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The South Georgia Wave Experiment (SG-WEX): radiosonde observations of gravity waves in the lower stratosphere. Part I: Energy density, momentum flux and wave propagation direction

机译:南格鲁吉亚波浪实验(SG-WEX):抗炎性对较低平流层中的重力波观察。第一部分:能量密度,动量通量和波传播方向

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摘要

Gravity waves play a critical role in the transport of energy and momentum throughout the atmosphere. It has been suggested that small mountainous islands located in regions of strong winds may generate significant fluxes of these waves. Such fluxes would be important because these islands are not well resolved in global circulation models. Thus, there is a need to determine the magnitude and variability of gravity wave generated from such islands: South Georgia (54°S, 37°W) has the highest mountains of these islands. Here, we present the first report of gravity waves measured by radiosondes over South Georgia. The measurements were made in two intensive campaigns as part of the South Georgia Wave EXperiment (SG-WEX), a multi-instrument and modelling campaign investigating gravity waves above South Georgia. The two intensive radiosonde campaigns were held in 2015, one in January and one in June/July, totalling 89 successful launches. We use these new observations to determine gravity wave properties in the lower stratosphere. The summer campaign observed an average wave energy density (kinetic+potential+vertical) of 3.6 JKg-1 and an average pseudo-momentum flux of 2.3 mPa . In the winter campaign the values observed were larger; an average wave energy density of 8.4 JKg-1 and an average pseudo-momentum flux of 8.7 mPa . Strikingly, analysis reveals that in winter 66% of waves were propagating downwards, in summer only 8% did so. These results suggest that there may be additional sources of waves in the winter stratosphere. We propose that the differences between wave properties observed during the summer and winter campaigns are due to a complex combination of factors including differences in surface wind conditions (linked to orographic wave generation), frequency of storms and the proximity of the Polar stratospheric jet. These results demonstrate a large increase in gravity wave activity in winter above South Georgia.
机译:重力波在整个大气中的能量和动量运输中发挥着关键作用。已经提出,位于强风区域的小山区岛屿可能会产生显着的这些波的助焊剂。这种助势将是重要的,因为这些岛屿在全球循环模型中并不好。因此,需要确定从这种岛屿产生的重力波的大小和变化:南格鲁州(54°S,37°W)具有这些岛屿的最高山脉。在这里,我们展示了通过南格鲁氏藻覆盖物测量的重力波的第一报告。在两个密集型运动中进行了测量,作为南格鲁奇岛波浪实验(SG-WEX)的一部分,是一种调查南格鲁氏亚洲之上的重力波的多乐器和建模活动。这两个密集的无线电探空渠系列在2015年举行,1月份,一月举行,六月/七月,总计89次成功启动。我们使用这些新观察来确定较低平流层中的重力波属性。夏季活动观察了3.6JKG-1的平均波能密度(动力学+电位+垂直)和2.3MPa的平均伪动量通量。在冬季运动中观察到的值较大;平均波能量密度为8.4 JKG-1和8.7MPa的平均伪动量通量。令人惊讶的是,分析表明,在冬季,66%的波浪向下繁殖,夏天只有8%的人。这些结果表明,在冬季平流层中可能存在额外的波源。我们建议在夏季和冬季运动期间观察到的波形属性之间的差异是由于具有表面风条件(与地形波浪产生的差异),风暴频率和极地平流层射流的差异的复杂组合。这些结果表明,南格鲁氏岛冬季重力波活动大幅增加。

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