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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Space-time variability of equatorial Kelvin waves and intraseasonal oscillations around the tropical tropopause
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Space-time variability of equatorial Kelvin waves and intraseasonal oscillations around the tropical tropopause

机译:赤道开尔文波的时空变异性和动力学振荡热带对流层顶

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摘要

Using the ECMWF 40-year reanalysis data, large-scale variations of temperature and zonal wind around the tropical tropopause are investigated. From the space-time spectral analysis, two dominant spectral regions in the eastward propagating domain are found: one for Kelvin waves and the other for intraseasonal oscillations (ISOs). To investigate activities of Kelvin waves and ISOs we reconstructed the grid data for the two spectral windows and calculated the square amplitude at each grid point. Kelvin wave activities in zonal wind are vigorous during two seasons around February and July in the upper troposphere up to 100 hPa. However, the longitudinal maxima are found in the Eastern Hemisphere at 100 hPa and in the Western Hemisphere at 150 hPa and below. Activities calculated from the outgoing longwave radiation data for the Kelvin wave spectral window are different from those in zonal wind about their maximum longitudes and seasons. As the climatological background zonal wind in the upper troposphere is easterly in the Eastern Hemisphere and westerly in the Western Hemisphere, it seems that the difference of Kelvin wave activities between 100 hPa and 150 hPa is closely related to the background wind field affecting Kelvin wave propagation and dissipation. ISO activities in zonal wind at 100 hPa are vigorous in the western Pacific during northern winter, and we may find relation to those in OLR. This indicates that the eastward moving disturbance with the ISO time scale is coupled with the organized convective system such as the Madden-Julian oscillation.
机译:利用ECMWF 40年的再分析数据,温度和纬向大规模的变化在热带对流层风调查。分析两个主要光谱区域向东传播领域的发现:一个开尔文波和其他动力学振荡(iso)。ISOs开尔文波和我们重建网格两个光谱窗口和数据计算在每个网格点振幅平方。在纬向风期间剧烈波活动上两个赛季在2月和7月对流层100 hPa。纵向最大值在东部半球100 hPa在西方半球150 hPa下面。从即将离任的长波辐射计算开尔文波光谱数据窗口不同于那些在纬向风对自己的最大经度和季节。纬向风上气候背景对流层是东半球的东风和西风在西半球,似乎开尔文波的不同活动100 hPa - 150 hPa密切相关背景风场影响开尔文波传播和耗散。纬向风在100 hPa激烈的西部太平洋北部冬季,我们可能会发现与OLR的关系。向东移动干扰与ISO规模与组织对流耦合系统如Madden-Julian振荡。

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