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publications:reviewed [2021/08/29 15:43] susannepublications:reviewed [2022/12/11 21:31] (current) – [2018] uli
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 McMichael, L. A., Yang F., Marke, T., ** Löhnert. U.**, Mechem, D. B., Vogelmann, A. M., Sanchez, K., Tuononen, M., **Schween, J. H.**, 2020: Characterizing Subsiding Shells in Shallow Cumulus Using Doppler Lidar and Large‐Eddy Simulation, // Geophysical Research Letters//, 47(18), e2020GL089699, [[https://doi.org/10.1029/2020GL089699|DOI:10.1029/2020GL089699]] McMichael, L. A., Yang F., Marke, T., ** Löhnert. U.**, Mechem, D. B., Vogelmann, A. M., Sanchez, K., Tuononen, M., **Schween, J. H.**, 2020: Characterizing Subsiding Shells in Shallow Cumulus Using Doppler Lidar and Large‐Eddy Simulation, // Geophysical Research Letters//, 47(18), e2020GL089699, [[https://doi.org/10.1029/2020GL089699|DOI:10.1029/2020GL089699]]
  
-**Mech, M.**, M. Maahn, **S. Kneifel**, **D. Ori**, E. Orlandi, P. Kollias, V. Schemann, and **S. Crewell**, 2020: PAMTRA 1.0: Passive and Active Microwave radiative TRAnsfer tool for simulating radiometer and radar measurements of the cloudy atmosphere, //Geoscientific Model Development//, 13, 4229-4251, [[https://doi.org/10.5194/gmd-13-4229-2020]] +**Mech, M.**, M. Maahn, **S. Kneifel**, **D. Ori**, E. Orlandi, P. Kollias, V. Schemann, and **S. Crewell**, 2020: PAMTRA 1.0: the Passive and Active Microwave radiative TRAnsfer tool for simulating radiometer and radar measurements of the cloudy atmosphere, //Geoscientific Model Development//, 13, 4229-4251, [[https://doi.org/10.5194/gmd-13-4229-2020]] 
  
 Neher, I., **S. Crewell**, S. Meilinger, U. Pfeifroth, and J. Trentmann, 2020: Long-term variability of solar irradiance and its complications for photovoltaic power in West Africa, //Atmospheric Chemistry and Physics//, 20, 12871-12888, [[https://doi.org/10.5194/acp-20-12871-2020]] Neher, I., **S. Crewell**, S. Meilinger, U. Pfeifroth, and J. Trentmann, 2020: Long-term variability of solar irradiance and its complications for photovoltaic power in West Africa, //Atmospheric Chemistry and Physics//, 20, 12871-12888, [[https://doi.org/10.5194/acp-20-12871-2020]]
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 **Nomokonova, T., K. Ebell, U. Löhnert**, M. Maturilli, and C. Ritter, 2020: The influence of water vapor anomalies on clouds and their radiative effect at Ny-Ålesund, // Atmospheric Chemistry and Physics//, 20, 5157–5173, [[https://doi.org/10.5194/acp-20-5157-2020]] **Nomokonova, T., K. Ebell, U. Löhnert**, M. Maturilli, and C. Ritter, 2020: The influence of water vapor anomalies on clouds and their radiative effect at Ny-Ålesund, // Atmospheric Chemistry and Physics//, 20, 5157–5173, [[https://doi.org/10.5194/acp-20-5157-2020]]
  
-Reyers, M., **C. Böhm**,  L. Knarr Y. Shao, and **S. Crewell**,2020: Synoptic-to-regional scale analysis of rainfall in the Atacama Desert (18°S-26°S) using a long-term simulation with WRF, //Monthly Weather Review//, 148 (8), 1-51, [[https://doi.org/10.1175/MWR-D-20-0038.1]]+Reyers, M., **C. Böhm**,  L. Knarr Y. Shao, and **S. Crewell**,2020 (online): Synoptic-to-regional scale analysis of rainfall in the Atacama Desert (18°S-26°S) using a long-term simulation with WRF, //Monthly Weather Review//, 148 (8), 1-51, [[https://doi.org/10.1175/MWR-D-20-0038.1]]
  
 Rostosky, P., G. Spreen, S. Gerland, M. Huntemann, and **M. Mech**, 2020: Modeling the microwave emission of snow on Arctic sea ice for estimating the uncertainty of satellite retrievals, //Journal of Geophysical Research Oceans//, 125 (3), [[https://doi.org/10.1029/2019JC015465]] Rostosky, P., G. Spreen, S. Gerland, M. Huntemann, and **M. Mech**, 2020: Modeling the microwave emission of snow on Arctic sea ice for estimating the uncertainty of satellite retrievals, //Journal of Geophysical Research Oceans//, 125 (3), [[https://doi.org/10.1029/2019JC015465]]
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 Aires, F., C. Prigent, M. Milz, S. Buehler, P. Eriksson, and **S. Crewell**, 2018: Towards more realistic hypotheses for the information content analysis of cloudy/precipitating situations - Application to an hyper-spectral instrument in the microwaves, //Quarterly Journal of the Royal Meteorological Society//, 2018;145:1–14, [[https://doi.org/10.1002/qj.3315]]. Aires, F., C. Prigent, M. Milz, S. Buehler, P. Eriksson, and **S. Crewell**, 2018: Towards more realistic hypotheses for the information content analysis of cloudy/precipitating situations - Application to an hyper-spectral instrument in the microwaves, //Quarterly Journal of the Royal Meteorological Society//, 2018;145:1–14, [[https://doi.org/10.1002/qj.3315]].
  
-**Frank, C. W.**, S. Wahl, J.D. Keller, **B. Pospichal, A**. Hense, **S. Crewell**, 2018: novel data set for solar energy applications based on high resolution reanalysis, // Solar Energy,// 164, 12-24, [[https://authors.elsevier.com/sd/article/S0038092X18301294|doi.org/10.1016/j.solener.2018.02.012]]. +**Frank, C. W.**, S. Wahl, J.D. Keller, **B. Pospichal, A**. Hense, **S. Crewell**, 2018: Bias correction of a novel European reanalysis data set for solar energy applications, // Solar Energy,// 164, 12-24, [[https://authors.elsevier.com/sd/article/S0038092X18301294|doi.org/10.1016/j.solener.2018.02.012]]. 
  
 He, S., **E.M. Knudsen**, D.W.J. Thompson, and T. Furevik, 2018: Evidence for predictive skill due to Arctic summertime sea-ice extent anomalies, // Geophys. Res. Lett.//, 45, 9114--9122, [[https://doi.org/10.1029/2018GL078281]]. He, S., **E.M. Knudsen**, D.W.J. Thompson, and T. Furevik, 2018: Evidence for predictive skill due to Arctic summertime sea-ice extent anomalies, // Geophys. Res. Lett.//, 45, 9114--9122, [[https://doi.org/10.1029/2018GL078281]].
publications/reviewed.1630244629.txt.gz · Last modified: 2021/08/29 15:43 by susanne