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中国区域水汽输送异常与长江流域旱涝的关系
引用本文:蒋兴文,李跃清,王鑫.中国区域水汽输送异常与长江流域旱涝的关系[J].地理学报(英文版),2009,19(2):153-163.
作者姓名:蒋兴文  李跃清  王鑫
作者单位: 
基金项目:International Technology Cooperation Project of the Ministry of Science and Technology of China,Application Technology Research and Development Project of Sichuan Province,Basic Research Foundation of Institute of Chengdu Plateau
摘    要:

关 键 词:水汽输送  南中国海  长江流域  西太平洋副热带高压  高纬度地区  水灾  旱灾  西太平洋地区
收稿时间:8 November 2006

Water vapor transport over China and its relationship with drought and flood in Yangtze River Basin
Xingwen Jiang,Yueqing Li,Xin Wang.Water vapor transport over China and its relationship with drought and flood in Yangtze River Basin[J].Journal of Geographical Sciences,2009,19(2):153-163.
Authors:Xingwen Jiang  Yueqing Li  Xin Wang
Institution:(1) Institute of Plateau Meteorology, China Meteorological Administration, Chengdu, 610071, China;(2) Climate center of Sichuan Province, Chengdu, 610071, China
Abstract:The characteristics of water vapor transport (WVT) over China and its relationship with precipitation anomalies in the Yangtze River Basin (YRB) are analyzed by using the upper-air station data in China and ECMWF reanalysis data in summer from 1981 to 2002. The results indicate that the first mode of the vertically integrated WVT is significant whose spatial distribution presents water vapor convergence or divergence in the YRB. When the Western Pacific Subtropical High (WPSH) is strong and shifts southward and westward, the Indian Monsoon Low Pressure (IMLP) is weak, and the northern part of China stands behind the middle and high latitude trough, a large amount of water vapor from the Bay of Bengal (BOB), the South China Sea (SCS) and the western Pacific forms a strong and steady southwest WVT band and meets the strong cold water vapor from northern China in the YRB, thus it is likely to cause flood in the YRB. When WPSH is weak and shifts northward and eastward, IMLP is strong, and there is nearly straight west wind over the middle and high latitude, it is unfavorable for oceanic vapor extending to China and no steady and strong southwest WVT exists in the region south of the YRB. Meanwhile, the cold air from northern China is weak and can hardly be transported to the YRB. This brings on no obvious water vapor convergence, and then less precipitation in the YRB. Foundation: International Technology Cooperation Project of the Ministry of Science and Technology of China, No. 2007DFB20210; Application Technology Research and Development Project of Sichuan Province, No. 2008NG0009; Basic Research Foundation of Institute of Chengdu Plateau, China Meteorological Administration, No.BROP2000802 Author: Jiang Xingwen (1983–), specialized in the study of climate diagnosis.
Keywords:water vapor transport  drought and flood  complex EOF  Yangtze River Basin
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