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Abstract
By using the Betts-Miller-Janjic, Grell-Devenyi, and Kain-Fritsch cumulus convective parameterization
schemes in theWeather Research and Forecasting (WRF) model, long time simulations from 2000 to 2009 are
conducted to investigate the impacts of different cumulus convective parameterization schemes on summer
monsoon precipitation simulation over China. The results show that all the schemes have the capability
to reasonably reproduce the spatial and temporal distributions of summer monsoon precipitation and the
corresponding background circulation. The observed north-south shift of monsoon rain belt is also well
simulated by the three schemes. Detailed comparison indicates that the Grell-Devenyi scheme gives a better
performance than the others. Deficiency in simulated water vapor transport is one possible reason for the
precipitation simulation bias.
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Citation
YU Entao, WANG Huijun, GAO Yongqi, SUN Jianqi. 2011: Impacts of Cumulus Convective Parameterization Schemes on Summer Monsoon Precipitation Simulation over China. Journal of Meteorological Research, 25(5): 581-592.
YU Entao, WANG Huijun, GAO Yongqi, SUN Jianqi. 2011: Impacts of Cumulus Convective Parameterization Schemes on Summer Monsoon Precipitation Simulation over China. Journal of Meteorological Research, 25(5): 581-592.
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YU Entao, WANG Huijun, GAO Yongqi, SUN Jianqi. 2011: Impacts of Cumulus Convective Parameterization Schemes on Summer Monsoon Precipitation Simulation over China. Journal of Meteorological Research, 25(5): 581-592.
YU Entao, WANG Huijun, GAO Yongqi, SUN Jianqi. 2011: Impacts of Cumulus Convective Parameterization Schemes on Summer Monsoon Precipitation Simulation over China. Journal of Meteorological Research, 25(5): 581-592.
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