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Seasonal Variations of the Gravity Wave Momentum Flux in the Antarctic Mesosphere and Lower Thermosphere

机译:南极中层和下热圈重力波动量通量的季节变化

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摘要

Airglow imager and dynasonde/imaging Doppler interferometer (IDI) radar wind measurements at Halley Station, Antarctica (75.6S, 26.6W) have been used to estimate the seasonal variation of the vertical fluxes of horizontal momentum carried by highfrequency atmospheric gravity waves. The cross-correlation coefficients between the vertical and horizontal wind perturbations were calculated from sodium (Na) airglow imager data collected during the austral winter seasons of 2000 and 2001. These were combined with wind velocity variances from coincident radar measurements to estimate the daily averaged upper limit of the vertical flux of horizontal momentum due to gravity waves. The resulting momentum flux at the Na airglow altitudes, while displaying a large day-to-day variability, showed a marked rotation from the northwest to the southeast throughout the winter season. Calculations show that this rotation is consistent with seasonal changes in the wind field filtering of gravity waves below the Na airglow region. The calculations also indicate that while the magnitude of the meridional wind is small, this filtering leads to the observed seasonal changes in the meridional momentum flux.
机译:南极州哈雷站的气辉成像仪和测功/成像多普勒干涉仪(IDI)雷达风测量(75.6S,26.6W)已用于估算高频大气重力波携带的水平动量垂直通量的季节性变化。垂直和水平风扰动之间的互相关系数是根据2000和2001冬季南方的钠(Na)气辉光成像仪数据计算得出的。这些系数与来自同步雷达测量的风速方差相结合,以估计每日平均上风重力波引起的水平动量垂直通量的极限。在Na气辉高度处产生的动量通量,尽管表现出很大的日常变化性,但在整个冬季从西北向东南都有明显的旋转。计算表明,这种旋转与Na气辉区域以下重力波的风场滤波的季节变化一致。这些计算还表明,尽管子午风的大小很小,但这种滤波导致观察到的子午动量通量的季节性变化。

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