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Impacts of the basin-wide Indian Ocean SSTA on the South China Sea summer monsoon onset

机译:流域范围印度洋SSTA对南海夏季风爆发的影响

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This article explores the impacts of the Indian Ocean basin-scale sea surface temperature anomaly (SSTA) on the South China Sea (SCS) summer monsoon onset. Basin-wide warming in the tropical Indian Ocean (TIO) is found to occur in the spring following an El Nino event, and the opposite occurs for a La Nina event. Such changes of the Indian Ocean SSTA apparently prolong the El Nino-Southern Oscillation (ENSO) effects on the subsequent Asian summer monsoon, mainly through modifying the strength of the Philippine Sea anti-cyclone. Warming in the TIO induces an anomalous reversed Walker circulation over the tropical Indo-Pacific Ocean, which leads to descending motion, and hence suppressed convection in the western Pacific. The intensified Philippine Sea anticyclone in May and June advances more westward and prevents the extension of the Indian Ocean westerly flow into the SCS region, thereby causing a late SCS monsoon onset. The case is opposite for the TIO cooling such that the Philippine Sea anti-cyclone weakens and retreats eastward, thus favouring an early onset of the SCS monsoon. Copyright (C) 2008 Royal Meteorological Society
机译:本文探讨了印度洋盆地尺度海表温度异常(SSTA)对南中国海(SCS)夏季风爆发的影响。在厄尔尼诺事件之后的春季,热带印度洋(TIO)的整个盆地变暖都发生了,而拉尼娜事件则相反。印度洋SSTA的这种变化显然延长了厄尔尼诺-南方涛动(ENSO)对随后的亚洲夏季风的影响,这主要是通过改变菲律宾海反旋风的强度来实现的。 TIO的变暖引起热带印度洋-太平洋上的沃克环流异常逆转,导致下降运动,从而抑制了西太平洋的对流。 5月和6月菲律宾海反气旋强度加大,向西推进,阻止印度洋西风向南海扩张,从而造成南海季风迟发。 TIO冷却的情况则相反,菲律宾海的反旋风减弱并向东撤退,因此有利于南海季风的早发。皇家气象学会(C)2008

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