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Frequency of Boundary-Layer-Top Fluctuations in Convective and Stable Conditions Using Laser Remote Sensing

机译:对流和稳定条件下边界层顶波动的频率使用激光遥感

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摘要

The planetary boundary-layer (PBL) height is determined with high temporal and altitude resolution from lidar backscatter profiles. Then, the frequencies of daytime thermal updrafts and downdrafts and of nighttime gravity waves are obtained applying a fast Fourier transform on the temporal fluctuation of the PBL height. The principal frequency components of each spectrum are related to the dominant processes occurring at the daytime and nighttime PBL top. Two groups of cases are selected for the study: one group combines daytime cases, measured in weak horizontal wind conditions and dominated by convection. The cases show higher updraft and downdraft frequencies for the shallow, convective boundary layer and lower frequencies for a deep PBL. For cases characterized by strong horizontal winds, the frequencies directly depend on the wind speed. The temporal variation of the PBL height is determined also in the likely presence of lee waves. For nighttime cases, the main frequency components in the spectra do not show a real correlation with the nocturnal PBL height. Altitude fluctuations of the top of the nocturnal boundary layer are observed even though the boundary layer is statically stable. These oscillations are associated with the wind shear effect and with buoyancy waves at the PBL top.
机译:行星边界层(PBL)高度是根据激光雷达的后向散射剖面以高的时间和高度分辨率确定的。然后,通过对PBL高度的时间波动进行快速傅里叶变换,获得白天热上升和下降的频率以及夜间重力波的频率。每个频谱的主要频率分量与白天和夜间PBL顶部发生的主导过程有关。本研究选择了两组案例:一组结合了白天案例,这些案例是在弱水平风条件下进行测量并以对流为主的。对于较浅的对流边界层,情况显示较高的上升和下降频率,而对于深层的PBL,则显示较低的频率。对于水平风较强的情况,频率直接取决于风速。 PBL高度的时间变化也可以在可能存在风的情况下确定。对于夜间情况,频谱中的主要频率分量与夜间PBL高度没有真正的相关性。即使边界层是静态稳定的,也可以观察到夜间边界层顶部的高度波动。这些振荡与风切变效应和PBL顶部的浮力波有关。

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