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近30年江淮地区梅雨期降水的空间多型态特征
引用本文:胡景高,周兵,徐海明.近30年江淮地区梅雨期降水的空间多型态特征[J].应用气象学报,2013,24(5):554-564.
作者姓名:胡景高  周兵  徐海明
作者单位:1.南京信息工程大学气象灾害教育部重点实验室,南京 210044
基金项目:资助项目:国家重大科学研究计划(2012CB955901),公益性行业(气象)科研专项(GYHY201006019),江苏省普通高校研究生科研创新计划(CXZZ11 0601)
摘    要:该文比较了不同站点分布情况下我国江淮地区梅雨期降水基本空间型态,发现较高分辨率的站点分布能得到更细化的空间型态。1979—2010年我国江淮地区梅雨期降水基本空间型态主要包括南部型、长江型和江淮型。年际变化上,梅雨期降水的南北反位相特征更加明显;而长江型梅雨期降水较其他两个型态而言相对独立。回归分析表明,3种降水型态所对应的东亚夏季风环流子系统的位置、季风经圈环流及梅雨期水汽输送等均存在明显差别,其中东亚太平洋遥相关型 (EAP) 和欧亚遥相关型 (EU) 对南部型降水有显著影响。1979年以来,前期赤道东太平洋海温主要影响我国长江流域和江南地区梅雨期降水,而江淮型梅雨期降水与热带海温没有显著的相关关系。

关 键 词:空间型态    年际变化    大气环流    海温
收稿时间:2013-01-19
修稿时间:6/3/2013 12:00:00 AM

Characteristics of Multi patterns of Precipitation over the Yangtze Huaihe Basins During Meiyu Season in Recent 30 Years
Hu Jinggao,Zhou Bing and Xu Haiming.Characteristics of Multi patterns of Precipitation over the Yangtze Huaihe Basins During Meiyu Season in Recent 30 Years[J].Quarterly Journal of Applied Meteorology,2013,24(5):554-564.
Authors:Hu Jinggao  Zhou Bing and Xu Haiming
Institution:1.Key Laboratory of Meteorological Disaster of Ministry of Education, Nanjing University of Information Science & Technology, Nanjing 2100442.National Climate Center, Beijing 100081
Abstract:The spatial patterns of precipitation during Meiyu season (June—July) over the Yangtze-Huaihe Basins are analyzed under different distributions of surface stations. 424 stations to the east of 110°E are chosen for the rotated empirical orthogonal function (REOF) analysis during 1979—2010. Then, three precipitation patterns are obtained, i.e., the south pattern (SP), the Yangtze pattern (YP), and the Yangtze-Huaihe pattern (YHP).On the inter-annual time scale, it's found that the out-of-phase relationship displays more remarkably between the rainfall of SP and YHP in recent 30 years. However, the precipitation of YP shows no significant relationship with that of SP and YHP, revealing as more independent precipitation pattern. In addition, the YP has the most climatological precipitation, and shows the largest variability. While on the inter-decadal time scale, the YP precipitation is identical with that of SP. Nevertheless, the precipitation of YHP exhibits out-of-phase relationship with the YP and SP, especially since the early 1990s. There are obvious inter-decadal changes in the early 1990s and early 2000s in all spatial precipitation patterns during Meiyu season. But different from the previous years, by 2010, the YP and SP precipitation has increased a little but the YHP precipitation has decreased, suggesting a new inter-decadal variation.The regression using ERA-Interim reanalysis data indicates that corresponding to the anomalous precipitation, the intensities and positions of sub-systems of East Asian summer monsoon circulations, such as the south Asia high (SAH), the western Pacific subtropical high (SH) and the subtropical upper jet stream (JS), have notable differences which also exist in the monsoon meridional circulations and water vapor transport flux. Specifically, when the YP precipitation is in the flood years, the intensities of the SAH and SH enhance apparently. When the YHP precipitation is strong, the SAH and JS locate east, meanwhile, the geopotential height over Aleutian Islands maintain positive anomalies. The positive phase of the East Asia-Pacific teleconnection pattern and the negative phase of the Eurasian teleconnection pattern make it difficult for the SH to shift northward and confine it to a southern position, which in turn enhance the SP rainfall remarkably. Additionally, it is found that the SH, the monsoon meridional circulations, together with the vertically integrated water vapor transport flux stay successively in northern places, accompanying by a northerly rainfall pattern. Further analyses on sea surface temperature (SST) present that the previous SST of the east Pacific Ocean of the equator shows significant relationship with the precipitation of YP and SP. The cool SST of the western Pacific warm pool and warm SST in Chinese coasts and the Kuroshio area restrain the precipitation in the SP. But there is no distinct correlation between the precipitation of YHP and the tropical SST in the prior period, which implies that the tropical SST plays no key role in the YHP precipitation since 1979.
Keywords:spatial pattern  inter annual variability  atmospheric circulation  sea surface temperature
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