellemont, T. Warneke, | |
J. M. Zawodny, and J. Zou. | |
<b>Validation of NO2 and NO from the Atmospheric Chemistry | |
Experiment (ACE)</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(19):5801--5841, | |
2008. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000255905100004">20</a>] | [<a name="WOS:000255905100004">1038</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Khodayar, N. Kalthoff, M. Fiebig-Wittmaack, and M. Kohler. | S. Khodayar, N. Kalthoff, M. Fiebig-Wittmaack, and M. Kohler. |
<b>Evolution of the atmospheric boundary-layer structure of an | <b>Evolution of the atmospheric boundary-layer structure of an arid |
arid Andes Valley</b>. | Andes Valley</b>. |
<em>METEOROLOGY AND ATMOSPHERIC PHYSICS</em>, 99(3-4):181--198, | <em>METEOROLOGY AND ATMOSPHERIC PHYSICS</em>, 99(3-4):181-198, APR |
APR 2008. | 2008. |
[ <a href="http://dx.doi.org/10.1007/s00703-007-0274-3">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/s00703-007-0274-3">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000261855100013">21</a>] | [<a name="WOS:000254155800005">1039</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Uelle Kikas, Aivo Reinart, Anna Pugatshova, Eduard Tamm, and Vidmantas | Anders Lindfors and Antti Arola. |
Ulevicius. | <b>On the wavelength-dependent attenuation of UV radiation by |
<b>Microphysical, chemical and optical aerosol properties in the | clouds</b>. |
Baltic Sea region</b>. | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 35(5), MAR 6 2008. |
<em>ATMOSPHERIC RESEARCH</em>, 90(2-4, SI):211--222, NOV-DEC | [ <a href="http://dx.doi.org/10.1029/2007GL032571">DOI</a> ] |
2008. | |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2008.02.009">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000254137200028">22</a>] | [<a name="WOS:000253574100039">1040</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. H. Krumov and D. D. Krezhova. | G. Ehret, C. Kiemle, M. Wirth, A. Amediek, A. Fix, and S. Houweling. |
<b>Imaging of the total solar eclipse on March 29, 2006</b>. | <b>Space-borne remote sensing of CO<sub>2</sub>, CH<sub>4</sub>, |
<em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, | and N<sub>2</sub>O by integrated path differential absorption lidar:: a |
70(2-4):407--413, FEB 2008. | sensitivity analysis</b>. |
International Symposium on Recent Observations and Simulations of | <em>APPLIED PHYSICS B-LASERS AND OPTICS</em>, 90(3-4):593-608, MAR |
the Sun-Earth System (ISROSES), Varna, BULGARIA, SEP 17-22, 2006. | 2008. |
[ <a href="http://dx.doi.org/10.1016/j.jastp.2007.08.071">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/s00340-007-2892-3">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000257516800001">23</a>] | [<a name="WOS:000255372300009">1041</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. Lakkala, A. Arola, A. Heikkila, J. Kaurola, T. Koskela, E. Kyro, | J. B. Kerr and V. E. Fioletov. |
A. Lindfors, O. Meinander, A. Tanskanen, J. Groebner, and G. Huelsen. | <b>Surface ultraviolet radiation</b>. |
<b>Quality assurance of the Brewer spectral UV measurements in | <em>ATMOSPHERE-OCEAN</em>, 46(1):159-184, MAR 2008. |
Finland</b>. | [ <a href="http://dx.doi.org/10.3137/ao.460108">DOI</a> ] |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(13):3369--3383, | |
2008. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000254155800005">24</a>] | [<a name="WOS:000265418200004">1042</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anders Lindfors and Antti Arola. | Michael Wittmann, Hanne Breitkreuz, Marion Schroedter-Homscheidt, and Markus |
<b>On the wavelength-dependent attenuation of UV radiation by | Eck. |
clouds</b>. | <b>Case Studies on the Use of Solar Irradiance Forecast for |
<em>GEOPHYSICAL RESEARCH LETTERS</em>, 35(5), MAR 6 2008. | Optimized Operation Strategies of Solar Thermal Power Plants</b>. |
[ <a href="http://dx.doi.org/10.1029/2007GL032571">DOI</a> ] | <em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS |
| AND REMOTE SENSING</em>, 1(1):18-27, MAR 2008. |
| [ <a href="http://dx.doi.org/10.1109/JSTARS.2008.2001152">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000260927800017">25</a>] | [<a name="WOS:000254137200028">1043</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
O. Meinander, A. Kontu, K. Lakkala, A. Heikkila, L. Ylianttila, and M. Toikka. | A. H. Krumov and D. D. Krezhova. |
<b>Diurnal variations in the UV albedo of arctic snow</b>. | <b>Imaging of the total solar eclipse on March 29, 2006</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(21):6551--6563, | <em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, |
2008. | 70(2-4):407-413, FEB 2008. |
| International Symposium on Recent Observations and Simulations of the |
| Sun-Earth System (ISROSES), Varna, BULGARIA, SEP 17-22, 2006. |
| [ <a href="http://dx.doi.org/10.1016/j.jastp.2007.08.071">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000254416700024">26</a>] | [<a name="WOS:000252951400002">1044</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. J. Michalsky and P. W. Kiedron. | Raul R. Cordero, Gunther Seckmeyer, Darius Pissulla, and Fernando Labbe. |
<b>Comparison of UV-RSS spectral measurements and TUV model runs | <b>Uncertainty of experimental integrals: Application to the UV |
for clear skies for the May 2003 ARM aerosol intensive observation period</b>. | index calculation</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(6):1813--1821, | <em>METROLOGIA</em>, 45(1):1-10, FEB 2008. |
2008. | [ <a href="http://dx.doi.org/10.1088/0026-1394/45/1/001">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000256872800005">27</a>] | [<a name="WOS:000253104400012">1045</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Mielonen, T. Kaurila, A. Arola, H. Lihavainen, M. Komppula, and K. E. J. | Xiaoyong Cui, Song Gu, Xinquan Zhao, Jing Wu, Tomomichi Kato, and Yanhong Tang. |
Lehtinen. | <b>Diurnal and seasonal variations of UV radiation on the northern |
<b>Effect of aerosols on the infrared transmission in Lakiala, | edge of the Qinghai-Tibetan Plateau</b>. |
Finland</b>. | <em>AGRICULTURAL AND FOREST METEOROLOGY</em>, 148(1):144-151, JAN 7 |
<em>ATMOSPHERIC ENVIRONMENT</em>, 42(11):2603--2610, APR | |
2008. | 2008. |
Conference on Visibility, Aerosols, and Atmospheric Optics, Vienna, | [ <a href="http://dx.doi.org/10.1016/j.agrformet.2007.09.008">DOI</a> ] |
AUSTRIA, SEP 03-06, 2006. | |
[ <a href="http://dx.doi.org/10.1016/j.atmosenv.2007.09.038">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000261332500005">28</a>] | [<a name="WOS:000258074300026">1046</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sonia Montecinos, Vincent Favier, Orlando Astudillo, Yann Tracol, Wolfgang | C. Topaloglou, B. Mayer, S. Kazadzis, A. F. Bais, and M. Blumthaler. |
Boersch-Supan, Inge Bischoff-Gauss, and Norbert Kalthoff. | <b>Estimation of photolysis frequencies from TOMS satellite |
<b>The Impact of Agricultural Activities on Fog Formation in an | measurements and routine meteorological observations</b>. |
Arid Zone of Chile</b>. | <em>ANNALES GEOPHYSICAE</em>, 26(7):1965-1975, 2008. |
<em>ERDE</em>, 139(1-2):77--95, 2008. | [ <a href="http://dx.doi.org/10.5194/angeo-26-1965-2008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000255959200003">29</a>] | [<a name="WOS:000254416700023">1047</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Aleksander Pietruczuk and Janusz Jaroslawski. | S. Thiel, L. Ammannato, A. Bais, B. Bandy, M. Blumthaler, B. Bohn, O. Engelsen, |
<b>An alternative method for aerosol optical thickness retrieval | G. P. Gobbi, J. Groebner, E. Jaekel, W. Junkermann, S. Kazadzis, R. Kift, |
in the UV range</b>. | B. Kjeldstad, N. Kouremeti, A. Kylling, B. Mayer, P. S. Monks, C. E. Reeves, |
<em>JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS</em>, | B. Schallhart, R. Scheirer, S. Schmidt, R. Schmitt, J. Schreder, |
70(7):973--979, MAY 2008. | R. Silbernagl, C. Topaloglou, T. M. Thorseth, A. R. Webb, M. Wendisch, and |
[ <a href="http://dx.doi.org/10.1016/j.jastp.2008.01.017">DOI</a> ] | P. Werle. |
| <b>Influence of clouds on the spectral actinic flux density in the |
| lower troposphere (INSPECTRO):: overview of the field campaigns</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(6):1789-1812, 2008. |
| [ <a href="http://dx.doi.org/10.5194/acp-8-1789-2008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258785500030">30</a>] | [<a name="WOS:000254416700024">1048</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Stanley J. Pope, Michael F. Holick, Steven Mackin, and Dianne E. Godar. | J. J. Michalsky and P. W. Kiedron. |
<b>Action spectrum conversion factors that change erythemally | <b>Comparison of UV-RSS spectral measurements and TUV model runs |
weighted to previtamin D(3)-weighted UV doses</b>. | for clear skies for the May 2003 ARM aerosol intensive observation period</b>. |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 84(5):1277--1283, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(6):1813-1821, 2008. |
SEP-OCT 2008. | [ <a href="http://dx.doi.org/10.5194/acp-8-1813-2008">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2008.00373.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000259221400021">31</a>] | [<a name="WOS:000257153400017">1049</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Pribullova and M. Chmelik. | I. Ansko, K. Eerme, S. Latt, M. Noorma, and U. Veismann. |
<b>Typical distribution of the solar erythemal UV radiation over | <b>Study of suitability of AvaSpec array spectrometer for solar UV |
Slovakia</b>. | field measurements</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(17):5393--5401, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(12):3247-3253, 2008. |
2008. | [ <a href="http://dx.doi.org/10.5194/acp-8-3247-2008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000255872300003">32</a>] | [<a name="WOS:000257516800001">1050</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Aivo Reinart, Uelle Kikas, and Eduard Tamm. | K. Lakkala, A. Arola, A. Heikkila, J. Kaurola, T. Koskela, E. Kyro, |
<b>Aerosol components and types in the Baltic Sea region</b>. | A. Lindfors, O. Meinander, A. Tanskanen, J. Groebner, and G. Huelsen. |
<em>BOREAL ENVIRONMENT RESEARCH</em>, 13(2):103--112, APR 28 | <b>Quality assurance of the Brewer spectral UV measurements in |
2008. | Finland</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(13):3369-3383, 2008. |
| [ <a href="http://dx.doi.org/10.5194/acp-8-3369-2008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000262411800012">33</a>] | [<a name="WOS:000258863900018">1051</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
B. Schallhart, M. Blumthaler, J. Schreder, and J. Verdebout. | T. Zinner, A. Marshak, S. Lang, J. V. Martins, and B. Mayer. |
<b>A method to generate near real time UV-Index maps of Austria</b>. | <b>Remote sensing of cloud sides of deep convection: towards a |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(24):7483--7491, | three-dimensional retrieval of cloud particle size profiles</b>. |
2008. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(16):4741-4757, 2008. |
