Evaluation of cloud microphysics schemes in simulations of a winter storm using radar and radiometer measurements

Author:

Han Mei12,Braun Scott A.2,Matsui Toshihisa23,Williams Christopher R.45

Affiliation:

1. Goddard Earth Sciences Technology and Research; Morgan State University; Baltimore Maryland, USA

2. Mesoscale Atmospheric Process Laboratory; NASA Goddard Space Flight Center; Greenbelt Maryland, USA

3. ESSIC; University of Maryland; College Park Maryland, USA

4. Cooperative Institute for Research in Environmental Sciences; University of Colorado; Boulder Colorado, USA

5. NOAA Earth System Research Laboratory; Boulder Colorado, USA

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Geophysics

Reference55 articles.

1. Ashcroft , P. F. J. Wentz 2006 updated daily, AMSR-E/Aqua L2A Global Swath Spatially-Resampled Brightness Temperatures V002, 12/31/2005

2. Doppler radar characteristics of precipitation at vertical incidence;Atlas;Rev. Geophys.,1973

3. Blahak , U. Y. Zeng D. Epperlein 2011 Radar forward operator for data assimilation and model verification for the COSMO-model Preprint of 35 th Conf. on Radar Meteorology P10.119

4. Sensitivity of a simulated squall line to horizontal resolution and parameterization of microphysics;Bryan;Mon. Wea. Rev.,2011

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