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Study and case simulation of a regional dust model coupled with a nonhydrostatic dynamics model
Authors:Email author" target="_blank">Conglan?ChengEmail author  Yingchun?Wang  Weidong?Liu  Xiaoling?Zhang  Xiaofeng?Xu  Pu?Xie
Institution:CHENG Conglan1 , WANG Yingchun1, LIU Weidong1, ZHANG Xiaoling1, XU Xiaofeng1 & XIE Pu2 1. Institute of Urban Meteorology, China Meteorological Administration, Beijing 100089, China; 2. Beijing Meteorology Bureau, Beijing 100089, China
Abstract:A new regional dust model suitable for simula-tion and forecasting of dust storms over northern China was described. The dust model was developed by coupling the mesoscale dynamics model MM5 (the Fifth-Generation NCAR/Penn State Mesoscale Model) with a set of mass conservation equations for the particles. The model includes all the atmospheric physical processes of dust storms including occurrence, lifting, transport, and dry and wet deposition. It considers the parameterization of dry and wet deposition, the dust size distribution and microphysical processes in detail. The dust flux from the surface is parameterized based on the friction velocity, which is provided by the mesoscale nonhydrostatic dynamics model, which takes account of the vegetation coverage, land use, soil category, and soil moisture. This new dust model is used to simulate the dust storm that occurred on 1921 March, 2002 in North China. The results show that there is high dust concentration and its movement is consistent with the surface weather record and satellite monitoring images of the observed dust storm. The simulated dust concentration coincides with the observation data of the particulate concentration of PM10 (dust particles smaller than 10 m in diameter). The new numerical model also successfully simulates the formation and migration of the dust storm of 68 April, 2002 in North China.
Keywords:regional dust model  friction velocity  dry deposition  wet deposition  simulation  
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