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Rainfall Assimilation Using a New Four-Dimensional Variational Method:A Single-Point Observation Experiment

Rainfall Assimilation Using a New Four-Dimensional Variational Method:A Single-Point Observation Experiment
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摘要 Accurate forecast of rainstorms associated with the mei-yu front has been an important issue for the Chinese economy and society. In July 1998 a heavy rainstorm hit the Yangzi River valley and received widespread attention from the public because it caused catastrophic damage in China. Several numerical studies have shown that many forecast models, including Pennsylvania State University National Center for Atmospheric Research’s fifth-generation mesoscale model (MM5), failed to simulate the heavy precipitation over the Yangzi River valley. This study demonstrates that with the optimal initial conditions from the dimension-reduced projection four-dimensional variational data assimilation (DRP-4DVar) system, MM5 can successfully reproduce these observed rainfall amounts and can capture many important mesoscale features, including the southwestward shear line and the low-level jet stream. The study also indicates that the failure of previous forecasts can be mainly attributed to the lack of mesoscale details in the initial conditions of the models. Accurate forecast of rainstorms associated with the mei-yu front has been an important issue for the Chinese economy and society. In July 1998 a heavy rainstorm hit the Yangzi River valley and received widespread attention from the public because it caused catastrophic damage in China. Several numerical studies have shown that many forecast models, including Pennsylvania State University National Center for Atmospheric Research’s fifth-generation mesoscale model (MM5), failed to simulate the heavy precipitation over the Yangzi River valley. This study demonstrates that with the optimal initial conditions from the dimension-reduced projection four-dimensional variational data assimilation (DRP-4DVar) system, MM5 can successfully reproduce these observed rainfall amounts and can capture many important mesoscale features, including the southwestward shear line and the low-level jet stream. The study also indicates that the failure of previous forecasts can be mainly attributed to the lack of mesoscale details in the initial conditions of the models.
作者 刘娟娟 王斌
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2011年第4期735-742,共8页 大气科学进展(英文版)
基金 the National Basic Research Program (973 Program) (No.2010CB 951604) the China Meteorological Administration for the R&D Special Fund for Public Welfare Industry (meteorology) [Grant No. GYHY(QX)200906009] the National High Technology Research and Development Program of China (863 Program) (No. 2010AA012304) the LASG free exploration fund
关键词 data assimilation dimension-reduced projection four-dimensional variational data assimilation (DRP-4DVar) RAINSTORM numerical simulation data assimilation dimension-reduced projection four-dimensional variational data assimilation (DRP-4DVar) rainstorm numerical simulation
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