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Lidar detection of small aerosol size distribution

机译:激光雷达检测小粒径分布

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The major unknown in the global climate radiation balance calculations is the effect of aerosols. The extinction of aerosols depends upon the wavelength, size, concentration, composition, and to a lesser extent, shape of the aerosols. Thus, methods are needed to determine and model these quantities. The size distribution of larger aerosols can be monitored with multistatic lidar, at least in the spherical approximation. We can use this approximation in humid environments, and for old desert dusts in which the aspect ratio is typically below two. Aerosols that are small compared to the incident wavelength present a Rayleigh-like scattering dependence, and the size cannot be determined using multistatic lidar techniques. We discuss the analysis of true extinction from Raman lidar measurements at several wavelengths for determining the size distribution of aerosols. The Angstrom ratio, which is the natural log of the extinction ratio divided by the natural log of the wavelength ratio, has been used in column-integrated measurements to classify aerosols. Lidar backscatter Angstrom ratio measurements have also been used to classify aerosols as a function of range. However, the use for aerosol size distribution has not been investigated in detail before this work. We find, from Raman lidar measurements, Mie models of extinction and backscatter Angstrom ratios, that small aerosols make a significant contribution to optical scattering, and find that size information can be extracted from the lidar data.
机译:全球气候辐射平衡计算中的主要未知数是气溶胶的影响。气溶胶的消失取决于气溶胶的波长,大小,浓度,组成,并在较小程度上取决于气溶胶的形状。因此,需要确定和建模这些数量的方法。至少在球形近似中,可以使用多静态激光雷达监测较大的气溶胶的尺寸分布。我们可以在潮湿的环境中以及长宽比通常低于2的旧沙漠尘埃中使用这种近似值。与入射波长相比较小的气溶胶具有类似于瑞利散射的依赖性,并且其大小无法使用多基地激光雷达技术确定。我们讨论了在几种波长下确定拉曼激光雷达测量结果的真实消光分析,以确定气溶胶的大小分布。埃比,即消光比的自然对数除以波长比的自然对数,已用于色谱柱积分测量中,对气溶胶进行分类。激光雷达后向散射埃比测量也已用于根据范围对气溶胶进行分类。但是,在进行这项工作之前,尚未对用于气溶胶粒度分布的用途进行详细研究。通过拉曼激光雷达的测量,我们发现了消光和后向散射埃比的Mie模型,发现小的气溶胶对光学散射有重要贡献,并且发现可以从激光雷达数据中提取尺寸信息。

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