Eurasian Temperature Extremes and the Role of Atmospheric Dynamics
编号:913 稿件编号:1062 访问权限:仅限参会人 更新:2026-04-08 20:34:55 浏览:139次 主题报告

报告开始:2026年04月26日 14:00 (Asia/Shanghai)

报告时间:20min

所在会议:[S1-17] 专题1.17 气候变化驱动的大尺度环流变异与极端天气 » [F3] 专题1.17 气候变化驱动的大尺度环流变异与极端天气

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摘要
An apparent increase in the frequency of summer temperature extremes over northern Eurasia has been observed in the past decade. Some of these high-impact events were associated with amplified wave-like atmospheric patterns embedded in the polar front jet, such as the heatwave that hit Central Europe in June 2019 and East Asia in 2023. In this talk, we will show that the waveguide effect of the polar front jet facilitates strong planetary wave activity and waveguide teleconnections over northern Eurasia. The amplified wave activity and waveguide teleconnections will lead to enhanced temperature extremes over northern Eurasia. Months with extreme temperatures over northern Eurasia generally have amplified wave activity along the polar front jet, whereas months with near-average temperatures tend to have attenuated wave activity. Waveguide teleconnections are particularly amplified during extremely hot and cold summer months over eastern Europe and western Russia. The results are consistent in observations, reanalysis, and large-ensemble simulations from multiple climate models, highlighting the important role of waveguide teleconnections along the polar front jet in generating regional temperature extremes over northern Eurasia.
关键字
高温热浪,动力学,遥相关,气候变化
报告人
王林
研究员 中国科学院大气物理研究所

稿件作者
王林 中国科学院大气物理研究所
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