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Interannual variability of the seesaw mode of the interface between the Indian and East Asian summer monsoons

机译:印度和东亚夏季风之间交界处的跷跷板模式的年际变化

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摘要

The relation between the seesaw mode of the Interface between the Indian summer monsoon and East Asian summer monsoon (IIE) and the South China Sea summer monsoon trough (SCSSMT) and the Indian summer monsoon trough (ISMT) is investigated using two atmospheric reanalyses together with outgoing longwave radiation, sea surface temperature (SST), and gridded precipitation datasets. Canonical correlation analysis combined with empirical orthogonal functions, correlation, and composite analysis are employed. Results indicate that a stronger ISMT and SCSSMT resulting from colder SST over the tropical Indian Ocean and tropical east-central Pacific cause the IIE to deviate from its normal position in an anticlockwise direction, with a node at around 22 degrees N. This leads to heavier than normal summer rainfall over the north-central Indian subcontinent and South China Sea, but weaker than normal from the low and middle reaches of the Yangtze River and South Korea to central Japan. A weaker ISMT and SCSSMT resulting from warmer SST over the tropical Indian Ocean and tropical east-central Pacific causes the IIE to deviate from its normal position in a clockwise direction, and the anomalous summer rainfall pattern is the opposite of that for the stronger troughs. Further analysis indicates that the SCSSMT plays a crucial role in the evolution of the IIE seesaw mode. The latitudinal difference between the IMST and SCSSMT may be one of the most important reasons for the formation of the IIE seesaw mode.
机译:结合两次大气再分析,结合印度夏季风与东亚夏季风(IIE)与南海夏季风槽(SCSSMT)和印度夏季风槽(ISMT)之间的跷跷板模式之间的关系进行了研究。外向长波辐射,海面温度(SST)和栅格化降水数据集。典型的相关性分析结合经验正交函数,相关性和复合分析。结果表明,热带印度洋和热带中东部太平洋上空海温偏冷导致ISMT和SCSSMT增强,导致IIE沿逆时针方向偏离其正常位置,结点在N 22度左右。这导致IIE和SCSSMT变重。比印度中北部次大陆和南中国海的正常夏季降雨量要少,但从长江和韩国的中下游到日本中部,降雨量却比正常弱。热带印度洋和热带中东部太平洋上海温升高导致ISMT和SCSSMT减弱,导致IIE沿顺时针方向偏离其正常位置,夏季降水异常与强槽相反。进一步的分析表明,SCSSMT在IIE跷跷板模式的演变中起着至关重要的作用。 IMST和SCSSMT之间的纬度差异可能是形成IIE跷跷板模式的最重要原因之一。

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  • 来源
    《Climate dynamics》 |2019年第6期|2683-2695|共13页
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    Yunnan Univ Dept Atmospher Sci Kunming 650091 Yunnan Peoples R China;

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