Enhanced impact of ENSO on the Southeast Asian Summer Monsoon under Greenhouse Warming
编号:224 稿件编号:208 访问权限:仅限参会人 更新:2025-03-27 11:48:40 浏览:146次 口头报告

报告开始:2025年04月18日 14:44 (Asia/Shanghai)

报告时间:12min

所在会议:[S1-4] 专题1.4 气候变化下季风系统演化及其机理 » [S1-4] 专题1.4 气候变化下季风系统演化及其机理

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摘要
This study investigates the future changes in the impact of El Niño–Southern Oscillation (ENSO) on the Southeast Asian summer monsoon (SEASM) during the post-ENSO summer under greenhouse warming, using simulations from 28 coupled models participating in Phase 6 of the Coupled Model Intercomparison Project (CMIP6). The multimodel ensemble mean of CMIP6 models projects an enhanced response of the SEASM to ENSO in a warmer climate, primarily due to the weakened sea surface temperature (SST) anomalies over the western equatorial Pacific (WEP) during the post-El Niño summer. Compared to the present climate, the WEP SST anomalies associated with El Niño decay more rapidly and dissipate by the following summer in a warmer climate, leading to an intensified ENSO-induced SEASM anomaly via an enhanced zonal SST anomaly gradient between the tropical Indian Ocean and the WEP. Further analysis reveals that the weakened WEP SST anomalies are mainly attributed to stronger latent heat damping, driven by increased surface wind speed anomalies. This change is linked to an eastward shift of the anomalous Walker circulation induced by an El Niño-like SST warming pattern in the tropical Pacific under global warming. Additionally, the weakening of the climatological Walker circulation slows down the climatological zonal ocean currents, further reducing the WEP SST anomalies by weakening the advection of anomalous temperature by the mean current.
 
关键字
Asian Summer Monsoon,El Nino/Southern Oscillation,Global warming
报告人
LinShuheng
博士后 福建师范大学

稿件作者
林书恒 福建师范大学
杨崧 Sun Yat Sen University
DongBuwen Department of Meteorology; National Centre for Atmospheric Science; University of Reading
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