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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Role of gravity waves in the spatial and temporal variability of stratospheric temperature measured by COSMIC/FORMOSAT-3 and Rayleigh lidar observations
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Role of gravity waves in the spatial and temporal variability of stratospheric temperature measured by COSMIC/FORMOSAT-3 and Rayleigh lidar observations

机译:重力波在COSMIC / FORMOSAT-3和瑞利激光雷达观测中测得的平流层温度时空变化中的作用

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摘要

This study utilizes COSMIC satellite and lidar observations to examine the spatial and temporal variability of stratospheric temperature at a number of scales. The geographic variation of the RMS temperature difference between pairs of COSMIC profiles shows a strong correspondence to previous climatologies of gravity wave activity. In addition, the second-order structure functions we form can be directly related to the horizontal wave number power spectrum. These structure functions for different seasons and altitudes display a close correspondence to previous studies which examined the form of the horizontal wave number power spectra. Our analysis suggests that the wavefield may be particularly affected by changes in the zonal wind between 15 and 25 km and that the wind reversal between tropospheric westerlies and stratospheric easterlies in summer strongly contributes to critical-level filtering. Inspection also shows that longer horizontal wavelength waves are preferentially removed in this region. At low altitudes, the variability related to gravity waves shows a remarkably similar pattern as a function of horizontal separation in both hemispheres but is quite different at higher altitudes. Such contrast implies that seasonal variability at higher altitudes may be dominated by changes in propagation conditions in the lower stratosphere. Examination of temperature variability as a function of spatial and temporal separation indicates that gravity wave activity dominates stratospheric temperature variability, and this has impacts on validation study site selection. For example, validation exercises in the summer hemisphere stratosphere are likely to be less affected by geophysical variability than those in the winter hemisphere.
机译:这项研究利用COSMIC卫星和激光雷达的观测资料,以多种尺度研究了平流层温度的时空变化。成对的COSMIC轮廓之间的RMS温差的地理变化显示出与以前的重力波活动气候的强烈对应关系。另外,我们形成的二阶结构函数可以与水平波数功率谱直接相关。这些针对不同季节和高度的结构函数显示出与先前研究的紧密相关,后者研究了水平波数功率谱的形式。我们的分析表明,波场可能受到15至25 km之间纬向风变化的特别影响,并且夏季对流层西风和平流层东风之间的风向逆转对临界水位滤波有很大作用。检查还显示,较长的水平波长波优先在该区域中去除。在低海拔处,与重力波有关的变异性在两个半球中表现为与水平间隔成函数的非常相似的模式,但在较高海拔处却有很大不同。这样的对比表明,高空的季节变异性可能由平流层下部的传播条件变化所决定。根据空间和时间间隔对温度变化的检验表明,重力波活动主导了平流层温度的变化,这对验证研究地点的选择产生了影响。例如,与冬季半球相比,夏季半球平流层中的验证演习受地球物理变异性的影响较小。

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