| [ <a href="http://dx.doi.org/10.5194/acp-8-4741-2008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258769500003">34</a>] | [<a name="WOS:000258863900021">1052</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Gunther Seckmeyer, Merle Glandorf, Cordula Wichers, Richard McKenzie, | G. Bernhard, C. R. Booth, and J. C. Ehramjian. |
Diamantino Henriques, Fernanda Carvalho, Ann Webb, Anna-Maria Siani, | <b>Comparison of UV irradiance measurements at Summit, Greenland; |
Alkiviadis Bais, Berit Kjeldstad, Colette Brogniez, Peter Werle, Tapani | Barrow, Alaska; and South Pole, Antarctica</b>. |
Koskela, Kaisa Lakkala, Julian Groebner, Harry Slaper, Peter denOuter, and | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(16):4799-4810, 2008. |
Uwe Feister. | [ <a href="http://dx.doi.org/10.5194/acp-8-4799-2008">DOI</a> ] |
<b>Europe's darker atmosphere in the UV-B</b>. | |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, | |
7(8):925--930, AUG 2008. | |
[ <a href="http://dx.doi.org/10.1039/b804109a">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000252506900024">35</a>] | [<a name="WOS:000258863900026">1053</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Gunther Seckmeyer, Darius Pissulla, Merle Glandorf, Diamantino Henriques, Bjorn | G. Huelsen, J. Groebner, A. Bais, M. Blumthaler, P. Disterhoft, B. Johnsen, |
Johnsen, Ann Webb, Anna-Maria Siani, Alkis Bais, Berit Kjeldstad, Colette | K. O. Lantz, C. Meleti, J. Schreder, J. M. Vilaplana Guerrero, and |
Brogniez, Jacqueline Lenoble, Brian Gardiner, Peter Kirsch, Tapani Koskela, | L. Ylianttila. |
Jussi Kaurola, Beate Uhlmann, Harry Slaper, Peter den Outer, Michal Janouch, | <b>Intercomparison of erythemal broadband radiometers calibrated by |
Peter Werle, Julian Groebner, Bernhard Mayer, Alain de la Casiniere, Stana | seven UV calibration facilities in Europe and the USA</b>. |
Simic, and Fernanda Carvalho. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(16):4865-4875, 2008. |
<b>Variability of UV irradiance in Europe</b>. | |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 84(1):172--179, | |
JAN-FEB 2008. | |
[ <a href="http://dx.doi.org/10.1111/j.1751-1097.2007.00216.x">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258074300026">36</a>] | [<a name="WOS:000258863900031">1054</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Topaloglou, B. Mayer, S. Kazadzis, A. F. Bais, and M. Blumthaler. | M. Clerici and F. Melin. |
<b>Estimation of photolysis frequencies from TOMS satellite | <b>Aerosol direct radiative effect in the Po Valley region derived |
measurements and routine meteorological observations</b>. | from AERONET measurements</b>. |
<em>ANNALES GEOPHYSICAE</em>, 26(7):1965--1975, 2008. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(16):4925-4946, 2008. |
| [ <a href="http://dx.doi.org/10.5194/acp-8-4925-2008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000262496400003">37</a>] | [<a name="WOS:000259221400021">1055</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Kathrin Wapler and Bernhard Mayer. | A. Pribullova and M. Chmelik. |
<b>A Fast Three-Dimensional Approximation for the Calculation of | <b>Typical distribution of the solar erythemal UV radiation over |
Surface Irradiance in Large-Eddy Simulation Models</b>. | Slovakia</b>. |
<em>Journal of Applied Meteorology and Climatology</em>, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(17):5393-5401, 2008. |
47(12):3061--3071, DEC 2008. | [ <a href="http://dx.doi.org/10.5194/acp-8-5393-2008">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1175/2008JAMC1842.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000259613900019">38</a>] | [<a name="WOS:000260558200005">1056</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Wendisch, O. Hellmuth, A. Ansmann, J. Heintzenberg, R. Engelmann, | T. Kerzenmacher, M. A. Wolff, K. Strong, E. Dupuy, K. A. Walker, L. K. |
D. Althausen, H. Eichler, D. Wueller, M. Hu, Y. Zhang, and J. Mao. | Amekudzi, R. L. Batchelor, P. F. Bernath, G. Berthet, T. Blumenstock, C. D. |
<b>Radiative and dynamic effects of absorbing aerosol particles | Boone, K. Bramstedt, C. Brogniez, S. Brohede, J. P. Burrows, V. Catoire, |
over the Pearl River Delta, China</b>. | J. Dodion, J. R. Drummond, D. G. Dufour, B. Funke, D. Fussen, F. Goutail, |
<em>ATMOSPHERIC ENVIRONMENT</em>, 42(25):6405--6416, AUG | D. W. T. Griffith, C. S. Haley, F. Hendrick, M. Hoepfner, N. Huret, N. Jones, |
2008. | J. Kar, I. Kramer, E. J. Llewellyn, M. Lopez-Puertas, G. Manney, C. T. |
[ <a href="http://dx.doi.org/10.1016/j.atmosenv.2008.02.033">DOI</a> ] | McElroy, C. A. McLinden, S. Melo, S. Mikuteit, D. Murtagh, F. Nichitiu, |
| J. Notholt, C. Nowlan, C. Piccolo, J. P. Pommereau, C. Randall, |
| P. Raspollini, M. Ridolfi, A. Richter, M. Schneider, O. Schrems, M. Silicani, |
| G. P. Stiller, J. Taylor, C. Tetard, M. Toohey, F. Vanhellemont, T. Warneke, |
| J. M. Zawodny, and J. Zou. |
| <b>Validation of NO<sub>2</sub> and NO from the Atmospheric |
| Chemistry Experiment (ACE)</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(19):5801-5841, 2008. |
| [ <a href="http://dx.doi.org/10.5194/acp-8-5801-2008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000265418200004">39</a>] | [<a name="WOS:000260927800017">1057</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Michael Wittmann, Hanne Breitkreuz, Marion Schroedter-Homscheidt, and Markus | O. Meinander, A. Kontu, K. Lakkala, A. Heikkila, L. Ylianttila, and M. Toikka. |
Eck. | <b>Diurnal variations in the UV albedo of arctic snow</b>. |
<b>Case Studies on the Use of Solar Irradiance Forecast for | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(21):6551-6563, 2008. |
Optimized Operation Strategies of Solar Thermal Power Plants</b>. | [ <a href="http://dx.doi.org/10.5194/acp-8-6551-2008">DOI</a> ] |
<em>IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS | |
AND REMOTE SENSING</em>, 1(1):18--27, MAR 2008. | |
[ <a href="http://dx.doi.org/10.1109/JSTARS.2008.2001152">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000252704300005">40</a>] | [<a name="WOS:000262411800012">1058</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Mareile A. Wolff, Andreas Herber, Hans-Werner Jacobi, Otto Schrems, Jan Hoops, | B. Schallhart, M. Blumthaler, J. Schreder, and J. Verdebout. |
and Wilfried Ruhe. | <b>A method to generate near real time UV-Index maps of Austria</b>. |
<b>The development of a miniature optical sensor for balloon-borne | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(24):7483-7491, 2008. |
measurements of ozone profiles</b>. | [ <a href="http://dx.doi.org/10.5194/acp-8-7483-2008">DOI</a> ] |
<em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, | |
25(1):57--70, JAN 2008. | |
[ <a href="http://dx.doi.org/10.1175/2007JTECHA844.1">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000258863900018">41</a>] | [<a name="WOS:000262411800013">1059</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Zinner, A. Marshak, S. Lang, J. V. Martins, and B. Mayer. | A. Ehrlich, E. Bierwirth, M. Wendisch, J. F. Gayet, G. Mioche, A. Lampert, and |
<b>Remote sensing of cloud sides of deep convection: towards a | J. Heintzenberg. |
three-dimensional retrieval of cloud particle size profiles</b>. | <b>Cloud phase identification of Arctic boundary-layer clouds from |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(16):4741--4757, | airborne spectral reflection measurements: test of three approaches</b>. |
2008. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 8(24):7493-7505, 2008. |
| [ <a href="http://dx.doi.org/10.5194/acp-8-7493-2008">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2007</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000247140900001">1</a>] | [<a name="WOS:000261332500005">1060</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Anton, V. E. Cachorro, J. M. Vilaplana, N. A. Krotkov, A. Serrano, | Sonia Montecinos, Vincent Favier, Orlando Astudillo, Yann Tracol, Wolfgang |
C. Toledano, B. de la Morena, and J. R. Herman. | Boersch-Supan, Inge Bischoff-Gauss, and Norbert Kalthoff. |
<b>Total ozone mapping spectrometer retrievals of noon | <b>The Impact of Agricultural Activities on Fog Formation in an |
erythemal-CIE ultraviolet irradiance compared with Brewer ground-based | Arid Zone of Chile</b>. |
measurements at El Arenosillo (southwestern Spain)</b>. | <em>ERDE</em>, 139(1-2):77-95, 2008. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D11), | |
JUN 7 2007. | |
[ <a href="http://dx.doi.org/10.1029/2006JD007254">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000249072900007">2</a>] | [<a name="WOS:000252704300005">1061</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Arola, A. Lindfors, A. Natunen, and K. E. J. Lehtinen. | Mareile A. Wolff, Andreas Herber, Hans-Werner Jacobi, Otto Schrems, Jan Hoops, |
<b>A case study on biomass burning aerosols: effects on aerosol | and Wilfried Ruhe. |
optical properties and surface radiation levels</b>. | <b>The development of a miniature optical sensor for balloon-borne |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(16):4257--4266, | measurements of ozone profiles</b>. |
2007. | <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, 25(1):57-70, |
| JAN 2008. |
| [ <a href="http://dx.doi.org/10.1175/2007JTECHA844.1">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000246306500007">3</a>] | [<a name="WOS:000252506900024">1062</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Germar Bernhard, Charles R. Booth, James C. Ehramjian, Robert Stone, and | Gunther Seckmeyer, Darius Pissulla, Merle Glandorf, Diamantino Henriques, Bjorn |
Ellsworth G. Dutton. | Johnsen, Ann Webb, Anna-Maria Siani, Alkis Bais, Berit Kjeldstad, Colette |
<b>Ultraviolet and visible radiation at Barrow, Alaska: | Brogniez, Jacqueline Lenoble, Brian Gardiner, Peter Kirsch, Tapani Koskela, |
Climatology and influencing factors on the basis of version 2 National | Jussi Kaurola, Beate Uhlmann, Harry Slaper, Peter den Outer, Michal Janouch, |
Science Foundation network data</b>. | Peter Werle, Julian Groebner, Bernhard Mayer, Alain de la Casiniere, Stana |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D9), | Simic, and Fernanda Carvalho. |
MAY 2 2007. | <b>Variability of UV irradiance in Europe</b>. |
[ <a href="http://dx.doi.org/10.1029/2006JD007865">DOI</a> ] | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 84(1):172-179, JAN-FEB 2008. |
| [ <a href="http://dx.doi.org/10.1111/j.1751-1097.2007.00216.x">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000251023200007">4</a>] | [<a name="WOS:000253930500009">1063</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
H. Breitkreuz, M. Schroedter-Homscheidt, and T. Holzer-Popp. | Christian A. Gueymard. |
<b>A case study to prepare for the utilization of aerosol | <b>Prediction and validation of cloudless shortwave solar spectra |
forecasts in solar energy industries</b>. | incident on horizontal, tilted, or tracking surfaces</b>. |
<em>SOLAR ENERGY</em>, 81(11):1377--1385, 2007. | <em>SOLAR ENERGY</em>, 82(3):260-271, 2008. |
