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Synergetic technique combining elastic backscatter lidar data and sunphotometer AERONET inversion for retrieval by layer of aerosol optical and microphysical properties

机译:协同技术结合了弹性反向散射激光雷达数据和日光光度计AERONET反演,可按层获取气溶胶的光学和微物理特性

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摘要

We present a so-called lidar and almucantar (LidAlm) algorithm that combines information provided by standard elastic backscatter lidar (i.e., calibrated attenuated backscatter coefficient profile at one or two wavelengths) and sunphotometer AERONET inversion of almucantar like measurements (i.e., columnintegrated aerosol size distribution and refractive index). The purpose of the LidAlm technique is to characterize the atmospheric column by its different aerosol layers. These layers may be distinct or partially mixed, and they may contain different aerosol species (e.g., urban, desert, or biomass burning aerosols). The LidAlm synergetic technique provides the extinction and backscatter coefficient profiles, particle size distributions, and backscatter-to-extinction ratios for each aerosol layer. We present the LidAlm procedure and sensitivity studies. The applications are illustrated with examples of actual atmospheric conditions encountered in the Paris area.
机译:我们提出了一种所谓的激光雷达和Alcancantar(LidAlm)算法,该算法结合了标准弹性反向散射激光雷达(即,在一个或两个波长处的校准衰减后向散射系数分布)和阳光照度仪对Alcancantar的AERONET反演(例如,列积分气溶胶尺寸)分布和折射率)。 LidAlm技术的目的是通过其不同的气溶胶层来表征大气柱。这些层可以是不同的或部分混合的,并且它们可以包含不同的气溶胶种类(例如,城市,沙漠或燃烧生物质的气溶胶)。 LidAlm协同技术提供了每个气溶胶层的消光和反向散射系数分布,粒径分布以及反向散射与消光比。我们介绍LidAlm程序和敏感性研究。以巴黎地区遇到的实际大气状况为例说明了这些应用。

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