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Distortion of gravity wave spectra of horizontal winds measured in atmospheric radar experiments

机译:大气雷达实验中测得的水平风重力波谱的失真

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摘要

Large disparities in upper mesospheric winds measured with different radar techniques have been attributed earlier to the possibility that MF radars are sensitive to the phase speed of waves, rather than to true winds. An alternative explanation attributes these disparities to biases due to horizontal gradients in the wind field. These biases are common to the Doppler beam swinging (DBS), spaced antenna (SA), and imaging Doppler interferometry (IDI) methods and arise because of spatial filtering of the wind field by the beam configuration. We develop a theoretical model for intrinsic frequency and vertical wave number spectra of DBS wind component estimates that includes the effect of spatial filtering on an ensemble of gravity waves. The model shows a strong enhancement of frequency components above a knee, at ∼1 hour intrinsic period. A similar model for the SA experiment is inherently intractable. We suggest, instead, that the DBS model should also hold for the spectra of SA wind component estimates. The knee is clearly evident in recently observed SA wind component spectra, but is less pronounced and occurs at a frequency lower than the DBS model predicts. Better agreement is expected with a model refined to include the effect of Doppler shifts due to background winds. Occurrence of the knee in observed SA wind spectra implies that MF radars are sensitive to winds rather than to phase speed of atmospheric waves.
机译:早期,用不同的雷达技术测得的高层中层风的差异很大,原因是中频雷达对波的相速度而不是对真实的风敏感。另一种解释是将这些差异归因于风场中水平梯度引起的偏差。这些偏见对于多普勒波束摆动(DBS),间隔天线(SA)和成像多普勒干涉测量(IDI)方法是常见的,并且是由于波束配置对风场进行空间滤波而产生的。我们为DBS风分量估计的固有频率和垂直波数谱开发了一个理论模型,其中包括空间滤波对重力波集合的影响。该模型显示,在大约1小时的固有周期内,膝盖上方的频率分量有很大的增强。 SA实验的类似模型本质上是难以解决的。相反,我们建议DBS模型也应适用于SA风分量估计的频谱。在最近观察到的SA风分量谱中,膝盖很明显,但是膝盖不那么明显,并且出现的频率低于DBS模型预测的频率。改进后的模型将包含背景风引起的多普勒频移的影响,有望获得更好的一致性。在观测到的SA风谱中出现膝盖表明MF雷达对风敏感,而不是大气波的相位速度。

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