[ <a href="http://dx.doi.org/10.1016/j.solener.2007.01.009">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.solener.2007.04.007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243724600004">5</a>] | [<a name="WOS:000252013700007">1064</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Abidan Cerdena, Albano Gonzalez, and Juan C. Perez. | K. Sebastian Schmidt, Peter Pilewskie, Steven Platnick, Gala Wind, Ping Yang, |
<b>Remote sensing of water cloud parameters using neural | and Manfred Wendisch. |
networks</b>. | <b>Comparing irradiance fields derived from Moderate Resolution |
<em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, | Imaging Spectroradiometer airborne simulator cirrus cloud retrievals with |
24(1):52--63, JAN 2007. | solar spectral flux radiometer measurements</b>. |
[ <a href="http://dx.doi.org/10.1175/JTECH1943.1">DOI</a> ] | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D24), DEC 28 |
| 2007. |
| [ <a href="http://dx.doi.org/10.1029/2007JD008711">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000247103000002">6</a>] | [<a name="WOS:000251525400001">1065</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Gunther Seckmeyer, and Fernando Labbe. | Anders Lindfors, Jussi Kaurola, Antti Arola, Tapani Koskela, Kaisa Lakkala, |
<b>Evaluating the uncertainties of data rendered by computational | Weine Josefsson, Jan Asle Olseth, and Bjorn Johnsen. |
models</b>. | <b>A method for reconstruction of past UV radiation based on |
<em>METROLOGIA</em>, 44(3):L23--L30, JUN 2007. | radiative transfer modeling: Applied to four stations in northern Europe</b>. |
[ <a href="http://dx.doi.org/10.1088/0026-1394/44/3/N02">DOI</a> ] | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D23), DEC 4 |
| 2007. |
| [ <a href="http://dx.doi.org/10.1029/2007JD008454">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000247749900006">7</a>] | [<a name="WOS:000251925600019">1066</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Raul R. Cordero, Gunther Seckmeyer, Darius Pissulla, Luis Dasilva, and Fernando | Regina Kalchgruber, Michael W. Blair, Stephen W. S. McKeever, Eric R. Benton, |
Labbe. | and Dennis K. Reust. |
<b>Uncertainty evaluation of the spectral UV irradiance evaluated | <b>Progress towards robotic in-situ dating of martian sediments |
by using the UVSPEC radiative transfer model</b>. | using optically stimulated luminescence</b>. |
<em>OPTICS COMMUNICATIONS</em>, 276(1):44--53, AUG 1 2007. | <em>PLANETARY AND SPACE SCIENCE</em>, 55(14):2203-2217, NOV 2007. |
[ <a href="http://dx.doi.org/10.1016/j.optcom.2007.04.008">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.pss.2007.09.002">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000256657303036">8</a>] | [<a name="WOS:000250110800026">1067</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Fabio Del Frate, Riccardo Duca, Pasquale Sellitto, and Domenico Solimini. | Miika Kuivikko, Tapio Kotiaho, Kari Hartonen, Aapo Tanskanen, and Anssi V. |
<b>Use of CHRIS PROBA images for land use products</b>. | Vahatalo. |
In <em>IGARSS: 2007 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE | <b>Modeled direct photolytic decomposition of Polybrominated |
SENSING SYMPOSIUM, VOLS 1-12: SENSING AND UNDERSTANDING OUR PLANET</em>, IEEE | diphenyl ethers in the Baltic sea and the Atlantic ocean</b>. |
International Symposium on Geoscience and Remote Sensing (IGARSS), pages | <em>ENVIRONMENTAL SCIENCE & TECHNOLOGY</em>, 41(20):7016-7021, OCT 15 |
2804--2807. IEEE, 2007. | 2007. |
IEEE International Geoscience and Remote Sensing Symposium (IGARSS), | [ <a href="http://dx.doi.org/10.1021/es070422+">DOI</a> ] |
Barcelona, SPAIN, JUL 23-27, 2007. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243204700006">9</a>] | [<a name="WOS:000249900100010">1068</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Kare Edvardsen, Magritt Brustad, Ola Engelsen, and Lage Aksnes. | J. Lenoble, M. Herman, J. L. Deuze, B. Lafrance, R. Santer, and D. Tanre. |
<b>The solar UV radiation level needed for cutaneous production of | <b>A successive order of scattering code for solving the vector |
vitamin D-3 in the face. A study conducted among subjects living at a high | equation of transfer in the earth's atmosphere with aerosols</b>. |
latitude (68 degrees N)</b>. | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 6(1):57--62, | 107(3):479-507, OCT 2007. |
2007. | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2007.03.010">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1039/b613263d">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000246456100008">10</a>] | [<a name="WOS:000249518000006">1069</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. Emde and B. Mayer. | Mathias Schreier, Hermann Mannstein, Veronika Eyring, and Heinrich Bovensmann. |
<b>Simulation of solar radiation during a total eclipse: a | <b>Global ship track distribution and radiative forcing from 1 year |
challenge for radiative transfer</b>. | of AATSR data</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(9):2259--2270, | <em>GEOPHYSICAL RESEARCH LETTERS</em>, 34(17), SEP 13 2007. |
2007. | [ <a href="http://dx.doi.org/10.1029/2007GL030664">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000253868600022">11</a>] | [<a name="WOS:000249105400017">1070</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Albano Gonzalez, Abidan Cerdena, Juan C. Perez, and Ana M. Diaz. | Ping Yang, Lei Zhang, Gang Hong, Shaima L. Nasiri, Bryan A. Baum, Hung-Lung |
<b>Cloud climatology in the Canary Islands region using NOAA-AVHRR | Huang, Michael D. King, and Steven Platnick. |
data</b>. | <b>Differences between collection 4 and 5 MODIS ice cloud |
In Comeron, A and Picard, RH and Schafer, KS and Slusser, JR and | optical/microphysical products and their impact on radiative forcing |
Amodeo, A, editor, <em>REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE XII</em>, | simulations</b>. |
volume 6745 of <em>Proceedings of SPIE</em>, 2007. | <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, |
Conference on Remote Sensing of Clouds and the Atmosphere XII, | 45(9):2886-2899, SEP 2007. |
Florence, ITALY, SEP 17-19, 2007. | [ <a href="http://dx.doi.org/10.1109/TGRS.2007.898276">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1117/12.737551">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000247430200008">12</a>] | [<a name="WOS:000247749900006">1071</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Gonzi, O. Dubovik, D. Baumgartner, and E. Putz. | Raul R. Cordero, Gunther Seckmeyer, Darius Pissulla, Luis Dasilva, and Fernando |
<b>Clear-sky aerosol radiative forcing effects based on multi-site | Labbe. |
AERONET observations over Europe</b>. | <b>Uncertainty evaluation of the spectral UV irradiance evaluated |
<em>METEOROLOGY AND ATMOSPHERIC PHYSICS</em>, 96(3-4):277--291, | by using the UVSPEC radiative transfer model</b>. |
JUN 2007. | <em>OPTICS COMMUNICATIONS</em>, 276(1):44-53, AUG 1 2007. |
[ <a href="http://dx.doi.org/10.1007/s00703-006-0212-9">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.optcom.2007.04.008">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000249785700008">13</a>] | [<a name="WOS:000247140900001">1072</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Hendrick, M. Van Roozendael, M. P. Chipperfield, M. Dorf, F. Goutail, | M. Anton, V. E. Cachorro, J. M. Vilaplana, N. A. Krotkov, A. Serrano, |
X. Yang, C. Fayt, C. Hermans, K. Pfeilsticker, J.-P. Pommereau, J. A. Pyle, | C. Toledano, B. de la Morena, and J. R. Herman. |
N. Theys, and M. De Maziere. | <b>Total ozone mapping spectrometer retrievals of noon |
<b>Retrieval of stratospheric and tropospheric BrO profiles and | erythemal-CIE ultraviolet irradiance compared with Brewer ground-based |
columns using ground-based zenith-sky DOAS observations at Harestua, 60 | measurements at El Arenosillo (southwestern Spain)</b>. |
degrees N</b>. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D11), JUN 7 |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(18):4869--4885, | |
2007. | 2007. |
| [ <a href="http://dx.doi.org/10.1029/2006JD007254">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000247976900005">14</a>] | [<a name="WOS:000247157000012">1073</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Petr Hlavinka, Miroslav Trnka, Daniela Semeradova, Zdenek Zalud, Martin | Bernhard Mayer and Claudia Emde. |
Dubrovsky, Josef Eitzinger, Philipp Weihs, Stana Simic, Mario Blumthaler, and | <b>Comment on “Glory phenomenon informs of presence and phase |
Joseph Schreder. | state of liquid water in cold clouds” by Anatoly N. Nevzorov</b>. |
<b>Empirical model for estimating daily erythemal UV radiation in | <em>ATMOSPHERIC RESEARCH</em>, 84(4):410-419, JUN 2007. |
the Central European region</b>. | [ <a href="http://dx.doi.org/10.1016/j.atmosres.2007.01.005">DOI</a> ] |
<em>METEOROLOGISCHE ZEITSCHRIFT</em>, 16(2):183--190, 2007. | |
[ <a href="http://dx.doi.org/10.1127/0941-2948/2007/0191">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000253868600028">15</a>] | [<a name="WOS:000247430200008">1074</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Alessandro Ipe, Cedric Bertrand, Nicolas Clerbaux, Steven Dewitte, and Luis | S. Gonzi, O. Dubovik, D. Baumgartner, and E. Putz. |
Gonzalez. | <b>Clear-sky aerosol radiative forcing effects based on multi-site |
<b>The GERB Edition 1 products SEVIRI scene identification - art. | AERONET observations over Europe</b>. |
no. 674512</b>. | <em>METEOROLOGY AND ATMOSPHERIC PHYSICS</em>, 96(3-4):277-291, JUN |
In Comeron, A and Picard, RH and Schafer, KS and Slusser, JR and | 2007. |
Amodeo, A, editor, <em>REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE XII</em>, | [ <a href="http://dx.doi.org/10.1007/s00703-006-0212-9">DOI</a> ] |
volume 6745 of <em>PROCEEDINGS OF THE SOCIETY OF PHOTO-OPTICAL | |
INSTRUMENTATION ENGINEERS (SPIE)</em>, page 74512, 2007. | |
Conference on Remote Sensing of Clouds and the Atmosphere XII, | |
Florence, ITALY, SEP 17-19, 2007. | |
[ <a href="http://dx.doi.org/10.1117/12.737309">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000244829800008">16</a>] | [<a name="WOS:000247103000002">1075</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Olga V. Kalashnikova, Franklin P. Mills, Annmarie Eldering, and Don Anderson. | Raul R. Cordero, Gunther Seckmeyer, and Fernando Labbe. |
<b>Application of satellite and ground-based data to investigate | <b>Evaluating the uncertainties of data rendered by computational |
the UV radiative effects of Australian aerosols</b>. | models</b>. |
<em>REMOTE SENSING OF ENVIRONMENT</em>, 107(1-2, SI):65--80, | <em>METROLOGIA</em>, 44(3):L23-L30, JUN 2007. |
MAR 15 2007. | [ <a href="http://dx.doi.org/10.1088/0026-1394/44/3/N02">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.rse.2006.07.025">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000251925600019">17</a>] | [<a name="WOS:000246306500007">1076</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Regina Kalchgruber, Michael W. Blair, Stephen W. S. McKeever, Eric R. Benton, | Germar Bernhard, Charles R. Booth, James C. Ehramjian, Robert Stone, and |
and Dennis K. Reust. | Ellsworth G. Dutton. |
<b>Progress towards robotic in-situ dating of martian sediments | <b>Ultraviolet and visible radiation at Barrow, Alaska: Climatology |
