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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >In-phase transition from the winter monsoon to the summer monsoon over East Asia: Role of the Indian Ocean
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In-phase transition from the winter monsoon to the summer monsoon over East Asia: Role of the Indian Ocean

机译:从冬季季风的同相转变东亚夏季风在:印度的角色海洋

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摘要

Analysis of observations shows that the weak East Asian winter monsoon (EAWM) to weak East Asian summer monsoon (EASM) transitions mainly occur in El Nio decaying years whereas strong EAWM (denoting stronger northerly winds along East Asian coast) to strong EASM (denoting less precipitation along the Meiyu-Baiu rainband) transitions all occur in non-El Nio-Southern Oscillation (ENSO) years during the period 1979-2009. This new finding implies that ENSO is not indispensable to the in-phase EAWM to the EASM transitions. The present study reveals an important role of the Indian Ocean in the strong EAWM to strong EASM transitions and proposes a possible mechanism for these transitions. A strong EAWM induces more precipitation over the Maritime Continent, and the associated anomalous heating excites a Gill-Matsuno type pattern in the tropics. The resultant wind and cloud changes enhance latent heat flux and reduce downward shortwave radiation over the northwestern Indian Ocean in winter, which leads to SST cooling. The cold SST anomalies persist to summer and excite an anomalous cyclone over the subtropical western North Pacific, leading to a strong EASM. The above processes also operate in the weak EAWM to weak EASM transitions during which El Nio impacts dominate but with additional contributions from the EAWM. The results of observational analysis are confirmed by numerical experiments with a coupled model.
机译:分析观察结果表明,弱的东部亚洲冬季东亚季风(EAWM)疲软主要发生在夏季季风(EASM)转换El Nio衰减年EAWM而强劲(表示强劲的北风亚洲海岸)强劲EASM(表示更少沿着Meiyu-Baiu降水雨带)转换所有发生在non-El Nio-Southern振荡(ENSO)年期间1979 - 2009。不的同相EAWM不可或缺的EASM转换。印度洋的重要作用强EAWM强劲EASM转换,提出了一个这些转变的可能机制。强EAWM诱发更多的降水海上的大陆,和相关的异常加热激发Gill-Matsuno类型模式热带地区。提高潜热通量,降低下行在印度西北部短波辐射海洋在冬天,SST冷却。冷海温异常持续夏季和激发在亚热带西部一个异常气旋北太平洋,导致EASM强劲。以上流程也在弱者EAWM操作弱EASM过渡期间El Nio的影响占据主导地位,但从额外的贡献EAWM。数值实验证实了有吗耦合模型。

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