Climate Attribution of Extreme Weather Events with Global high-resolution modeling framework
编号:638 访问权限:仅限参会人 更新:2025-04-01 16:44:09 浏览:9次 特邀报告

报告开始:2025年04月18日 13:45(Asia/Shanghai)

报告时间:15min

所在会场:[S1-1] 专题1.1 模式数值算法研究 [S1-1] 专题1.1 模式数值算法研究

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摘要
Extreme rainfall events are becoming increasingly severe under a warming climate. North China has experienced several catastrophic rainfall events, of which the rainstorm in 2023 is unexpected and particularly severe inducing unprecedented damage. Since 1980, the neighboring Mongolian Plateau (MP) has been warming at a rate three times the global average, faster than the surrounding regions. Whether a link exists between extreme rainfall in North China and the fast MP warming is unknown. Here, using a global variable-resolution atmospheric model with convection-permitting capability over North China, we find that the rapid warming trends, particularly over the MP, is highly conducive to extreme rainfall over North China. In the 2023 case, the fast warming over the MP induced an anomalous terrestrial high, which in the WNPSH created a strong high-pressure system over North China. This system obstructed northeastward movement of Typhoon Doksuri, concentrating moisture supply which prolonged and intensified the extreme.
 
关键词
Climate Attribution, Extreme Weather Events, Global high-resolution modeling
报告人
赵纯
教授 中国科学技术大学

稿件作者
赵纯 中国科学技术大学
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    04月17日

    2025

    04月20日

    2025

  • 04月03日 2025

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  • 04月20日 2025

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