using optically stimulated luminescence</b>. | and influencing factors on the basis of version 2 National Science Foundation |
<em>PLANETARY AND SPACE SCIENCE</em>, 55(14):2203--2217, NOV | network data</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D9), MAY 2 |
2007. | 2007. |
[ <a href="http://dx.doi.org/10.1016/j.pss.2007.09.002">DOI</a> ] | [ <a href="http://dx.doi.org/10.1029/2006JD007865">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000252166000004">18</a>] | [<a name="WOS:000245951600002">1077</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Kazadzis, A. Bais, M. Blumthaler, A. Webb, N. Kouremeti, R. Kift, | Manfred Wendisch, Ping Yang, and Peter Pilewskie. |
B. Schallhart, and A. Kazantzidis. | <b>Effects of ice crystal habit on thermal infrared radiative |
<b>Effects of total solar eclipse of 29 March 2006 on surface | properties and forcing of cirrus</b>. |
radiation</b>. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D8), APR 17 |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(22):5775--5783, | |
2007. | 2007. |
| [ <a href="http://dx.doi.org/10.1029/2006JD007899">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000252166200003">19</a>] | [<a name="WOS:000247221400017">1078</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kazantzidis, A. F. Bais, C. Emde, S. Kazadzis, and C. S. Zerefos. | K. Sebastian Schmidt, Victor Venema, Francesca Di Giuseppe, Ronald Scheirer, |
<b>Attenuation of global ultraviolet and visible irradiance over | Manfred Wendisch, and Peter Pilewskie. |
Greece during the total solar eclipse of 29 March 2006</b>. | <b>Reproducing cloud microphysical and irradiance measurements |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(23):5959--5969, | using three 3D cloud generators</b>. |
| <em>QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY</em>, 133(624, |
| A):765-780, APR 2007. |
| [ <a href="http://dx.doi.org/10.1002/qj.53">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000244829800008">1079</a>] |
| </td> |
| <td> |
| Olga V. Kalashnikova, Franklin P. Mills, Annmarie Eldering, and Don Anderson. |
| <b>Application of satellite and ground-based data to investigate |
| the UV radiative effects of Australian aerosols</b>. |
| <em>REMOTE SENSING OF ENVIRONMENT</em>, 107(1-2, SI):65-80, MAR 15 |
2007. | 2007. |
| [ <a href="http://dx.doi.org/10.1016/j.rse.2006.07.025">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000242562100003">20</a>] | [<a name="WOS:000242562100003">1080</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. A. Kokhanovsky, B. Mayer, V. V. Rozanov, K. Wapler, J. P. Burrows, and | A. A. Kokhanovsky, B. Mayer, V. V. Rozanov, K. Wapler, J. P. Burrows, and |
U. Schumann. | U. Schumann. |
oxygen A-band</b>. | oxygen A-band</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, |
103(3):460--477, FEB 2007. | 103(3):460-477, FEB 2007. |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2006.06.003">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.jqsrt.2006.06.003">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000248733000018">21</a>] | [<a name="WOS:000245747800008">1081</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Kokhanovsky, B. Mayer, W. von Hoyningen-Huene, S. Schmidt, and P. Pilewskie. | T. Wagner, J. P. Burrows, T. Deutschmann, B. Dix, C. von Friedeburg, U. Friess, |
<b>Retrieval of cloud spherical albedo from top-of-atmosphere | F. Hendrick, K. P. Heue, H. Irie, H. Iwabuchi, Y. Kanaya, J. Keller, C. A. |
reflectance measurements performed at a single observation angle</b>. | McLinden, H. Oetjen, E. Palazzi, A. Petritoli, U. Platt, O. Postylyakov, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(13):3633--3637, | J. Pukite, A. Richter, M. van Roozendael, A. Rozanov, V. Rozanov, |
2007. | R. Sinreich, S. Sanghavi, and F. Wittrock. |
| <b>Comparison of box-air-mass-factors and radiances for |
| Multiple-Axis Differential Optical Absorption Spectroscopy (MAX-DOAS) |
| geometries calculated from different UV/visible radiative transfer models</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(7):1809-1833, 2007. |
| [ <a href="http://dx.doi.org/10.5194/acp-7-1809-2007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243172900017">22</a>] | [<a name="WOS:000246456100008">1082</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Alexander A. Kokhanovsky, Bernhard Mayer, Vladimir V. Rozanov, Kathrin Wapler, | C. Emde and B. Mayer. |
Lok N. Lamsal, Mark Weber, John P. Burrows, and Ulrich Schumann. | <b>Simulation of solar radiation during a total eclipse: a |
<b>Satellite ozone retrieval under broken cloud conditions: An | challenge for radiative transfer</b>. |
error analysis based on Monte Carlo simulations</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(9):2259-2270, 2007. |
<em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, | [ <a href="http://dx.doi.org/10.5194/acp-7-2259-2007">DOI</a> ] |
45(1):187--194, JAN 2007. | |
[ <a href="http://dx.doi.org/10.1109/TGRS.2006.886188">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000252166500005">23</a>] | [<a name="WOS:000248733000018">1083</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
W. Krebs, H. Mannstein, L. Bugliaro, and B. Mayer. | A. Kokhanovsky, B. Mayer, W. von Hoyningen-Huene, S. Schmidt, and P. Pilewskie. |
<b>Technical note: A new day- and night-time meteosat second | <b>Retrieval of cloud spherical albedo from top-of-atmosphere |
Generation Cirrus Detection Algorithm MeCiDA</b>. | reflectance measurements performed at a single observation angle</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(24):6145--6159, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(13):3633-3637, 2007. |
2007. | [ <a href="http://dx.doi.org/10.5194/acp-7-3633-2007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000250110800026">24</a>] | [<a name="WOS:000248733400003">1084</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Miika Kuivikko, Tapio Kotiaho, Kari Hartonen, Aapo Tanskanen, and Anssi V. | C. S. Zerefos, V. T. Gerogiannis, D. Balis, S. C. Zerefos, and A. Kazantzidis. |
Vahatalo. | <b>Atmospheric effects of volcanic eruptions as seen by famous |
<b>Modeled direct photolytic decomposition of Polybrominated | artists and depicted in their paintings</b>. |
diphenyl ethers in the Baltic sea and the Atlantic ocean</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(15):4027-4042, 2007. |
<em>ENVIRONMENTAL SCIENCE & TECHNOLOGY</em>, 41(20):7016--7021, | [ <a href="http://dx.doi.org/10.5194/acp-7-4027-2007">DOI</a> ] |
OCT 15 2007. | |
[ <a href="http://dx.doi.org/10.1021/es070422+">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000249900100010">25</a>] | [<a name="WOS:000249072900007">1085</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J. Lenoble, M. Herman, J. L. Deuze, B. Lafrance, R. Santer, and D. Tanre. | A. Arola, A. Lindfors, A. Natunen, and K. E. J. Lehtinen. |
<b>A successive order of scattering code for solving the vector | <b>A case study on biomass burning aerosols: effects on aerosol |
equation of transfer in the earth's atmosphere with aerosols</b>. | optical properties and surface radiation levels</b>. |
<em>JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER</em>, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(16):4257-4266, 2007. |
107(3):479--507, OCT 2007. | [ <a href="http://dx.doi.org/10.5194/acp-7-4257-2007">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1016/j.jqsrt.2007.03.010">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000251525400001">26</a>] | [<a name="WOS:000249785700002">1086</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anders Lindfors, Jussi Kaurola, Antti Arola, Tapani Koskela, Kaisa Lakkala, | N. Theys, M. Van Roozendael, F. Hendrick, C. Fayt, C. Hermans, J.-L. Baray, |
Weine Josefsson, Jan Asle Olseth, and Bjorn Johnsen. | F. Goutail, J.-P. Pommereau, and M. De Maziere. |
<b>A method for reconstruction of past UV radiation based on | <b>Retrieval of stratospheric and tropospheric BrO columns from |
radiative transfer modeling: Applied to four stations in northern Europe</b>. | multi-axis DOAS measurements at Reunion Island (21° S, 56° E)</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D23), | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(18):4733-4749, 2007. |
DEC 4 2007. | [ <a href="http://dx.doi.org/10.5194/acp-7-4733-2007">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1029/2007JD008454">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000247157000012">27</a>] | [<a name="WOS:000249785700008">1087</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Bernhard Mayer and Claudia Emde. | F. Hendrick, M. Van Roozendael, M. P. Chipperfield, M. Dorf, F. Goutail, |
<b>Comment on “Glory phenomenon informs of presence and phase | X. Yang, C. Fayt, C. Hermans, K. Pfeilsticker, J.-P. Pommereau, J. A. Pyle, |
state of liquid water in cold clouds” by Anatoly N. Nevzorov</b>. | N. Theys, and M. De Maziere. |
<em>ATMOSPHERIC RESEARCH</em>, 84(4):410--419, JUN 2007. | <b>Retrieval of stratospheric and tropospheric BrO profiles and |
[ <a href="http://dx.doi.org/10.1016/j.atmosres.2007.01.005">DOI</a> ] | columns using ground-based zenith-sky DOAS observations at Harestua, 60° N</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(18):4869-4885, 2007. |
| [ <a href="http://dx.doi.org/10.5194/acp-7-4869-2007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000251239200009">28</a>] | [<a name="WOS:000251239200009">1088</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. M. Nissen, K. Matthes, U. Langematz, and B. Mayer. | K. M. Nissen, K. Matthes, U. Langematz, and B. Mayer. |
<b>Towards a better representation of the solar cycle in general | <b>Towards a better representation of the solar cycle in general |
circulation models</b>. | circulation models</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(20):5391--5400, | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(20):5391-5400, 2007. |
2007. | [ <a href="http://dx.doi.org/10.5194/acp-7-5391-2007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000252013700007">29</a>] | [<a name="WOS:000252166000004">1089</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. Sebastian Schmidt, Peter Pilewskie, Steven Platnick, Gala Wind, Ping Yang, | S. Kazadzis, A. Bais, M. Blumthaler, A. Webb, N. Kouremeti, R. Kift, |
and Manfred Wendisch. | B. Schallhart, and A. Kazantzidis. |
<b>Comparing irradiance fields derived from Moderate Resolution | <b>Effects of total solar eclipse of 29 March 2006 on surface |
Imaging Spectroradiometer airborne simulator cirrus cloud retrievals with | radiation</b>. |
solar spectral flux radiometer measurements</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(22):5775-5783, 2007. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D24), | [ <a href="http://dx.doi.org/10.5194/acp-7-5775-2007">DOI</a> ] |
DEC 28 2007. | |
[ <a href="http://dx.doi.org/10.1029/2007JD008711">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000247221400017">30</a>] | [<a name="WOS:000252166200003">1090</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. Sebastian Schmidt, Victor Venema, Francesca Di Giuseppe, Ronald Scheirer, | A. Kazantzidis, A. F. Bais, C. Emde, S. Kazadzis, and C. S. Zerefos. |
