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ISSN 1006-9895

CN 11-1768/O4

中国冰冻日数的气候及变化特征分析
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国家自然科学基金资助项目40905036, 国家科技支撑计划2007BAC29B06


Climatic Characters and Changes of Ice-Freezing Days in China
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    摘要:

    利用1954~2009年中国台站雨凇和雾凇日数统计分析了中国冰冻日数的气候及变化特征。中国的冰冻主要出现在新疆、 西北东部、内蒙古东部、东北、华北、淮河流域及江南一带, 年均冰冻日数一般有1~5天, 5天以上的重冰区主要分布在新疆北部、 陕西南部、 东北中部、 华北东部、 秦岭、 云南东北部、 贵州等地。雨凇大都出现在我国南方地区, 而雾凇主要出现在我国北方地区。冰冻主要发生在11月至次年3月, 尤其是冬季。中国冰冻、 雨凇和雾凇日数在1954~2009年间出现了显著减少的变化趋势, 并在1990年代初突变减少, 雾凇的减少趋势较雨凇明显。中国冰冻、雨凇和雾凇日数的减少与气温的显著上升及相对湿度和风速的显著减小关系密切。另外, 冰冻 (雨凇、 雾凇) 日数与亚洲极涡的面积和强度, 乌拉尔山和贝加尔湖阻塞高压的强度及西太平洋副高的面积、强度和位置均具有显著的相关关系。1954-2009年间, 亚洲极涡面积显著减小且强度减弱, 乌拉尔山和贝加尔湖阻塞高压显著增强, 西太平洋副高面积缩小、 强度减弱并明显西伸。这些变化可能引起了我国冰冻 (雨凇、 雾凇) 日数的大幅减少。

    Abstract:

    Climatic characters and changes of ice-freezing days in China are analyzed based on the daily rime and glaze observational dataset at 743 stations in China from 1954 to 2009. It is found that ice-freezing occurs mainly in Xinjiang, eastern Northwest China, eastern Inner Mongolia, Northeast China, North China, the Huaihe River valley and the region to the south of the Yangtze River, with the rime being almost in the southern part of China while the glaze in the northern part. Annual ice-freezing day generally ranges from 1 to 5 days and heavy ice-freezing regions scatter in northern Xinjiang, southern Shannxi, central Northeast China, eastern North China, Qinling mountain range, northeastern Yunnan, Guizhou, and so on. During 1954 to 2009, the ice-freezing days show a significant decreasing trend and an abrupt change point is observed in the early 1990s, with the decreasing amplitude of rime days greater than that of glaze days. This decrease in ice-freezing days has close relevance with the obvious increase in the temperature and decrease in the relative humidity and the wind speed. Additionally, the ice-freezing days are closely related to the extent and intensity of Asian polar vortex, the intensity of the Ural blocking high and the Baykal blocking high, as well as the extent, intensity and location of the western Pacific subtropical high. Further, during 1954-2009, the extent and the intensity of Asian polar vortex decreased, and the Ural and Baykal blocking highs intensified, the extent and the intensity of the western Pacific subtropical high decreased while the subtropical high shifted more westward. These changes in general circulation may cause the significant decrease in ice-freezing (glaze, rime) days in China.

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王遵娅.中国冰冻日数的气候及变化特征分析.大气科学,2011,35(3):411~421 Wang Zunya. Climatic Characters and Changes of Ice-Freezing Days in China. Chinese Journal of Atmospheric Sciences (in Chinese),2011,35(3):411~421

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  • 在线发布日期: 2011-12-06
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