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平流层中高纬度环流准两年振荡特征的半球不对称性。

Hemispheric asymmetries in the quasibiennial oscillation signature on the mid- to high-latitude circulation of the stratosphere.

作者信息

Peña-Ortiz C, García-Herrera R, Ribera P, Calvo N

机构信息

Departamento de Sistemas Físicos, Químicos y Naturales, Universidad Pablo de Olavide, Sevilla, Spain.

出版信息

Ann N Y Acad Sci. 2008 Dec;1146:32-49. doi: 10.1196/annals.1446.007.

Abstract

The quasibiennial oscillation (QBO) dominates the variability of the equatorial stratosphere and also affects the circulation and temperature of the extratropical region. In this paper we review previous work showing that the mid- to high-latitude circulation is weaker (stronger) when QBO easterlies (westerlies) dominate in the low equatorial stratosphere. The accepted explanation for the extratropical QBO signature is based on the QBO modulation of upward propagating planetary Rossby waves. This mechanism is consistent with the strong seasonality observed in the extratropical QBO. The largest QBO signature in the northern extratropical stratosphere occurs during winter when the dominating westerly wind allows the penetration of planetary waves in the northern stratosphere. However, during the southern winter, planetary waves do not disrupt the southern stratospheric vortex and the largest QBO signature is found during the late spring (November). To further illustrate these mechanisms, we analyze the QBO signature on the mid- to high-latitude circulation of the stratosphere using data from the ERA-40 reanalysis. The extratropical signature in both hemispheres is evaluated as a function of the latitude-height structure of the zonal wind in the tropical region in order to determine how the extratropical response depends on the vertical phase structure of the tropical QBO. We also analyze the QBO impact on planetary wave activity in order to determine how this modulation can explain the observed extratropical QBO signal.

摘要

准两年振荡(QBO)主导着赤道平流层的变率,并且还影响着温带地区的环流和温度。在本文中,我们回顾了先前的研究工作,这些工作表明,当赤道低平流层中QBO东风(西风)占主导时,中高纬度环流较弱(较强)。对于温带地区QBO特征的公认解释是基于向上传播的行星罗斯贝波的QBO调制。这一机制与温带地区QBO中观测到的强烈季节性一致。在北半球温带平流层中,最大的QBO特征出现在冬季,此时占主导的西风允许行星波在北半球平流层中穿透。然而,在南半球冬季,行星波不会扰乱南半球平流层涡旋,最大的QBO特征出现在晚春(11月)。为了进一步说明这些机制,我们使用ERA - 40再分析数据,分析了QBO在平流层中高纬度环流上的特征。对两个半球的温带特征进行评估,作为热带地区纬向风的纬度 - 高度结构的函数,以便确定温带响应如何依赖于热带QBO的垂直相位结构。我们还分析了QBO对行星波活动的影响,以便确定这种调制如何能够解释观测到的温带QBO信号。

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