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Absorbing and reflecting sudden stratospheric warming events and their relationship with tropospheric circulation

机译:吸收和反射平流层突然变暖事件及其与对流层环流的关系

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摘要

Sudden stratospheric warming (SSW) events have received increased attention since their impacts on the troposphere became evident recently. Studies of SSW usually focus on polar stratospheric conditions; however, understanding the global impact of these events requires studying them from a wider perspective. Case studies are used to clarify the characteristics of the stratosphere-troposphere dynamical coupling, and the meridional extent of the phenomena associated with SSW. Results show that differences in the recovery phase can be used to classify SSW events into two types. The first is the absorbing type of SSW, which has a longer timescale as well as a larger meridional extent due to the persistent incoming planetary waves from the troposphere. The absorbing type of SSW is related to the annular mode on the surface through poleward and downward migration of the deceleration region of the polar night jet. The other is the reflecting type. This is characterized by a quick termination of the warming episode due to the reflection of planetary waves in the stratosphere, which leads to an amplification of tropospheric planetary waves inducing strong westerlies over the North Atlantic and blocking over the North Pacific sector. Differences in the tropospheric impact of the absorbing and reflecting SSWs are also confirmed with composite analysis of 22 major SSWs.
机译:平流层突然变暖(SSW)事件最近对对流层的影响变得明显,因此越来越受到关注。SSW的研究通常集中在极地平流层条件;然而,要了解这些事件的全球影响,需要从更广泛的角度来研究它们。通过案例研究,阐明了平流层-对流层动态耦合的特征,以及与SSW相关的现象的经向范围。结果表明,恢复阶段的差异可用于将 SSW 事件分为两种类型。第一种是SSW的吸收类型,由于来自对流层的持续入射行星波,它具有更长的时间尺度和更大的经向范围。SSW的吸收类型与极夜急流减速区向极地和向下迁移的表面环形模式有关。另一种是反射型。其特点是由于行星波在平流层中的反射,变暖事件迅速终止,这导致对流层行星波的放大,在北大西洋上空引起强烈的西风,并在北太平洋地区上空阻塞。对22个主要SSW的综合分析也证实了吸收和反射SSW对流层影响的差异。

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