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首页> 外文期刊>Journal of atmospheric and oceanic technology >Finding Boundary Layer Top: Application of a Wavelet Covariance Transform to Lidar Backscatter Profiles
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Finding Boundary Layer Top: Application of a Wavelet Covariance Transform to Lidar Backscatter Profiles

机译:查找边界层顶部:小波协方差变换在激光雷达后向散射剖面中的应用

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Several recent studies have utilized a Haar wavelet covariance transform to provide automated detection of the boundary layer top from lidar backscatter profiles by locating the maximum in the covariance profiles. This approach is effective where the vertical gradient in the backscatter is small within and above the boundary layer, and where the inversion is sharp and well defined. These near-ideal conditions are often not met, particularly under stable stratification where the inversion may be deep and is sometimes ill defined, and vertical gradients are common. Here the effects of vertical gradients and inversion depth on the covariance transform are examined. It is found that a significant dilation-dependent bias in the determination of the boundary layer top may result when using the published method. An alternative approach is developed utilizing multiple wavelet dilations, and is capable of identifying both the upper and lower limits of the backscatter transition zone associated with the inversion while remaining insensitive to mean vertical gradients in the background signal. This approach enables more detailed information on the small-scale structure of the inversion and entrainment zone to be retrieved than is possible using existing techniques.
机译:最近的一些研究已经利用Haar小波协方差变换通过在协方差剖面中定位最大值,从而从激光雷达后向散射剖面自动检测边界层顶部。这种方法在边界层内和边界层上反向散射的垂直梯度较小且反演清晰且定义明确的情况下有效。这些近乎理想的条件通常无法满足,尤其是在稳定分层中,在该分层中反演可能很深,有时定义不清,并且垂直梯度很常见。在这里检查垂直梯度和反演深度对协方差变换的影响。已经发现,当使用公开的方法时,在边界层顶部的确定中可能导致明显的依赖于膨胀的偏差。开发了一种利用多个小波扩张的替代方法,该方法能够识别与反演相关的反向散射过渡带的上限和下限,同时对背景信号中的平均垂直梯度保持不敏感。与使用现有技术相比,该方法可以检索到有关反转和夹带区域小规模结构的更多详细信息。

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