Recent pronounced warming on the Mongolian Plateau boosted by internal climate variability
编号:854 稿件编号:623 访问权限:仅限参会人 更新:2026-04-08 15:08:03 浏览:79次 口头报告

报告开始:2026年04月27日 09:32 (Asia/Shanghai)

报告时间:13min

所在会议:[S1-9] 专题1.9 古代与现代季风:代用指标、观测分析和演变机制 » [F24] 专题1.9 古代与现代季风:代用指标、观测分析和演变机制

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摘要
Exceptionally strong summertime warming occurred over the Mongolian Plateau between 1986 and 2004, at a rate that was three times the average terrestrial warming in the Northern Hemisphere. The physical processes responsible for this extreme warming remain unclear. Here we show that the synchronous phase shift of the Interdecadal Pacific Oscillation and the Atlantic Multidecadal Oscillation contributed to this extreme Mongolian Plateau warming, which cannot be fully explained by the increasing anthropogenic CO2 alone. Pacemaker model experiments show that the Interdecadal Pacific Oscillation and Atlantic Multidecadal Oscillation excited an atmospheric wave train, resulting in an upper-level anticyclonic circulation over the Mongolian Plateau. This anticyclonic circulation increased surface warming by enhancing downward solar radiation, and the surface warming was further boosted by positive land–atmosphere feedbacks. Our results highlight the important role of internal climate variability in driving rapid regional climate change over the Mongolian Plateau.
关键字
区域气候变化,遥相关
报告人
蔡晴宇
博士后 云南大学

稿件作者
蔡晴宇 云南大学
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