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CHARACTERISTICS OF MEI-YU PRECIPITATION AND SVD ANALYSIS OF PRECIPITATION OVER THE YANGTZE-HUAIHE RIVERS VALLEYS AND THE SEA SURFACE TEMPERATURE IN THE NORTHERN PACIFIC OCEAN
作者姓名:毛文书  王谦谦  彭骏  李永华
作者单位:Institute of Atmospheric Science, NUIST;Institute of Atmospheric Science, NUIST;Chengdu Institute of Plateau Meteorology, CMA;Chongqing Institute of Meteorology Science, Chongqing
基金项目:Key National Project for Fundamental Research Project 973 (2004CB418300); Natural Science Foundation of China (40233037)
摘    要:Based on the precipitation data of Meiyu at 37 stations in the valleys of Yangtze and Huaihe Rivers from 1954 to 2001, the temporal-spatial characteristics of Meiyu precipitation and their relationships with the sea surface temperature in northern Pacific are investigated using such methods as harmonic analysis, empirical orthogonal function (EOF), composite analysis and singular value decomposition (SVD). The results show that the temporal evolution and spatial distribution of Meiyu precipitation are not homogeneous in the Yangtze-Huaihe Rivers basins but with prominent inter-annual and inter-decadal variabilities. The key region between the anomalies of Meiyu precipitation and the monthly sea surface temperature anomalies (SSTA) lies in the west wind drift of North Pacific, which influences the precipitation anomaly of Meiyu precipitation over a key period of time from January to March in the same year. When the SST in the North Pacific west wind drift is warmer (colder) than average during these months, Meiyu precipitation anomalously increases (decreases) in the concurrent year. Results of SVD are consistent with those of composite analysis which pass the significance test of Monte-Carlo at 0.05.

关 键 词:Meiyu    harmonic  analysis    EOF    SVD    Monte-Carlo  test    Sea  Surface  Temperature  (SST)  of  North  Pacific  Ocean

CHARACTERISTICS OF MEI-YU PRECIPITATION AND SVD ANALYSIS OF PRECIPITATION OVER THE YANGTZE-HUAIHE RIVERS VALLEYS AND THE SEA SURFACE TEMPERATURE IN THE NORTHERN PACIFIC OCEAN
MAO Wen-shu,WANG Qian-qian,PENG Jun and LI Yong-hua.CHARACTERISTICS OF MEI-YU PRECIPITATION AND SVD ANALYSIS OF PRECIPITATION OVER THE YANGTZE-HUAIHE RIVERS VALLEYS AND THE SEA SURFACE TEMPERATURE IN THE NORTHERN PACIFIC OCEAN[J].Journal of Tropical Meteorology,2008,14(2):129-132.
Authors:MAO Wen-shu  WANG Qian-qian  PENG Jun and LI Yong-hua
Institution:1. Institute of Atmospheric Science, NUIST, Nanjing 210044 China;Center of Plateau Atmospheric and Environmental Research, Chengdu University of Information Technology, Chengdu 610225 China
2. Institute of Atmospheric Science, NUIST, Nanjing 210044 China
3. Chengdu Institute of Plateau Meteorology, CMA, Chengdu 610072 China
4. Chongqing Institute of Meteorology Science, Chongqing 401147 China
Abstract:Based on the precipitation data of Meiyu at 37 stations in the valleys of Yangtze and Huaihe Rivers from 1954 to 2001, the temporal-spatial characteristics of Meiyu precipitation and their relationships with the sea surface temperature in northern Pacific are investigated using such methods as harmonic analysis, empirical orthogonal function (EOF), composite analysis and singular value decomposition (SVD). The results show that the temporal evolution and spatial distribution of Meiyu precipitation are not homogeneous in the Yangtze-Huaihe Rivers basins but with prominent inter-annual and inter-decadal variabilities. The key region between the anomalies of Meiyu precipitation and the monthly sea surface temperature anomalies (SSTA) lies in the west wind drift of North Pacific, which influences the precipitation anomaly of Meiyu precipitation over a key period of time from January to March in the same year. When the SST in the North Pacific west wind drift is warmer (colder) than average during these months, Meiyu precipitation anomalously increases (decreases) in the concurrent year. Results of SVD are consistent with those of composite analysis which pass the significance test of Monte-Carlo at 0.05.
Keywords:Meiyu  harmonic analysis  EOF  SVD  Monte-Carlo test  Sea Surface Temperature (SST) of North Pacific Ocean
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