2022年中亚平流层最终变暖的开始和破纪录的4月地表变暖

IF 1.9 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Jincai Xie , Jinggao Hu , Zexuan Liu , Jiechun Deng
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引用次数: 0

摘要

2022年春季,3月19日,北半球10百帕的平流层最终变暖(SFW)事件发生,是1979年至2022年第三早的SFW事件。与此同时,中亚在随后的4月份录得近44年来最高的地表气温。根据欧洲中期天气预报中心的第五代再分析数据,本研究报告了2022年4月中亚SFW爆发与极高SAT之间的密切联系。具体而言,在SFW爆发后,平流层极地的正位势高度异常持续了一个多月,并在大约一周内向下传播到对流层,导致在3月下旬至4月中旬期间,对流层上部出现了北环形模式的负相位。这种负NAM倾向于激发从北大西洋向东南方向传播到中亚的异常Rossby波列,从而在中亚上空的对流层中上层造成异常高压。因此,下降运动和绝热加热的相关异常将导致4月份的现场前所未有的高SAT。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The onset of stratospheric final warming and record–breaking April surface warming over Central Asia in 2022

In the spring of 2022, a stratospheric final warming (SFW) event occurred on March 19 at 10 hPa in the Northern Hemisphere, ranking the third earliest SFW event during 1979–2022. Meanwhile, Central Asia recorded the highest surface air temperature (SAT) in the ensuing April in recent 44 years. Based on the fifth generation reanalysis data from European Centre for Medium-Range Weather Forecasts, this study reports an intimate linkage between the SFW onset and the extremely high SAT in Central Asia in April 2022. Specifically, after the SFW onset, positive geopotential height anomalies in the stratospheric polar region persist for more than a month, which propagate downward to the troposphere in about one week, resulting in a negative phase of the Northern Annular Mode (NAM) in the upper troposphere during the period from late March to mid-April. Such a negative NAM tends to excite an anomalous Rossby wave train propagating southeastward from the North Atlantic to Central Asia, causing an anomalous high over Central Asia in the middle and upper troposphere. As a result, the associated anomalies in descending motion and adiabatic heating would lead to the in situ unprecedented high SAT in April.

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来源期刊
Dynamics of Atmospheres and Oceans
Dynamics of Atmospheres and Oceans 地学-地球化学与地球物理
CiteScore
3.10
自引率
5.90%
发文量
43
审稿时长
>12 weeks
期刊介绍: Dynamics of Atmospheres and Oceans is an international journal for research related to the dynamical and physical processes governing atmospheres, oceans and climate. Authors are invited to submit articles, short contributions or scholarly reviews in the following areas: •Dynamic meteorology •Physical oceanography •Geophysical fluid dynamics •Climate variability and climate change •Atmosphere-ocean-biosphere-cryosphere interactions •Prediction and predictability •Scale interactions Papers of theoretical, computational, experimental and observational investigations are invited, particularly those that explore the fundamental nature - or bring together the interdisciplinary and multidisciplinary aspects - of dynamical and physical processes at all scales. Papers that explore air-sea interactions and the coupling between atmospheres, oceans, and other components of the climate system are particularly welcome.
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