The Record-breaking Meiyu in 2020 and Associated Atmospheric Circulation and Tropical SST Anomalies
编号:121 访问权限:公开 更新:2021-11-01 14:22:27 浏览:447次 特邀报告

报告开始:2021年11月06日 13:30(Asia/Shanghai)

报告时间:15min

所在会场:[S2] 天气气候变率及其预测 [S2] 11.6日(下午) 议题二

摘要
The record-breaking meiyu in the Yangtze-Huaihe River valley (YHRV) in 2020 was characterized by an early onset, a delayed retreat, a long duration, a wide meridional rainbelt, abundant precipitation, and frequent heavy rainstorm processes. It is noted that the East Asian monsoon circulation system presented a significant quasi-biweekly oscillation (QBWO) during the meiyu season of 2020 that was associated with the onset and retreat of meiyu, a northward shift and stagnation of the rainbelt, and the occurrence and persistence of heavy rainstorm processes. Correspondingly, during the meiyu season, the monsoon circulation subsystems, including the western Pacific subtropical high (WPSH), the upper-level East Asian westerly jet, and the low-level southwesterly jet, experienced periodic oscillations linked with the QBWO. Most notably, the repeated establishment of a large southerly center, with relatively stable latitude, led to moisture convergence and ascent which was observed to develop repeatedly. This was accompanied by a long-term duration of the meiyu rainfall in the YHRV and frequent occurrences of rainstorm processes. Moreover, two blocking highs were present in the middle to high latitudes over Eurasia, and a trough along the East Asian coast was also active, which allowed cold air intrusions to move southward through the northwestern and/or northeastern paths. The cold air frequently merged with the warm and moist air from the low latitudes resulting in low-level convergence over the YHRV. The persistent warming in the tropical Indian Ocean is found to be an important external contributor to an EAP/PJ-like teleconnection pattern over East Asia along with an intensified and southerly displaced WPSH, which was observed to be favorable for excessive rainfall over YHRV.
关键词
record-breaking meiyu,western Pacific subtropical high,quasi-biweekly oscillation,Tropical Indian Ocean warming,low-level southwesterly jet,blocking high
报告人
刘芸芸
国家气候中心

稿件作者
刘芸芸 国家气候中心
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重要日期
  • 会议日期

    11月06日

    2021

    11月07日

    2021

  • 10月16日 2021

    初稿截稿日期

  • 11月25日 2021

    注册截止日期

  • 12月07日 2021

    报告提交截止日期

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