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印度洋、南海和东南沿海海温异常影响江淮流域6~7月降水量的分析及数值模拟
引用本文:王钟睿,钱永甫.印度洋、南海和东南沿海海温异常影响江淮流域6~7月降水量的分析及数值模拟[J].应用气象学报,2005,16(4):527-538.
作者姓名:王钟睿  钱永甫
作者单位:南京大学大气科学系, 南京 210093
基金项目:国家自然科学基金重点项目40233037,面上项目40175021资助
摘    要:利用统计分析和CCM3数值模式研究了印度洋、南海和东南沿海同期海温异常对江淮梅雨的影响。统计分析结果表明:印度洋、南海和东南沿海的正 (负) 海温异常对应于江淮流域的多 (少) 雨。对OLR资料分析表明:当印度洋OLR为正 (负) 距平时, 江淮流域OLR也为正 (负) 距平, 但南海和东南沿海OLR多为负 (正) 距平。数值模拟结果表明:当印度洋为正海温异常时, 中高纬地区的阻高偏强, 江淮流域为多雨区; 印度洋为负海温异常时, 东亚沿海出现江淮流域旱年的环流形势, 与统计事实相符合。

关 键 词:海温异常    江淮流域雨量    数值模拟
收稿时间:2004-01-29
修稿时间:2004年1月29日

Influences of SSTA in Indian Ocean, South China Sea and Southeastern Coastal Region of China on Yangtze-Huaihe River Valley Precipitation of June and July
Wang ZhongRui;Qian YongFu.Influences of SSTA in Indian Ocean, South China Sea and Southeastern Coastal Region of China on Yangtze-Huaihe River Valley Precipitation of June and July[J].Quarterly Journal of Applied Meteorology,2005,16(4):527-538.
Authors:Wang ZhongRui;Qian YongFu
Institution:Department of Atmospheric Sciences, Nanjing University, Nanjing 210093
Abstract:By using the statistics method and numerical simulations, influences of SSTA is Indian Ocean, South China Sea and southeastern coastal region of China on Yangtze-Huaihe River valley precipitation is undertaken. The results of statistic analysis show that the precipitation is plentiful(deficient) when the SSTA is positive (negative) anomaly. On the basis of analyzing OLR data, OLR of Yangtse-Huaihe River valley is positive (negative) anomaly when the OLR in Indian Ocean is positive (negative) anomaly, but the OLR of South China Sea and southeastern coastal region of China is negative (positive) anomaly. The results of numerical simulation show that the blocking high of middle-high latitude is stronger and the precipitation of Yangtze-Huaihe River valley is excessive when the SSTA of Indian Ocean is positive. In coastal region of East Asia, the general circulation is same with that of less rainfall of Yangtze-Huaihe River valley, in good agreement with statistical facts.
Keywords:SSTA Yangtze-huaihe river valley precipitation Numerical simulations
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