Manfred Wendisch, and Peter Pilewskie. | <b>Attenuation of global ultraviolet and visible irradiance over |
<b>Reproducing cloud microphysical and irradiance measurements | Greece during the total solar eclipse of 29 March 2006</b>. |
using three 3D cloud generators</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(23):5959-5969, 2007. |
<em>QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY</em>, | [ <a href="http://dx.doi.org/10.5194/acp-7-5959-2007">DOI</a> ] |
133(624, A):765--780, APR 2007. | |
[ <a href="http://dx.doi.org/10.1002/qj.53">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000249518000006">31</a>] | [<a name="WOS:000252166500005">1091</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Mathias Schreier, Hermann Mannstein, Veronika Eyring, and Heinrich Bovensmann. | W. Krebs, H. Mannstein, L. Bugliaro, and B. Mayer. |
<b>Global ship track distribution and radiative forcing from 1 | <b>Technical note: A new day- and night-time meteosat second |
year of AATSR data</b>. | Generation Cirrus Detection Algorithm MeCiDA</b>. |
<em>GEOPHYSICAL RESEARCH LETTERS</em>, 34(17), SEP 13 2007. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(24):6145-6159, 2007. |
[ <a href="http://dx.doi.org/10.1029/2007GL030664">DOI</a> ] | [ <a href="http://dx.doi.org/10.5194/acp-7-6145-2007">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000249814700022">32</a>] | [<a name="WOS:000243172900017">1092</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Schroedter-Homscheidt, S. Bofinger, H. Breitkreuz, G. Heilscher, and | Alexander A. Kokhanovsky, Bernhard Mayer, Vladimir V. Rozanov, Kathrin Wapler, |
S. Stettler. | Lok N. Lamsal, Mark Weber, John P. Burrows, and Ulrich Schumann. |
<b>Usage of earth observation for solar energy market development | <b>Satellite ozone retrieval under broken cloud conditions: An |
lessons learned</b>. | error analysis based on Monte Carlo simulations</b>. |
In <em>Proceedings of the ASME International Solar Energy | <em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, |
Conference</em>, pages 157--166. ASME, Solar Energy Div; Colorado Renewable | 45(1):187-194, JAN 2007. |
Energy Soc, 2007. | [ <a href="http://dx.doi.org/10.1109/TGRS.2006.886188">DOI</a> ] |
International Solar Energy Conference, Denver, CO, JUL 08-13, 2006. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000256657301206">33</a>] | [<a name="WOS:000256657301206">1093</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Pasquale Sellitto, Alessandro Burini, Fabio Del Frate, Domenico Solimini, and | Pasquale Sellitto, Alessandro Burini, Fabio Del Frate, Domenico Solimini, and |
Stefano Casadio. | Stefano Casadio. |
<b>Dedicated Neural Networks algorithms for direct estimation of | <b>Dedicated Neural Networks algorithms for direct estimation of |
tropospheric ozone from satellite measurements</b>. | tropospheric ozone from satellite measurements</b>. |
In <em>IGARSS: 2007 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE | In <em>IGARSS: 2007 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING |
SENSING SYMPOSIUM, VOLS 1-12: SENSING AND UNDERSTANDING OUR PLANET</em>, IEEE | SYMPOSIUM, VOLS 1-12: SENSING AND UNDERSTANDING OUR PLANET</em>, IEEE |
International Symposium on Geoscience and Remote Sensing IGARSS, pages | International Symposium on Geoscience and Remote Sensing IGARSS, pages |
1685--1688. IEEE, 2007. | 1685-1688. IEEE, 2007. |
IEEE International Geoscience and Remote Sensing Symposium (IGARSS), | IEEE International Geoscience and Remote Sensing Symposium (IGARSS), |
Barcelona, SPAIN, JUL 23-27, 2007. | Barcelona, SPAIN, JUL 23-27, 2007. |
| [ <a href="http://dx.doi.org/10.1109/IGARSS.2007.4423141">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000249785700002">34</a>] | [<a name="WOS:000256657303036">1094</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
N. Theys, M. Van Roozendael, F. Hendrick, C. Fayt, C. Hermans, J.-L. Baray, | Fabio Del Frate, Riccardo Duca, Pasquale Sellitto, and Domenico Solimini. |
F. Goutail, J.-P. Pommereau, and M. De Maziere. | <b>Use of CHRIS PROBA images for land use products</b>. |
<b>Retrieval of stratospheric and tropospheric BrO columns from | In <em>IGARSS: 2007 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING |
multi-axis DOAS measurements at Reunion Island (21 degrees S, 56 degrees | SYMPOSIUM, VOLS 1-12: SENSING AND UNDERSTANDING OUR PLANET</em>, IEEE |
E)</b>. | International Symposium on Geoscience and Remote Sensing IGARSS, pages |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(18):4733--4749, | 2804-2807. IEEE, 2007. |
2007. | IEEE International Geoscience and Remote Sensing Symposium (IGARSS), |
| Barcelona, SPAIN, JUL 23-27, 2007. |
| [ <a href="http://dx.doi.org/10.1109/IGARSS.2007.4423425">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000245747800008">35</a>] | [<a name="WOS:000243724600004">1095</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Wagner, J. P. Burrows, T. Deutschmann, B. Dix, C. von Friedeburg, U. Friess, | Abidan Cerdena, Albano Gonzalez, and Juan C. Perez. |
F. Hendrick, K. P. Heue, H. Irie, H. Iwabuchi, Y. Kanaya, J. Keller, C. A. | <b>Remote sensing of water cloud parameters using neural networks</b>. |
McLinden, H. Oetjen, E. Palazzi, A. Petritoli, U. Platt, O. Postylyakov, | <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, 24(1):52-63, |
J. Pukite, A. Richter, M. van Roozendael, A. Rozanov, V. Rozanov, | JAN 2007. |
R. Sinreich, S. Sanghavi, and F. Wittrock. | [ <a href="http://dx.doi.org/10.1175/JTECH1943.1">DOI</a> ] |
<b>Comparison of box-air-mass-factors and radiances for | |
Multiple-Axis Differential Optical Absorption Spectroscopy (MAX-DOAS) | |
geometries calculated from different UV/visible radiative transfer models</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(7):1809--1833, | |
2007. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000245951600002">36</a>] | [<a name="WOS:000247976900005">1096</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Manfred Wendisch, Ping Yang, and Peter Pilewskie. | Petr Hlavinka, Miroslav Trnka, Daniela Semeradova, Zdenek Zalud, Martin |
<b>Effects of ice crystal habit on thermal infrared radiative | Dubrovsky, Josef Eitzinger, Philipp Weihs, Stana Simic, Mario Blumthaler, and |
properties and forcing of cirrus</b>. | Joseph Schreder. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 112(D8), | <b>Empirical model for estimating daily erythemal UV radiation in |
APR 17 2007. | the Central European region</b>. |
[ <a href="http://dx.doi.org/10.1029/2006JD007899">DOI</a> ] | <em>METEOROLOGISCHE ZEITSCHRIFT</em>, 16(2):183-190, 2007. |
| [ <a href="http://dx.doi.org/10.1127/0941-2948/2007/0191">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000249925700014">37</a>] | [<a name="WOS:000243204700006">1097</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| Kare Edvardsen, Magritt Brustad, Ola Engelsen, and Lage Aksnes. |
| <b>The solar UV radiation level needed for cutaneous production of |
| vitamin D<sub>3</sub> in the face.: A study conducted among subjects living |
| at a high latitude (68° N)</b>. |
| <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 6(1):57-62, 2007. |
| [ <a href="http://dx.doi.org/10.1039/b613263d">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000249925700014">1098</a>] |
| </td> |
| <td> |
Sigrid Wuttke, Saad El Naggar, Thaddaus Bluszcz, and Otto Schrems. | Sigrid Wuttke, Saad El Naggar, Thaddaus Bluszcz, and Otto Schrems. |
<b>Ship-borne measurements of erythemal UV irradiance and ozone | <b>Ship-borne measurements of erythemal UV irradiance and ozone |
content in various climate zones</b>. | content in various climate zones</b>. |
<em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, | <em>PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES</em>, 6(10):1081-1088, |
6(10):1081--1088, 2007. | 2007. |
[ <a href="http://dx.doi.org/10.1039/b617602j">DOI</a> ] | [ <a href="http://dx.doi.org/10.1039/b617602j">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000249105400017">38</a>] | [<a name="WOS:000249814700022">1099</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Ping Yang, Lei Zhang, Gang Hong, Shaima L. Nasiri, Bryan A. Baum, Hung-Lung | M. Schroedter-Homscheidt, S. Bofinger, H. Breitkreuz, G. Heilscher, and |
Huang, Michael D. King, and Steven Platnick. | S. Stettler. |
<b>Differences between collection 4 and 5 MODIS ice cloud | <b>Usage of earth observation for solar energy market development |
optical/microphysical products and their impact on radiative forcing | lessons learned</b>. |
simulations</b>. | In <em>Proceedings of the ASME International Solar Energy |
<em>IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING</em>, | Conference</em>, pages 157-166. ASME, Solar Energy Div; Colorado Renewable |
45(9):2886--2899, SEP 2007. | Energy Soc, 2007. |
[ <a href="http://dx.doi.org/10.1109/TGRS.2007.898276">DOI</a> ] | International Solar Energy Conference, Denver, CO, JUL 08-13, 2006. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000248733400003">39</a>] | [<a name="WOS:000253868600028">1100</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
C. S. Zerefos, V. T. Gerogiannis, D. Balis, S. C. Zerefos, and A. Kazantzidis. | Alessandro Ipe, Cedric Bertrand, Nicolas Clerbaux, Steven Dewitte, and Luis |
<b>Atmospheric effects of volcanic eruptions as seen by famous | Gonzalez. |
artists and depicted in their paintings</b>. | <b>The GERB Edition 1 products SEVIRI scene identification - art. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 7(15):4027--4042, | no. 674512</b>. |
2007. | In A Comeron, RH Picard, KS Schafer, JR Slusser, and A Amodeo, |
| editors, <em>REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE XII</em>, volume 6745 |
| of <em>PROCEEDINGS OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS |
| (SPIE)</em>, page 74512, 2007. |
| Conference on Remote Sensing of Clouds and the Atmosphere XII, |
| Florence, ITALY, SEP 17-19, 2007. |
| [ <a href="http://dx.doi.org/10.1117/12.737309">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2006</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000253868600022">1101</a>] |
| </td> |
| <td> |
| Albano Gonzalez, Abidan Cerdena, Juan C. Perez, and Ana M. Diaz. |
| <b>Cloud climatology in the Canary Islands region using NOAA-AVHRR |
| data</b>. |
| In A Comeron, RH Picard, KS Schafer, JR Slusser, and A Amodeo, |
| editors, <em>REMOTE SENSING OF CLOUDS AND THE ATMOSPHERE XII</em>, volume 6745 |
| of <em>Proceedings of SPIE</em>, 2007. |
| Conference on Remote Sensing of Clouds and the Atmosphere XII, |
| Florence, ITALY, SEP 17-19, 2007. |
| [ <a href="http://dx.doi.org/10.1117/12.737551">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000238070900001">1</a>] | [<a name="WOS:000251023200007">1102</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
G. Bernhard, C. R. Booth, J. C. Ehramjian, and S. E. Nichol. | H. Breitkreuz, M. Schroedter-Homscheidt, and T. Holzer-Popp. |
<b>UV climatology at McMurdo Station, Antarctica, based on version | <b>A case study to prepare for the utilization of aerosol forecasts |
