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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Retrievals of aerosol single scattering albedo by multiwavelength lidar measurements: Evaluations with NASA Langley HSRL-2 during discover-AQ field campaigns
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Retrievals of aerosol single scattering albedo by multiwavelength lidar measurements: Evaluations with NASA Langley HSRL-2 during discover-AQ field campaigns

机译:通过多波长激光雷达测量检索气溶胶单散射反玻璃:Nasa Langley HSRL-2在发现AQ现场活动期间的评价

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摘要

This work focuses on the study and evaluation of the retrievals of aerosol complex refractive index (m = m(r) + im(i)) and single scattering albedo (SSA) from the inversion of multi-wavelength lidar measurements, particularly of three backscattering coefficients (beta) at 355,532 and 1064 nm and two extinction coefficients (alpha) at 355 and 532 nm, typically known as the stand-alone 3 beta + 2 alpha lidar inversion. The focus is on the well-known regularization technique for spherical particles. It is well known that constraints in the range of refractive indices allowed in the inversion are essential, both for the real (m(r)) and imaginary (m(i)) parts, due to the under-determined nature of the problem. Usually these constraints are fixed for a given set of inversions. Using a large database of AERONET retrievals, correlations between retrieved m(r) and m(i) are observed and those correlations together with results from the GOCART model are used to define optimized, case-dependent, constraints in the stand-alone 3 beta + 2 alpha lidar inversion. For each inversion performed, the optimized constraints are computed from the 3 beta + 2 alpha data using a-priori information of extinction-to-backscattered ratio (LA) and the Angstrom exponent computed with a at 355 and 532 nm. The stand-alone 3 beta + 2 alpha lidar inversion with optimized, case-dependent, constraints is applied to airborne NASA LaRC HSRL-2 experimental measurements during DISCOVER-AQ. The optimized constraints selected from the measured 3 beta + 2 alpha are compared with the typing classification based on additional multiwavelength depolarization measurements, showing consistency between aerosol size and absorption range and aerosol typing. Evaluations of the SSA retrieved by the stand-alone 3 beta + 2 alpha lidar inversion with optimized constraints are done by comparisons with correlative airborne in-situ measured SSA. The agreement between both methodologies is satisfactory for most aerosol types as
机译:这项工作侧重于研究和评估气溶胶复合折射率的检索(M = M(R)+ IM(I))和单散射Albedo(SSA),从多波长LIDAR测量的反转,特别是三个反向散射在355,532和1064nm处的系数(β)和355和532nm的两个消光系数(α),通常称为单独的3β+ 2α激光率反转。重点是用于球形颗粒的众所周知的正则化技术。众所周知,由于问题的不确定性质,反转中允许的折射率范围内允许的折射率范围是必不可少的。通常,这些约束是针对给定的一组反转来固定的。使用大量的AeroNet检索数据库,观察到的M(R)和M(I)之间的相关性,并且这些相关性与来自Gocart模型的结果一起用于定义独立的3 beta中的优化的,依赖于依赖的约束+ 2个alpha激光雷达反演。对于执行的每次反演,使用灭绝 - 反向散射比(LA)的先验信息和用AT 355和532nm计算的抗埃指数计算优化的约束。独立的3β+ 2α激光雷达逆变,依赖于优化,差异,约束,在发现-AQ期间应用于空气传播的NASA Larc HSRL-2实验测量。将从测量的3β+ 2α选择的优化约束与基于额外的多波长去极化测量进行比较,显示出气溶胶尺寸和吸收范围和气溶胶打字之间的一致性。通过具有优化约束的独立3β+ 2α激光雷达逆变的SSA的评估通过与原位的相关空气出原位测量的SSA进行了比较来完成。两种方法之间的协议对于大多数气溶胶类型令人满意

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