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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Relationship between the boreal spring Hadley circulation and the summer precipitation in the Yangtze River valley
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Relationship between the boreal spring Hadley circulation and the summer precipitation in the Yangtze River valley

机译:北方春哈德利之间的关系循环和夏季降水长江流域

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摘要

The connection between the boreal spring Hadley circulation (HC) and variability of the following summer east Asian atmospheric circulations and precipitation in the Yangtze River valley is investigated through an analysis of the observed data in this study. It is found that there is a significantly positive correlation between HC and the summer rainfall in the Yangtze River valley. This relationship is well supported by the changes of atmospheric general circulation backgrounds and water vapor conditions related to the variation of the preceding boreal spring HC. The summer situations of strengthened western Pacific subtropical high (WPSH), intensified South Asian high (SAH), southward located east Asian jet (EAJ) and enhanced water vapor corresponding to strong spring HC provide favorable conditions for increasing the precipitation in the Yangtze River valley and vice versa. The possible mechanism how the boreal spring HC affects summer atmospheric circulations is identified preliminarily in the study. Results show that sea surface temperature (SST) anomalies in the Indian Ocean and South China Sea may play an important role in linking the spring HC and summer atmospheric circulations. Spring HC may evoke SST anomalies in the Indian Ocean and South China Sea, which can persist from spring to summer and in turn give rise to anomalous east Asian summer monsoon. As a result, summer rainfall in the Yangtze River valley may be influenced.
机译:北方春哈德利之间的联系循环(HC)和以下的可变性夏季东亚大气环流和长江流域的降水量通过观察分析调查本研究的数据。HC之间显著正相关长江流域夏季降水。这种关系很支持的大气环流的变化背景和水汽条件有关前面的北方春天HC的变异。夏天的情况下加强了西方太平洋副热带高压(副高),愈演愈烈南亚高(SAH),向南东亚洲航空(EAJ)和增强水蒸气对应于HC提供强有力的春天增加了有利的条件长江流域和降水亦然。春季HC影响夏季大气发行量确定初步的研究。表明,海表面温度(SST)异常在印度洋和南海可能玩在连接弹簧HC和一个重要的角色夏季大气发行量。唤起在印度洋海温异常和南中国海,坚持从春天到夏天,反过来又会导致异常亚洲夏季季风。在长江流域降雨影响。

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