2 data of the National Science Foundation's Ultraviolet Radiation Monitoring | in solar energy industries</b>. |
Network</b>. | <em>SOLAR ENERGY</em>, 81(11):1377-1385, 2007. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 111(D11), | [ <a href="http://dx.doi.org/10.1016/j.solener.2007.01.009">DOI</a> ] |
JUN 2 2006. | |
[ <a href="http://dx.doi.org/10.1029/2005JD005857">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000260989400151">2</a>] | [<a name="WOS:000242176100004">1103</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A. Cerdena, A. Gonzalez, and J. C. Perez. | F. Melin, M. Clerici, G. Zibordi, and B. Bulgarelli. |
<b>Neural Network based retrieval of cirrus properties</b>. | <b>Aerosol variability in the Adriatic Sea from automated optical |
In <em>2006 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING | field measurements and Sea-viewing Wide Field-of-view Sensor (SeaWiFS)</b>. |
SYMPOSIUM, VOLS 1-8</em>, IEEE International Symposium on Geoscience and Remote | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 111(D22), NOV 16 |
Sensing (IGARSS), pages 589--592. IEEE; IEEE Geosci & Remote Sensing | 2006. |
Soc; Canadian Remote Sensing Soc; NASA; NOAA; Off Naval Res; Natl Polar | [ <a href="http://dx.doi.org/10.1029/2006JD007226">DOI</a> ] |
Orbiting Operat Environm Satellite Syst; Japan Aerosp Explorat Agcy; Ball | |
Aerosp & Technologies Corp; Cooperat Inst Res Atmosphere; Colorado State | |
Univ; Univ Colorado; Int Union Radio Sci, 2006. | |
IEEE International Geoscience and Remote Sensing Symposium (IGARSS), | |
Denver, CO, JUL 31-AUG 04, 2006. | |
[ <a href="http://dx.doi.org/10.1109/IGARSS.2006.155">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000240367200001">3</a>] | [<a name="WOS:000241643600004">1104</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
K. Eerme, U. Veismann, and S. Latt. | M. Schreier, A. A. Kokhanovsky, V. Eyring, L. Bugliaro, H. Mannstein, B. Mayer, |
<b>Proxy-based reconstruction of erythemal UV doses over Estonia | H. Bovensmann, and J. P. Burrows. |
for 1955-2004</b>. | <b>Impact of ship emissions on the microphysical, optical and |
<em>ANNALES GEOPHYSICAE</em>, 24(7):1767--1782, 2006. | radiative properties of marine stratus: a case study</b>. |
| <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 6:4925-4942, OCT 30 2006. |
| [ <a href="http://dx.doi.org/10.5194/acp-6-4925-2006">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000234892400001">4</a>] | [<a name="WOS:000242117100004">1105</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F Hendrick, M Van Roozendael, A Kylling, A Petritoli, A Rozanov, S Sanghavi, | Stephen W. S. McKeever, Regina Kalchgruber, Michael W. Blair, and Shubhada Deo. |
R Schofield, C von Friedeburg, T Wagner, F Wittrock, D Fonteyn, and | <b>Development of methods for in situ dating of martian sediments</b>. |
M De Maziere. | <em>RADIATION MEASUREMENTS</em>, 41(7-8, SI):750-754, AUG-SEP 2006. |
<b>Intercomparison exercise between different radiative transfer | 11th International Conference on Luminescence and Electron Spin |
models used for the interpretation of ground-based zenith-sky and multi-axis | Resonance Dating, Kardinal Schulte Haus, Cologne, GERMANY, JUL 24-29, 2005. |
DOAS observations</b>. | [ <a href="http://dx.doi.org/10.1016/j.radmeas.2006.05.006">DOI</a> ] |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 6:93--108, JAN 20 | |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000239489700009">1106</a>] |
| </td> |
| <td> |
| T. Zinner and B. Mayer. |
| <b>Remote sensing of stratocumulus clouds: Uncertainties and biases |
| due to inhomogeneity</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 111(D14), JUL 26 |
2006. | 2006. |
| [ <a href="http://dx.doi.org/10.1029/2005JD006955">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000241724100006">5</a>] | [<a name="WOS:000239181600028">1107</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. Hollmann and R. W. Mueller. | O. Meinander, S. Kazadzis, M. Blumthaler, L. Ylianttila, B. Johnsen, |
<b>Use of SEVIRI data for an operational CMSAF surface radiation | K. Lakkala, T. Koskela, and W. Josefsson. |
budget processing and its validation</b>. | <b>Diurnal discrepancies in spectral solar UV radiation |
In Danesy, D, editor, <em>Proceedings of the 3rd MSG RAO | measurements</b>. |
Workshop</em>, volume 619 of <em>ESA SPECIAL PUBLICATIONS</em>, pages 31--35. | <em>APPLIED OPTICS</em>, 45(21):5346-5357, JUL 20 2006. |
European Space Agcy, 2006. | [ <a href="http://dx.doi.org/10.1364/AO.45.005346">DOI</a> ] |
3rd MSG RAO Workshop, Helsinki, FINLAND, JUN 15, 2006. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000240088800003">6</a>] | [<a name="WOS:000239002200002">1108</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
R. Hollmann, R. W. Mueller, and A. Gratzki. | S. Wuttke and G. Seckmeyer. |
<b>CM-SAF surface radiation budget: First results with AVHRR | <b>Spectral radiance and sky luminance in Antarctica: a case |
data</b>. | study</b>. |
In Burrows, JP and Eichmann, KU and LLewellyn, EJ, editor, <em> | <em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 85(3-4):131-148, JUL |
ATMOSPHERIC REMOTE SENSING: EARTH'S SURFACE, TROPOSPHERE, STRATOSPHERE AND | 2006. |
MESOSPHERE - II</em>, volume 37 of <em>ADVANCES IN SPACE RESEARCH</em>, pages | [ <a href="http://dx.doi.org/10.1007/s00704-005-0188-2">DOI</a> ] |
2166--2171. Comm Space Res, 2006. | |
35th COSPAR Scientific Assembly, Paris, FRANCE, JUL 18-25, 2004. | |
[ <a href="http://dx.doi.org/10.1016/j.asr.2005.10.044">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243894900020">7</a>] | [<a name="WOS:000238070900001">1109</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
B. Johnsen, B. Kjeldstad, T. N. Aalerud, L. T. Nilsen, J. Schreder, | G. Bernhard, C. R. Booth, J. C. Ehramjian, and S. E. Nichol. |
M. Blumthaler, G. Bernhard, A. Bagheri, B. Bhattarai, C. Topaloglou, | <b>UV climatology at McMurdo Station, Antarctica, based on version |
G. Zablock, O. Meinander, B. A. Hoiskar, R. Haugen, W. S. Durham, G. Janson, | 2 data of the National Science Foundation's Ultraviolet Radiation Monitoring |
A. R. Marrero, A. Dahlback, D. Bolsee, J. R. Slusser, J. Stamnes, C. Torres, | Network</b>. |
A. R. D. Smedley, L. E. Paulsson, K. Lakkala, A. R. Webb, J. B. Orbaek, A. A. | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 111(D11), JUN 2 |
Grimenes, T. Ringstad, T. Lange, and W. Josefsson. | 2006. |
<b>International intercomparison of multiband filter radiometers | [ <a href="http://dx.doi.org/10.1029/2005JD005857">DOI</a> ] |
in Oslo 2005</b>. | |
In Slusser, JR and Schafer, K and Comeron, A, editor, <em>Remote | |
Sensing of Clouds and the Atmosphere XI</em>, volume 6362 of <em>PROCEEDINGS | |
OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE)</em>, pages | |
U212--U223. SPIE Europe, 2006. | |
Conference on Remote Sensing of Clouds and the Atmosphere XI, | |
Stockholm, SWEDEN, SEP 11-14, 2006. | |
[ <a href="http://dx.doi.org/10.1117/12.689918">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000237048300036">8</a>] | [<a name="WOS:000237412100002">1110</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
| T Zinner, B Mayer, and M Schröder. |
| <b>Determination of three-dimensional cloud structures from |
| high-resolution radiance data</b>. |
| <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 111(D8), APR 26 |
| 2006. |
| [ <a href="http://dx.doi.org/10.1029/2005JD006062">DOI</a> ] |
| |
| </td> |
| </tr> |
| |
| |
| <tr valign="top"> |
| <td align="right"> |
| [<a name="WOS:000237048300036">1111</a>] |
| </td> |
| <td> |
R Kift, AR Webb, J Page, J Rimmer, and S Janjai. | R Kift, AR Webb, J Page, J Rimmer, and S Janjai. |
<b>A web-based tool for UV irradiance data: Predictions for | <b>A web-based tool for UV irradiance data: Predictions for |
European and southeast Asian sites</b>. | European and southeast Asian sites</b>. |
<em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 82(2):579--586, | <em>PHOTOCHEMISTRY AND PHOTOBIOLOGY</em>, 82(2):579-586, MAR-APR 2006. |
MAR-APR 2006. | |
[ <a href="http://dx.doi.org/10.1562/2005-04-20-RA-494">DOI</a> ] | [ <a href="http://dx.doi.org/10.1562/2005-04-20-RA-494">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243894900054">9</a>] | [<a name="WOS:000235074600023">1112</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Tapani Koskela, Anu Heikkila, Jussi Kaurola, Anders Lindfors, Aapo Tanskanen, | M Wendisch, D Müller, I Mattis, and A Ansmann. |
and Peter den Outer. | <b>Potential of lidar backscatter data to estimate solar aerosol |
<b>Spectral solar UV monitoring - worth it?</b> | radiative forcing</b>. |
In Slusser, JR and Schafer, K and Comeron, A, editor, <em>REMOTE | <em>APPLIED OPTICS</em>, 45(4):770-783, FEB 1 2006. |
SENSING OF CLOUDS AND THE ATMOSPHERE XI</em>, volume 6362 of <em>Proceedings | [ <a href="http://dx.doi.org/10.1364/AO.45.000770">DOI</a> ] |
of SPIE</em>. SPIE Europe, 2006. | |
Conference on Remote Sensing of Clouds and the Atmosphere XI, | |
Stockholm, SWEDEN, SEP 11-14, 2006. | |
[ <a href="http://dx.doi.org/10.1117/12.689760">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243894900026">10</a>] | [<a name="WOS:000236108900007">1113</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Bozena M. Lapeta, Zbigniew Ustrnul, and Aleksander Curylo. | S Wuttke, G Seckmeyer, G Bernhard, J Ehramjian, R McKenzie, P Johnston, and |
<b>Use of the visibility in the radiation transfer modeling in UV | M O'Neill. |
range</b>. | <b>New spectroradiometers complying with the NDSC standards</b>. |
In Slusser, JR and Schafer, K and Comeron, A, editor, <em>Remote | <em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, 23(2):241-251, |
Sensing of Clouds and the Atmosphere XI</em>, volume 6362 of <em>PROCEEDINGS | FEB 2006. |
OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE)</em>, pages | [ <a href="http://dx.doi.org/10.1175/JTECH1826.1">DOI</a> ] |
U274--U281. SPIE Europe, 2006. | |
Conference on Remote Sensing of Clouds and the Atmosphere XI, | |
Stockholm, SWEDEN, SEP 11-14, 2006. | |
[ <a href="http://dx.doi.org/10.1117/12.689683">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243894900030">11</a>] | [<a name="WOS:000234892400001">1114</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Anders V. Lindfors, Bjorn Holmgren, and Georg Hansen. | F Hendrick, M Van Roozendael, A Kylling, A Petritoli, A Rozanov, S Sanghavi, |
<b>Long-term erythemal UV at Abisko and Helsinki estimated using | R Schofield, C von Friedeburg, T Wagner, F Wittrock, D Fonteyn, and |
total ozone, sunshine duration, and snow depth</b>. | M De Mazière. |
In Slusser, JR and Schafer, K and Comeron, A, editor, <em>Remote | <b>Intercomparison exercise between different radiative transfer |
Sensing of Clouds and the Atmosphere XI</em>, volume 6362 of <em>PROCEEDINGS | models used for the interpretation of ground-based zenith-sky and multi-axis |
OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE)</em>, pages | DOAS observations</b>. |
U310--U321. SPIE Europe, 2006. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 6:93-108, JAN 20 2006. |
