冬季中纬度平流层和电离层变率的比较分析

IF 0.9 Q4 GEOCHEMISTRY & GEOPHYSICS
A. Yasyukevich, A. Vesnin
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引用次数: 0

摘要

在这项工作中,我们对北半球中纬度不同经度的电离层和平流层变率(具有内部重力波尺度特征)的时空动态进行了联合分析。我们分析了2012-2013年和2018-2019年冬季发生强烈的冬至平流层突然变暖(SSWs)的时期。在冬季环极涡旋存在的区域内,平流层变率的增加出现在40°-60°N的有限纬度区间内。在SSW条件下,平流层波浪扰动的产生不再表现为平流层变率指数的显著降低。总电子含量变异指数的时空动态也表现出类似的行为。中纬度电离层变率水平在SSW峰值后显著降低。电离层变率的减少可以用平流层中波浪产生的减少来解释,这与ssw期间环极涡的破坏有关
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative analysis of variability in the mid-latitude stratosphere and ionosphere in winter periods
In this work, we perform a joint analysis of the spatial-temporal dynamics of ionospheric and stratospheric variability (with scales characteristic of internal gravity waves) at different longitudes of midlatitudes of the Northern Hemisphere. We analyze the winter periods of 2012–2013 and 2018–2019 when strong midwinter sudden stratospheric warmings (SSWs) occurred. An increase in the variability in the stratosphere is shown to occur in a limited latitude interval 40°–60° N in the region of existence of a winter circumpolar vortex. Under SSW conditions, the generation of wave disturbances in the stratosphere ceases manifesting itself in a significant decrease in the stratospheric variability index. Similar behavior is noted in the spatial-temporal dynamics of the index of the total electron content variability. The level of ionospheric variability at midlatitudes decreases significantly after SSW peaks. The decrease in the ionospheric variability can be explained by a reduction in wave generation in the stratosphere, associated with the destruction of the circumpolar vortex during SSWs
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来源期刊
Solar-Terrestrial Physics
Solar-Terrestrial Physics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.50
自引率
9.10%
发文量
38
审稿时长
12 weeks
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