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2020 年长江流域历史性洪灾与印度洋极端条件有关。

Historic Yangtze flooding of 2020 tied to extreme Indian Ocean conditions.

机构信息

Department of Atmospheric and Oceanic Sciences and Institute of Atmospheric Sciences, Fudan University, Shanghai 200438, China.

CMA-FDU Joint Laboratory of Marine Meteorology, Shanghai 200438, China.

出版信息

Proc Natl Acad Sci U S A. 2021 Mar 23;118(12). doi: 10.1073/pnas.2022255118. Epub 2021 Mar 8.

Abstract

Heavy monsoon rainfall ravaged a large swath of East Asia in summer 2020. Severe flooding of the Yangtze River displaced millions of residents in the midst of a historic public health crisis. This extreme rainy season was not anticipated from El Niño conditions. Using observations and model experiments, we show that the record strong Indian Ocean Dipole event in 2019 is an important contributor to the extreme Yangtze flooding of 2020. This Indian Ocean mode and a weak El Niño in the Pacific excite downwelling oceanic Rossby waves that propagate slowly westward south of the equator. At a mooring in the Southwest Indian Ocean, the thermocline deepens by a record 70 m in late 2019. The deepened thermocline helps sustain the Indian Ocean warming through the 2020 summer. The Indian Ocean warming forces an anomalous anticyclone in the lower troposphere over the Indo-Northwest Pacific region and intensifies the upper-level westerly jet over East Asia, leading to heavy summer rainfall in the Yangtze Basin. These coupled ocean-atmosphere processes beyond the equatorial Pacific provide predictability. Indeed, dynamic models initialized with observed ocean state predicted the heavy summer rainfall in the Yangtze Basin as early as April 2020.

摘要

2020 年夏季,强季风降雨肆虐东亚大片地区。长江流域严重洪灾导致数百万居民在历史公共卫生危机中被迫转移。这种极端雨季并不是厄尔尼诺条件所预期的。我们通过观测和模式实验表明,2019 年创纪录的强印度洋偶极子事件是 2020 年长江特大洪水的重要成因。这种印度洋模态和太平洋较弱的厄尔尼诺现象激发了沿赤道以南向西缓慢传播的下沉海洋罗斯贝波。在西南印度洋的一个浮标上,2019 年末海洋温跃层加深了创纪录的 70 米。温跃层加深有助于通过 2020 年夏季维持印度洋变暖。印度洋变暖导致印度-西北太平洋地区低层大气异常反气旋,并使东亚高层西风急流增强,导致长江流域夏季降雨量过大。这些超出赤道太平洋的耦合海洋-大气过程提供了可预测性。事实上,早在 2020 年 4 月,用观测到的海洋状态初始化的动力模型就预测到了长江流域夏季的强降雨。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/852b/8006176/751ab5a76d40/pnas.2022255118fig01.jpg

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