Conference on Remote Sensing of Clouds and the Atmosphere XI, | [ <a href="http://dx.doi.org/10.5194/acp-6-93-2006">DOI</a> ] |
Stockholm, SWEDEN, SEP 11-14, 2006. | |
[ <a href="http://dx.doi.org/10.1117/12.689742">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000242923800002">12</a>] | [<a name="WOS:000260989400151">1115</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Lohmann, C. Schillings, B. Mayer, and R. Meyer. | A. Cerdena, A. Gonzalez, and J. C. Perez. |
<b>Long-term variability of solar direct and global radiation | <b>Neural Network based retrieval of cirrus properties</b>. |
derived from ISCCP data and comparison with reanalysis data</b>. | In <em>2006 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING |
<em>SOLAR ENERGY</em>, 80(11):1390--1401, 2006. | SYMPOSIUM, VOLS 1-8</em>, IEEE International Symposium on Geoscience and Remote |
EuroSun 2004 Conference, Freiburg, GERMANY, JUN 20-23, 2004. | Sensing IGARSS, pages 589-592. IEEE; IEEE Geosci & Remote Sensing Soc; |
[ <a href="http://dx.doi.org/10.1016/j.solener.2006.03.004">DOI</a> ] | Canadian Remote Sensing Soc; NASA; NOAA; Off Naval Res; Natl Polar Orbiting |
| Operat Environm Satellite Syst; Japan Aerosp Explorat Agcy; Ball Aerosp & |
| Technologies Corp; Cooperat Inst Res Atmosphere; Colorado State Univ; Univ |
| Colorado; Int Union Radio Sci, 2006. |
| IEEE International Geoscience and Remote Sensing Symposium (IGARSS), |
| Denver, CO, JUL 31-AUG 04, 2006. |
| [ <a href="http://dx.doi.org/10.1109/IGARSS.2006.155">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000241724100008">13</a>] | [<a name="WOS:000236610900002">1116</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Bernhard Mayer, Luca Bugliaro, Hermann Mannstein, Tobias Zinner, Waldemar | S Wuttke, G Seckmeyer, and G König-Lang. |
Krebs, and Peter Wendling. | <b>Measurements of spectral snow albedo at Neumayer, Antarctica</b>. |
<b>Remote sensing ofwater and ice clouds from MSG/SEVIRI</b>. | <em>ANNALES GEOPHYSICAE</em>, 24(1):7-21, 2006. |
In Danesy, D, editor, <em>PROCEEDINGS OF THE 3RD MSG RAO | [ <a href="http://dx.doi.org/10.5194/angeo-24-7-2006">DOI</a> ] |
WORKSHOP</em>, volume 619 of <em>ESA SPECIAL PUBLICATIONS</em>, pages 43--48. | |
European Space Agcy, 2006. | |
3rd MSG RAO Workshop, Helsinki, FINLAND, JUN 15, 2006. | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000242117100004">14</a>] | [<a name="WOS:000240367200001">1117</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Stephen W. S. McKeever, Regina Kalchgruber, Michael W. Blair, and Shubhada Deo. | K. Eerme, U. Veismann, and S. Latt. |
<b>Development of methods for in situ dating of martian | <b>Proxy-based reconstruction of erythemal UV doses over Estonia |
sediments</b>. | for 1955-2004</b>. |
<em>RADIATION MEASUREMENTS</em>, 41(7-8, SI):750--754, AUG-SEP | <em>ANNALES GEOPHYSICAE</em>, 24(7):1767-1782, 2006. |
2006. | [ <a href="http://dx.doi.org/10.5194/angeo-24-1767-2006">DOI</a> ] |
11th International Conference on Luminescence and Electron Spin | |
Resonance Dating, Kardinal Schulte Haus, Cologne, GERMANY, JUL 24-29, 2005. | |
[ <a href="http://dx.doi.org/10.1016/j.radmeas.2006.05.006">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000239181600028">15</a>] | [<a name="WOS:000240088800003">1118</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
O. Meinander, S. Kazadzis, M. Blumthaler, L. Ylianttila, B. Johnsen, | R. Hollmann, R. W. Mueller, and A. Gratzki. |
K. Lakkala, T. Koskela, and W. Josefsson. | <b>CM-SAF surface radiation budget: First results with AVHRR data</b>. |
<b>Diurnal discrepancies in spectral solar UV radiation | In JP Burrows, KU Eichmann, and EJ LLewellyn, editors, <em> |
measurements</b>. | ATMOSPHERIC REMOTE SENSING: EARTH'S SURFACE, TROPOSPHERE, STRATOSPHERE AND |
<em>APPLIED OPTICS</em>, 45(21):5346--5357, JUL 20 2006. | MESOSPHERE - II</em>, volume 37 of <em>ADVANCES IN SPACE RESEARCH</em>, pages |
[ <a href="http://dx.doi.org/10.1364/AO.45.005346">DOI</a> ] | 2166-2171. Comm Space Res, 2006. |
| 35th COSPAR Scientific Assembly, Paris, FRANCE, JUL 18-25, 2004. |
| [ <a href="http://dx.doi.org/10.1016/j.asr.2005.10.044">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000242176100004">16</a>] | [<a name="WOS:000241724100006">1119</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
F. Melin, M. Clerici, G. Zibordi, and B. Bulgarelli. | R. Hollmann and R. W. Mueller. |
<b>Aerosol variability in the Adriatic Sea from automated optical | <b>Use of SEVIRI data for an operational CMSAF surface radiation |
field measurements and Sea-viewing Wide Field-of-view Sensor (SeaWiFS)</b>. | budget processing and its validation</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 111(D22), | In D Danesy, editor, <em>PROCEEDINGS OF THE 3RD MSG RAO WORKSHOP</em>, |
NOV 16 2006. | volume 619 of <em>ESA Special Publications</em>, pages 31+. European Space Agcy, |
[ <a href="http://dx.doi.org/10.1029/2006JD007226">DOI</a> ] | 2006. |
| 3rd MSG RAO Workshop, Helsinki, FINLAND, JUN 15, 2006. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000241643600004">17</a>] | [<a name="WOS:000241724100008">1120</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M. Schreier, A. A. Kokhanovsky, V. Eyring, L. Bugliaro, H. Mannstein, B. Mayer, | Bernhard Mayer, Luca Bugliaro, Hermann Mannstein, Tobias Zinner, Waldemar |
H. Bovensmann, and J. P. Burrows. | Krebs, and Peter Wendling. |
<b>Impact of ship emissions on the microphysical, optical and | <b>Remote sensing ofwater and ice clouds from MSG/SEVIRI</b>. |
radiative properties of marine stratus: a case study</b>. | In D Danesy, editor, <em>PROCEEDINGS OF THE 3RD MSG RAO WORKSHOP</em>, |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 6:4925--4942, OCT 30 | volume 619 of <em>ESA Special Publications</em>, pages 43+. European Space Agcy, |
2006. | 2006. |
| 3rd MSG RAO Workshop, Helsinki, FINLAND, JUN 15, 2006. |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243894900019">18</a>] | [<a name="WOS:000241724100012">1121</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
I. Smolskaia, S. Wuttke, G. Seckmeyer, and K. Michael. | Jean Verdebout. |
<b>Influence of surface reflectivity on radiation in the Antarctic | <b>Modeling natural surface UV radiation with METEOSAT and MSG</b>. |
environment</b>. | In D Danesy, editor, <em>PROCEEDINGS OF THE 3RD MSG RAO WORKSHOP</em>, |
In Slusser, JR and Schafer, K and Comeron, A, editor, <em>Remote | volume 619 of <em>ESA Special Publications</em>, pages 65-70. European Space |
Sensing of Clouds and the Atmosphere XI</em>, volume 6362 of <em>PROCEEDINGS | Agcy, 2006. |
OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE)</em>, pages | 3rd MSG RAO Workshop, Helsinki, FINLAND, JUN 15, 2006. |
U198--U211. SPIE Europe, 2006. | |
Conference on Remote Sensing of Clouds and the Atmosphere XI, | |
Stockholm, SWEDEN, SEP 11-14, 2006. | |
[ <a href="http://dx.doi.org/10.1117/12.689693">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000241724100012">19</a>] | [<a name="WOS:000243894900020">1122</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Jean Verdebout. | B. Johnsen, B. Kjeldstad, T. N. Aalerud, L. T. Nilsen, J. Schreder, |
<b>Modeling natural surface UV radiation with METEOSAT and MSG</b>. | M. Blumthaler, G. Bernhard, A. Bagheri, B. Bhattarai, C. Topaloglou, |
In Danesy, D, editor, <em>PROCEEDINGS OF THE 3RD MSG RAO | G. Zablock, O. Meinander, B. A. Hoiskar, R. Haugen, W. S. Durham, G. Janson, |
WORKSHOP</em>, volume 619 of <em>ESA Special Publications</em>, pages 65--70. | A. R. Marrero, A. Dahlback, D. Bolsee, J. R. Slusser, J. Stamnes, C. Torres, |
European Space Agcy, 2006. | A. R. D. Smedley, L. E. Paulsson, K. Lakkala, A. R. Webb, J. B. Orbaek, A. A. |
3rd MSG RAO Workshop, Helsinki, FINLAND, JUN 15, 2006. | Grimenes, T. Ringstad, T. Lange, and W. Josefsson. |
| <b>International intercomparison of multiband filter radiometers in |
| Oslo 2005</b>. |
| In JR Slusser, K Schafer, and A Comeron, editors, <em>Remote Sensing |
| of Clouds and the Atmosphere XI</em>, volume 6362 of <em>PROCEEDINGS OF THE |
| SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE)</em>, pages U212-U223. |
| SPIE Europe, 2006. |
| Conference on Remote Sensing of Clouds and the Atmosphere XI, |
| Stockholm, SWEDEN, SEP 11-14, 2006. |
| [ <a href="http://dx.doi.org/10.1117/12.689918">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243894900031">20</a>] | [<a name="WOS:000243894900054">1123</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Jean Verdebout. | Tapani Koskela, Anu Heikkila, Jussi Kaurola, Anders Lindfors, Aapo Tanskanen, |
<b>Modelling natural surface UV radiation with satellite data: | and Peter den Outer. |
examples of applications</b>. | <b>Spectral solar UV monitoring -: worth it?</b> |
In Slusser, JR and Schafer, K and Comeron, A, editor, <em>Remote | In JR Slusser, K Schafer, and A Comeron, editors, <em>REMOTE SENSING |
Sensing of Clouds and the Atmosphere XI</em>, volume 6362 of <em>PROCEEDINGS | OF CLOUDS AND THE ATMOSPHERE XI</em>, volume 6362 of <em>Proceedings of SPIE</em>. |
OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE)</em>, pages | SPIE Europe, 2006. |
U322--U329. SPIE Europe, 2006. | |
Conference on Remote Sensing of Clouds and the Atmosphere XI, | Conference on Remote Sensing of Clouds and the Atmosphere XI, |
Stockholm, SWEDEN, SEP 11-14, 2006. | Stockholm, SWEDEN, SEP 11-14, 2006. |
[ <a href="http://dx.doi.org/10.1117/12.687875">DOI</a> ] | [ <a href="http://dx.doi.org/10.1117/12.689760">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000235074600023">21</a>] | [<a name="WOS:000243894900026">1124</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
M Wendisch, D Muller, I Mattis, and A Ansmann. | Bozena M. Lapeta, Zbigniew Ustrnul, and Aleksander Curylo. |
<b>Potential of lidar backscatter data to estimate solar aerosol | <b>Use of the visibility in the radiation transfer modeling in UV |
radiative forcing</b>. | range</b>. |
<em>APPLIED OPTICS</em>, 45(4):770--783, FEB 1 2006. | In JR Slusser, K Schafer, and A Comeron, editors, <em>REMOTE SENSING |
[ <a href="http://dx.doi.org/10.1364/AO.45.000770">DOI</a> ] | OF CLOUDS AND THE ATMOSPHERE XI</em>, volume 6362 of <em>Proceedings of SPIE</em>. |
| SPIE Europe, 2006. |
| Conference on Remote Sensing of Clouds and the Atmosphere XI, |
| Stockholm, SWEDEN, SEP 11-14, 2006. |
| [ <a href="http://dx.doi.org/10.1117/12.689683">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000236108900007">22</a>] | [<a name="WOS:000243894900030">1125</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S Wuttke, G Seckmeyer, G Bernhard, J Ehramjian, R McKenzie, P Johnston, and | Anders V. Lindfors, Bjorn Holmgren, and Georg Hansen. |
M O'Neill. | <b>Long-term erythemal UV at Abisko and Helsinki estimated using |
<b>New spectroradiometers complying with the NDSC standards</b>. | total ozone, sunshine duration, and snow depth</b>. |
<em>JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY</em>, | In JR Slusser, K Schafer, and A Comeron, editors, <em>REMOTE SENSING |
23(2):241--251, FEB 2006. | OF CLOUDS AND THE ATMOSPHERE XI</em>, volume 6362 of <em>Proceedings of SPIE</em>. |
