基于机载高光谱分辨率激光雷达数据的双波长气溶胶反演模式验证研究进展

C. McPherson, J. Reagan, C. Hostetler, J. Hair, R. Ferrare
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引用次数: 3

摘要

约束比气溶胶模式拟合(CRAM)技术是一种从双波长弹性散射激光雷达中进行气溶胶反演的方法,它试图约束反演,以便与一些被认为表征世界各地观测到的各种气溶胶类型的气溶胶模型相一致。美国宇航局兰利研究中心机载HSRL是一种机载高光谱分辨率激光雷达,能够直接测量532纳米的气溶胶消光和后向散射,并具有1064纳米的弹性后向散射测量能力。在德克萨斯州空气质量调查/墨西哥湾大气成分和气候研究(TEXAQS/GoMACCS)活动期间,HSRL进行的气溶胶测量用于验证对CRAM应用至关重要的现有气溶胶模型,特别是来自云-气溶胶激光雷达和红外探路者卫星观测(CALIPSO)卫星上搭载的正交偏振(CALIOP)激光雷达的数据。
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Progress in the validation of dual-wavelength aerosol retrieval models via airborne high spectral resolution lidar data
The Constrained Ratio Aerosol Model-fit (CRAM) technique is a method for making aerosol retrievals from dual-wavelength elastic scatter lidars which attempts to constrain the retrievals so as to be consistent with a number of aerosol models thought to characterize a variety of aerosol types observed around the world. The NASA Langley Research Center Airborne HSRL is an airborne high spectral resolution lidar capable of direct measurements of aerosol extinction and backscatter at 532 nm and having the capability for elastic backscatter measurements at 1064 nm. Aerosol measurements by HSRL during the TEXas Air Quality Survey/ Gulf of Mexico Atmospheric Composition and Climate Study (TEXAQS/GoMACCS) campaign are used to validate existing aerosol models critical to the application of CRAM, in particular to data from the Cloud-Aerosol LIdar with Orthogonal Polarization (CALIOP) lidar instrument on board the Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations (CALIPSO) satellite.
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