Reponses of middle atmospheric circulation to the 2009 major sudden stratospheric warming

IF 2.9 3区 地球科学 Earth and Planetary Physics Pub Date : 2020-09-18 DOI:10.26464/epp2020046
ShengYang Gu, Xin Hou, JiaHui Qi, KeMin TengChen, XianKang Dou
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引用次数: 4

Abstract

In this research, the roles of gravity waves and planetary waves in the change to middle atmospheric residual circulation during a sudden stratospheric warming period are differentiated and depicted separately by adopting the downward control principle. Our analysis shows clear anomalous poleward residual circulation patterns from the equator to high latitudes in the lower winter stratosphere. At the same time, upward mean flows are identified at high latitudes of the winter upper stratosphere and mesosphere, which turn equatorward in the mesosphere and reach as far as the tropical region, and consequently the extratropical region in the summer hemisphere. The downward control principle shows that anomalous mesospheric residual circulation patterns, including interhemispheric coupling, are solely caused by the change in gravity wave forcing resulting from the reversal of the winter stratospheric zonal wind. Nevertheless, both planetary waves and gravity waves are important to variations in the winter stratospheric circulation, but with opposite effects.

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中层大气环流对2009年平流层主要突然变暖的响应
本文采用向下控制原理,分别对平流层突然增温期重力波和行星波在大气中层剩余环流变化中的作用进行了区分和描述。我们的分析表明,从赤道到高纬度的冬季平流层下部存在明显的向极残余环流异常。与此同时,在冬季平流层上层和中间层的高纬度地区发现了向上的平均气流,这些气流在中间层转向赤道,最远到达热带地区,从而到达夏季半球的温带地区。下向控制原理表明,冬季平流层纬向风逆转导致的重力波强迫变化,是造成包括半球间耦合在内的异常中间层剩余环流型的唯一原因。然而,行星波和重力波对冬季平流层环流的变化都很重要,但作用相反。
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来源期刊
Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
自引率
17.20%
发文量
174
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