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Combined effects of recent Pacific cooling and Indian Ocean warming on the Asian monsoon

机译:近期太平洋降温和印度洋变暖对亚洲季风的综合影响

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摘要

Recent research indicates that the cooling trend in the tropical Pacific Ocean over the past 15 years underlies the contemporaneous hiatus in global mean temperature increase. During the hiatus, the tropical Pacific Ocean displays a La Niña-like cooling pattern while sea surface temperature (SST) in the Indian Ocean has continued to increase. This SST pattern differs from the well-known La Niña-induced basin-wide cooling across the Indian Ocean on the interannual timescale. Here, based on model experiments, we show that the SST pattern during the hiatus explains pronounced regional anomalies of rainfall in the Asian monsoon region and thermodynamic effects due to specific humidity change are secondary. Specifically, Indo-Pacific SST anomalies cause convection to intensify over the tropical western Pacific, which in turn suppresses rainfall in mid-latitude East Asia through atmospheric teleconnection. Overall, the tropical Pacific SST effect opposes and is greater than the Indian Ocean SST effect.
机译:最近的研究表明,过去15年中热带太平洋的冷却趋势是全球平均温度上升的同期中断。在中断期间,热带太平洋表现出类似拉尼娜现象的冷却模式,而印度洋的海面温度(SST)则持续上升。这种SST模式与年际尺度上著名的拉尼娜引起的印度洋整个海盆范围的冷却不同。在此,基于模型实验,我们表明,裂隙期间的SST模式解释了亚洲季风区降水的明显区域异常,而由于特定湿度变化引起的热力学效应是次要的。具体来说,印度洋-太平洋海温异常导致对流在热带西太平洋上加剧,这反过来又通过大气遥相关抑制了东亚中纬度地区的降雨。总体而言,热带太平洋海温的影响相反,并且大于印度洋海温的影响。

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