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A Study on Water Vapor Transport and Budget of Heavy Rain in Northeast China

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【作者】 孙力沈柏竹隋波

【Author】 SUN Li1,2,3 , SHEN Baizhu1,3 , and SUI Bo1,3 1Institute of Meteorological Sciences of Jilin Province, Changchun 130062 2Wuhan Institute of Heavy Rain, Wuhan 430074 3Laboratory of Research for Middle-High Latitude Circulation Systems and East Asian Monsoon, Changchun 130062

【机构】 Institute of Meteorological Sciences of Jilin ProvinceWuhan Institute of Heavy RainLaboratory of Research for Middle-High Latitude Circulation Systems and East Asian Monsoon

【摘要】 The characteristics of moisture transport and budget of widespread heavy rain and local heavy rain events in Northeast China are studied using the NCEP-NCAR reanalysis 6-hourly and daily data and daily precipitation data of 200 stations in Northeast China from 1961-2005. The results demonstrate that during periods with widespread heavy rain in Northeast China, the Asian monsoon is very active and the monsoonal northward moisture transport is strengthened significantly. The widespread heavy rainfall obtains enhanced water vapor supply from large regions where the water vapor mainly originates from the Asian monsoon areas, which include the East Asian subtropical monsoon area, the South China Sea, and the southeast and southwest tropical monsoon regions. There are several branches of monsoonal moisture current converging on East China and its coastal areas, where they are strengthened and then continue northward into Northeast China. Thus, the enhanced northward monsoonal moisture transport is the key to the widespread heavy rain in Northeast China. In contrast, local heavy rainfall in Northeast China derives water vapor from limited areas, transported by the westerlies. Local evaporation also plays an important role in the water vapor supply and local recycling process of moisture. In short, the widespread heavy rains of Northeast China are mainly caused by water vapor advection brought by the Asian monsoon, whereas local heavy rainfall is mainly caused by the convergence of the westerly wind field.

【Abstract】 The characteristics of moisture transport and budget of widespread heavy rain and local heavy rain events in Northeast China are studied using the NCEP–NCAR reanalysis 6-hourly and daily data and daily precipitation data of 200 stations in Northeast China from 1961–2005. The results demonstrate that during periods with widespread heavy rain in Northeast China, the Asian monsoon is very active and the monsoonal northward moisture transport is strengthened significantly. The widespread heavy rainfall obtains enhanced water vapor supply from large regions where the water vapor mainly originates from the Asian monsoon areas, which include the East Asian subtropical monsoon area, the South China Sea, and the southeast and southwest tropical monsoon regions. There are several branches of monsoonal moisture current converging on East China and its coastal areas, where they are strengthened and then continue northward into Northeast China. Thus, the enhanced northward monsoonal moisture transport is the key to the widespread heavy rain in Northeast China. In contrast, local heavy rainfall in Northeast China derives water vapor from limited areas, transported by the westerlies. Local evaporation also plays an important role in the water vapor supply and local recycling process of moisture. In short, the widespread heavy rains of Northeast China are mainly caused by water vapor advection brought by the Asian monsoon, whereas local heavy rainfall is mainly caused by the convergence of the westerly wind field.

【基金】 supported by the National Natural Science Foundation of China (Grant Nos.40633016 and 40575047) ;National Natural Science Foundation of China for Youth Science Foundation (Grant No.40705036);the Special Social Public Welfare Foundation of the Ministry of Science and Technology of China,and the Open Foundation of the Wuhan Institute of Heavy Rain (Grant No.IHR2006K05)
  • 【文献出处】 Advances in Atmospheric Sciences ,大气科学进展(英文版) , 编辑部邮箱 ,2010年06期
  • 【分类号】P434.5
  • 【被引频次】10
  • 【下载频次】129
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