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《Chinese Journal of Atmospheric Sciences》 2007-01
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Impacts of the BATS1e Land Surface Model on the Performance of the p-σ Regional Climate Model

HUANG An-Ning and ZHANG Yao-CunDepartment of Atmospheric Sciences,Nanjing University,Nanjing 210093  
The p-σ regional climate model(PσRCM9) was developed for climate forecast over East Asia in the 1990s,and it has good performance in simulating the climate change over East Asia,but it still has some deficiencies and need to be improved,for instance,its land surface process treatment is so simple that it can not elaborately describe the exchanges of the momentum fluxes,heat fluxes and moisture fluxes between land and air.The calculations of these flux exchanges are very important to improve the performance of PσRCM9,so it is necessary to improve these flux calculations in PσRCM9.For this purpose,the authors choose Biosphere-Atmosphere Transfer Scheme version 1e (BATS1e) to replace the old soil model in PσRCM9 regional climate model.BATS1e has been(developed) for suiting various NCAR General Circulation Models(GCMs),and its special emphasis has been given to describe properly the role of the vegetation in modifying the surface moisture and energy budgets.It has been coupled with many GCMs and RCMs,and it has good performance in simulating the flux exchanges between land and air. A coupling model(BATS1e-PσRCM9) with much more complex land-air interactions has been developed by incorporating BATS1e into PσRCM9 in this paper,and the impacts of the BATS1e on the PσRCM9 are examined by simulating the mean fields over East Asia in January and July and the three heavy rain processes occurred over the Yangtze River and Huaihe River basins during the Meiyu period in 1991.The model results show that the capability of the BATS1e-PσRCM9 in simulating the climate mean fields over East Asia in winter and summer has been improved obviously,and the improvement of the simulated meteorological elements in the near-surface layer and the lower troposphere is more remarkable than in the middle-upper troposphere.The BATS1e-PσRCM9 can simulate the precipitation over southeastern China much better compared with the PσRCM9 results,and it has a good performance in simulating the three heavy rain processes over the Yangtze River and Huaihe River basins during the Meiyu period in 1991.The improved simulations of the meteorological elements in each model layer follow the improvement in simulating the land-air interactions in BATS1e-PσRCM9 owing to the improved calculations of the exchanges of momentum fluxes,heat fluxes and moisture fluxes between land and air.Therefore,the performance of the PσRCM9 in simulating short-range regional climate changes over East Asia can be improved notably by introducing BATS1e land surface model.This work provides a good base for the further development of the PσRCM9 regional climate(model. )
【Fund】: 国家自然科学基金资助项目40275032、40333026
【CateGory Index】: P463
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