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Characterization of PBL Height and Structure by Raman Lidar: Selected Case Studies from the Convective and Orographically-induced Precipitation Study

机译:拉曼·丽达的PBL高度和结构的表征:来自对流和脸部诱导的沉淀研究的选择案例研究

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The planetary boundary layer includes the portion of the atmosphere which is directly influenced by the presence of the Earth's surface. Aerosol particles trapped within the PBL can be used as tracers to study boundary-layer vertical structure and time variability. The PBL height and structure can be estimated based on the use of Raman lidar data. A first method is based on the first order derivative of the range-corrected elastic signal (RCS). Estimates of the PBL height and structure obtained from the above mentioned approach are compared with simultaneous estimates obtained from potential temperature profiles determined from the radiosondes launched simultaneously to lidar operation. Additional estimates of the boundary layer height are obtained from rotational Raman lidar signals used for temperature measurements signals, this latter approach being preferable in the decaying phase of the boundary layer, when effectiveness of the approach based on the elastic lidar signals may be altered by the presence of the residual layer. Preliminary results and correlation are illustrated and discussed.
机译:行星边界层包括直接由地球表面的存在的影响的气氛的一部分。截留在PBL中的气溶胶粒子可以用作示踪剂以研究边界层垂直结构和时间的可变性。的PBL高度和结构可根据使用拉曼激光雷达数据的估计。第一种方法是基于范围校正的弹性信号(RCS)的一阶导数。由上述方法所得结果与由潜在的温度分布的同时获得估计从无线电探空仪测定得到的PBL高度和结构的估计同步推出到激光雷达操作。边界层高度的附加的估计是从用于温度测量的信号转动拉曼激光雷达信号获得的,这后一种方法是在边界层的衰减阶段,优选当基于弹性激光雷达的信号的方法的有效性可以通过改变残余层的存在。初步结果和相关性被示出和讨论。

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