Distinct tropospheric anomalies during sudden stratospheric warming events accompanied by strong and weak Ural Ridge
编号:309 稿件编号:567 访问权限:仅限参会人 更新:2025-03-27 15:22:57 浏览:104次 主题报告

报告开始:2025年04月19日 08:30 (Asia/Shanghai)

报告时间:20min

所在会议:[S1-8] 专题1.8 极地与中低纬气候系统相互作用 » [S1-8] 专题1.8 极地与中低纬气候系统相互作用

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摘要
Different tropospheric precursor anomalies leading to sudden stratospheric warmings (SSWs) may result in different circulation evolution. This study finds that there are distinct differences in tropospheric circulation evolutions during SSWs following anomalously strong- (SUR-SSWs) and weak- (WUR-SSWs) Ural ridge. SUR-SSWs exhibit enhanced East Asian trough in the following week, while enhanced Greenland ridge and negative tropospheric annular mode anomalies can persist for one month. In contrast, WUR-SSWs exhibit surface cooling over northern Eurasia without notable tropospheric annular mode anomalies. Mechanistically, during SUR-SSWs, waves induced by the enhanced Ural wave source tend to propagate below the tropopause, amplifying the East Asian trough. Additionally, due to decreased wave phase speed, the preexisting Ural ridge anomalies migrate westward and amplify the Greenland ridge. Before WUR-SSWs, preexisting cooling over Northeast Asia migrates westward and amplifies northern Eurasia cooling. Thus, the Ural ridge anomalies prior to SSWs significantly influence post-SSW tropospheric circulation.
 
关键字
平流层爆发性增温,乌拉尔阻塞,平流层极涡,东亚天气
报告人
张健恺
大气物理系副系主任 兰州大学大气科学学院

稿件作者
张健恺 兰州大学大气科学学院
张重阳 兰州大学大气科学学院
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