[ <a href="http://dx.doi.org/10.1175/JTECH1826.1">DOI</a> ] | SPIE Europe, 2006. |
| Conference on Remote Sensing of Clouds and the Atmosphere XI, |
| Stockholm, SWEDEN, SEP 11-14, 2006. |
| [ <a href="http://dx.doi.org/10.1117/12.689742">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000236610900002">23</a>] | [<a name="WOS:000243894900019">1126</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S Wuttke, G Seckmeyer, and G Konig-Lang. | I. Smolskaia, S. Wuttke, G. Seckmeyer, and K. Michael. |
<b>Measurements of spectral snow albedo at Neumayer, Antarctica</b>. | <b>Influence of surface reflectivity on radiation in the Antarctic |
<em>ANNALES GEOPHYSICAE</em>, 24(1):7--21, 2006. | environment</b>. |
| In JR Slusser, K Schafer, and A Comeron, editors, <em>REMOTE SENSING |
| OF CLOUDS AND THE ATMOSPHERE XI</em>, volume 6362 of <em>Proceedings of SPIE</em>. |
| SPIE Europe, 2006. |
| Conference on Remote Sensing of Clouds and the Atmosphere XI, |
| Stockholm, SWEDEN, SEP 11-14, 2006. |
| [ <a href="http://dx.doi.org/10.1117/12.689693">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000239002200002">24</a>] | [<a name="WOS:000243894900031">1127</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
S. Wuttke and G. Seckmeyer. | Jean Verdebout. |
<b>Spectral radiance and sky luminance in Antarctica: a case | <b>Modelling natural surface UV radiation with satellite data: |
study</b>. | examples of applications</b>. |
<em>THEORETICAL AND APPLIED CLIMATOLOGY</em>, 85(3-4):131--148, | In JR Slusser, K Schafer, and A Comeron, editors, <em>REMOTE SENSING |
JUL 2006. | OF CLOUDS AND THE ATMOSPHERE XI</em>, volume 6362 of <em>Proceedings of SPIE</em>. |
[ <a href="http://dx.doi.org/10.1007/s00704-005-0188-2">DOI</a> ] | SPIE Europe, 2006. |
| Conference on Remote Sensing of Clouds and the Atmosphere XI, |
| Stockholm, SWEDEN, SEP 11-14, 2006. |
| [ <a href="http://dx.doi.org/10.1117/12.687875">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000243894900024">25</a>] | [<a name="WOS:000243894900024">1128</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
Sigrid Wuttke, Saad El Dine El Naggar, Thaddaeus Bluszcz, and Otto Schrems. | Sigrid Wuttke, Saad El Dine El Naggar, Thaddaeus Bluszcz, and Otto Schrems. |
<b>Ship-borne measurements of UV irradiance on a north-south | <b>Ship-borne measurements of UV irradiance on a north-south |
Atlantic transect</b>. | Atlantic transect</b>. |
In Slusser, JR and Schafer, K and Comeron, A, editor, <em>Remote | In JR Slusser, K Schafer, and A Comeron, editors, <em>REMOTE SENSING |
Sensing of Clouds and the Atmosphere XI</em>, volume 6362 of <em>PROCEEDINGS | OF CLOUDS AND THE ATMOSPHERE XI</em>, volume 6362 of <em>Proceedings of SPIE</em>. |
OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE)</em>, pages | SPIE Europe, 2006. |
U251--U261. SPIE Europe, 2006. | |
Conference on Remote Sensing of Clouds and the Atmosphere XI, | Conference on Remote Sensing of Clouds and the Atmosphere XI, |
Stockholm, SWEDEN, SEP 11-14, 2006. | Stockholm, SWEDEN, SEP 11-14, 2006. |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000237412100002">26</a>] | [<a name="WOS:000242923800002">1129</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T Zinner, B Mayer, and M Schroder. | S. Lohmann, C. Schillings, B. Mayer, and R. Meyer. |
<b>Determination of three-dimensional cloud structures from | <b>Long-term variability of solar direct and global radiation |
high-resolution radiance data</b>. | derived from ISCCP data and comparison with reanalysis data</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 111(D8), | <em>SOLAR ENERGY</em>, 80(11):1390-1401, 2006. |
APR 26 2006. | EuroSun 2004 Conference, Freiburg, GERMANY, JUN 20-23, 2004. |
[ <a href="http://dx.doi.org/10.1029/2005JD006062">DOI</a> ] | [ <a href="http://dx.doi.org/10.1016/j.solener.2006.03.004">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000239489700009">27</a>] | [<a name="WOS:000234078200012">1130</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
T. Zinner and B. Mayer. | AI Lyapustin. |
<b>Remote sensing of stratocumulus clouds: Uncertainties and | <b>Radiative transfer code SHARM for atmospheric and terrestrial |
biases due to inhomogeneity</b>. | applications</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 111(D14), | <em>APPLIED OPTICS</em>, 44(36):7764-7772, DEC 20 2005. |
JUL 26 2006. | [ <a href="http://dx.doi.org/10.1364/AO.44.007764">DOI</a> ] |
[ <a href="http://dx.doi.org/10.1029/2005JD006955">DOI</a> ] | |
| |
</td> | </td> |
</tr> | </tr> |
</table><h2>2005</h2> | |
| |
<!-- This document was automatically generated with bibtex2html 1.98 | |
(see http://www.lri.fr/~filliatr/bibtex2html/), | |
with the following command: | |
/project/meteo/data/raid_alpha/libradtran/www/data/bibtex2html-1.98-linux/bibtex2html -nodoc -nofooter -s dsgplain -nokeywords -nobibsource -noabstract articles.bib --> | |
| |
| |
<table> | |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000237257000003">1</a>] | [<a name="WOS:000233122900002">1131</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
A Adriani, A Gardini, E D'Aversa, A Coradini, ML Moriconi, GL Liberti, | BM Knudsen, H Jonch-Sorensen, P Eriksen, BJ Johnsen, and GE Bodeker. |
R Orosei, and G Filacchione. | <b>UV radiation below an Arctic vortex with severe ozone |
<b>Titan's ground reflectance retrieval from Cassini-VIMS data | depletion</b>. |
taken during the July 2nd, 2004 fly-by at 2 AM UT</b>. | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 5:2981-2987, NOV 7 2005. |
<em>EARTH MOON AND PLANETS</em>, 96(3-4):109--117, JUN 2005. | [ <a href="http://dx.doi.org/10.5194/acp-5-2981-2005">DOI</a> ] |
Saturn Universe Workshop, Capri, ITALY, OCT, 2004. | |
[ <a href="http://dx.doi.org/10.1007/s11038-005-9057-3">DOI</a> ] | |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000232362500023">2</a>] | [<a name="WOS:000232362500023">1132</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
RF Cahalan, L Oreopoulos, A Marshak, KF Evans, AB Davis, R Pincus, KH Yetzer, | RF Cahalan, L Oreopoulos, A Marshak, KF Evans, AB Davis, R Pincus, KH Yetzer, |
B Mayer, R Davies, TP Ackerman, HW Barker, EE Clothiaux, RG Ellingson, | B Mayer, R Davies, TP Ackerman, HW Barker, EE Clothiaux, RG Ellingson, |
MJ Garay, E Kassianov, S Kinne, A Macke, W O'Hirok, PT Partain, SM Prigarin, | MJ Garay, E Kassianov, S Kinne, A Macke, W O'Hirok, PT Partain, SM Prigarin, |
AN Rublev, GL Stephens, F Szczap, EE Takara, T Varnai, GY Wen, and | AN Rublev, GL Stephens, F Szczap, EE Takara, T Várnai, GY Wen, and |
TB Zhuravleva. | TB Zhuravleva. |
<b>The 13RC - Bringing together the most advanced radiative | <b>The 13RC -: Bringing together the most advanced radiative |
transfer tools for cloudy atmospheres</b>. | transfer tools for cloudy atmospheres</b>. |
<em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, | <em>BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY</em>, 86(9):1275+, |
86(9):1275+, SEP 2005. | SEP 2005. |
[ <a href="http://dx.doi.org/10.1175/BAMS-86-9-1275">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/BAMS-86-9-1275">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000232776300012">3</a>] | [<a name="WOS:000232776300012">1133</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
H Deneke, A Feijt, A van Lammeren, and C Simmer. | H Deneke, A Feijt, A van Lammeren, and C Simmer. |
<b>Validation of a physical retrieval scheme of solar surface | <b>Validation of a physical retrieval scheme of solar surface |
irradiances from narrowband satellite radiances</b>. | irradiances from narrowband satellite radiances</b>. |
<em>JOURNAL OF APPLIED METEOROLOGY</em>, 44(9):1453--1466, SEP | <em>JOURNAL OF APPLIED METEOROLOGY</em>, 44(9):1453-1466, SEP 2005. |
2005. | |
[ <a href="http://dx.doi.org/10.1175/JAM2290.1">DOI</a> ] | [ <a href="http://dx.doi.org/10.1175/JAM2290.1">DOI</a> ] |
| |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000233122900002">4</a>] | [<a name="WOS:000230977500001">1134</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
BM Knudsen, H Jonch-Sorensen, P Eriksen, BJ Johnsen, and GE Bodeker. | |
<b>UV radiation below an Arctic vortex with severe ozone | |
depletion</b>. | |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 5:2981--2987, NOV 7 | |
2005. | |
| |
</td> | |
</tr> | |
| |
| |
<tr valign="top"> | |
<td align="right" class="bibtexnumber"> | |
[<a name="ISI:000230977500001">5</a>] | |
</td> | |
<td class="bibtexitem"> | |
A Kylling, AR Webb, R Kift, GP Gobbi, L Ammannato, F Barnaba, A Bais, | A Kylling, AR Webb, R Kift, GP Gobbi, L Ammannato, F Barnaba, A Bais, |
S Kazadzis, M Wendisch, E Jakel, S Schmidt, A Kniffka, S Thiel, W Junkermann, | S Kazadzis, M Wendisch, E Jakel, S Schmidt, A Kniffka, S Thiel, W Junkermann, |
<b>Spectral actinic flux in the lower troposphere: measurement and | <b>Spectral actinic flux in the lower troposphere: measurement and |
1-D simulations for cloudless, broken cloud and overcast situations</b>. | 1-D simulations for cloudless, broken cloud and overcast situations</b>. |
<em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 5:1975--1997, AUG 3 | <em>ATMOSPHERIC CHEMISTRY AND PHYSICS</em>, 5:1975-1997, AUG 3 2005. |
2005. | [ <a href="http://dx.doi.org/10.5194/acp-5-1975-2005">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000234078200012">6</a>] | [<a name="WOS:000229989400005">1135</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
AI Lyapustin. | J Trentmann, RJ Yokelson, PV Hobbs, T Winterrath, TJ Christian, MO Andreae, and |
<b>Radiative transfer code SHARM for atmospheric and terrestrial | SA Mason. |
applications</b>. | <b>An analysis of the chemical processes in the smoke plume from a |
<em>APPLIED OPTICS</em>, 44(36):7764--7772, DEC 20 2005. | savanna fire</b>. |
[ <a href="http://dx.doi.org/10.1364/AO.44.007764">DOI</a> ] | <em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 110(D12), JUN 17 |
| 2005. |
| [ <a href="http://dx.doi.org/10.1029/2004JD005628">DOI</a> ] |
| |
</td> | </td> |
| |
<tr valign="top"> | <tr valign="top"> |
<td align="right" class="bibtexnumber"> | <td align="right"> |
[<a name="ISI:000229989400005">7</a>] | [<a name="WOS:000237257000003">1136</a>] |
</td> | </td> |
<td class="bibtexitem"> | <td> |
J Trentmann, RJ Yokelson, PV Hobbs, T Winterrath, TJ Christian, MO Andreae, and | A Adriani, A Gardini, E D'Aversa, A Coradini, ML Moriconi, GL Liberti, |
SA Mason. | R Orosei, and G Filacchione. |
<b>An analysis of the chemical processes in the smoke plume from a | <b>Titan's ground reflectance retrieval from Cassini-VIMS data |
savanna fire</b>. | taken during the July 2nd, 2004 fly-by at 2 AM UT</b>. |
<em>JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES</em>, 110(D12), | <em>EARTH MOON AND PLANETS</em>, 96(3-4):109-117, JUN 2005. |
JUN 17 2005. | Saturn Universe Workshop, Capri, ITALY, OCT, 2004. |
[ <a href="http://dx.doi.org/10.1029/2004JD005628">DOI</a> ] | [ <a href="http://dx.doi.org/10.1007/s11038-005-9057-3">DOI</a> ] |
| |
</td> | </td> |
</tr> | </tr> |
</table></html> | </table><hr><p><em>This file has been generated by |
| <a href="http://www.lri.fr/~filliatr/bibtex2html/">bibtex2html</a> 1.86.</em></p> |
| </html> |
| |