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首页> 外文期刊>Applied optics >MULTIPLY SCATTERED AEROSOL LIDAR RETURNS - INVERSION METHOD AND COMPARISON WITH IN SITU MEASUREMENTS
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MULTIPLY SCATTERED AEROSOL LIDAR RETURNS - INVERSION METHOD AND COMPARISON WITH IN SITU MEASUREMENTS

机译:多次散射气溶胶激光雷达回波-反演方法与原位测量的比较

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摘要

A novel aerosol lidar inversion method based on the use of multiple-scattering contributions measured by a multiple-field-of-view receiver is proposed. The method requires assumptions that restrict applications to aerosol particles large enough to give rise to measurable multiple scattering and depends on parameters that must be specified empirically but that have an uncertainty range of much less than the boundary value and the backscatter-to-extinction ratio of the conventional single-scattering inversion methods. The proposed method is applied to cloud measurements. The solutions obtained are the profiles of the scattering coefficient and the effective diameter of the cloud droplets. With mild assumptions on the form of the function, the full-size distribution is estimated at each range position from which the extinction coefficient at any visible and infrared wavelength and the liquid water content can be determined. Typical results on slant-path-integrated optical depth, vertical extinction profiles, and fluctuation statistics are compared with in situ data obtained in two field experiments. The inversion works well in all cases reported here, i.e., for water clouds at optical depths between similar to 0.1 and similar to 4. [References: 21]
机译:提出了一种基于多视场接收机测量的多散射贡献的气溶胶激光雷达反演方法。该方法需要以下假设:将应用限制在足够大以引起可测量的多次散射的气溶胶颗粒上,并且取决于必须凭经验指定的参数,但其不确定性范围远小于边界值和背向散射消光比。常规的单散射反演方法。该方法适用于云测量。获得的解决方案是散射系数和云滴有效直径的分布。通过对函数形式的适当假设,可以估计每个范围位置的全尺寸分布,从中可以确定任何可见光和红外波长的消光系数以及液态水含量。将与倾斜路径整合的光学深度,垂直消光剖面和波动统计的典型结果与在两次野外实验中获得的原位数据进行了比较。在此处报告的所有情况下,即在光学深度介于0.1到4之间的水云时,该反演效果都很好。[参考文献:21]

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