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Simultaneous retrieval of aerosol and surface optical properties from combined airborne- and ground-based direct and diffuse radiometric measurements

机译:从组合的空气和地面直接和漫射辐射测量的同时检索气溶胶和表面光学性质

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This paper presents a new method for simultaneously retrieving aerosol and surface reflectance properties from combined airborne and ground-based direct and diffuse radiometric measurements. The method is based on the standard Aerosol Robotic Network (AERONET) method for retrieving aerosol size distribution, complex index of refraction, and single scattering albedo, but modified to retrieve aerosol properties in two layers, below and above the aircraft, and parameters on surface optical properties from combined datasets (Cloud Absorption Radiometer (CAR) and AERONET data). A key advantage of this method is the inversion of all available spectral and angular data at the same time, while accounting for the influence of noise in the inversion procedure using statistical optimization. The wide spectral (0.34–2.30 m) and angular range (180) of the CAR instrument, combined with observations from an AERONET sunphotometer, provide sufficient measurement constraints for characterizing aerosol and surface properties with minimal assumptions. The robustness of the method was tested on observations made during four different field campaigns: (a) the Southern African Regional Science Initiative 2000 over Mongu, Zambia, (b) the Intercontinental Transport Experiment-Phase B over Mexico City, Mexico (c) Cloud and Land Surface Interaction Campaign over the Atmospheric Radiation Measurement (ARM) Central Facility, Oklahoma, USA, and (d) the Arctic Research of the Composition of the Troposphere from Aircraft and Satellites (ARCTAS) over Elson Lagoon in Barrow, Alaska, USA. The four areas are dominated by different surface characteristics and aerosol types, and therefore provide good test cases for the new inversion method.
机译:本文介绍了一种新的方法,用于同时从组合的空气传播和基于地基直接和漫射辐射测量中检索气溶胶和表面反射性能。该方法基于标准的气溶胶机器人网络(AERONET)方法,用于检索气溶胶尺寸分布,复杂的折射率和单散射反照型,但是修饰以在飞机下方和上方的两层中检索气溶胶性质,以及表面上的参数来自组合数据集的光学性质(云吸收辐射计(汽车)和AeroNet数据)。该方法的一个关键优点是同时对所有可用光谱和角度数据的反转,同时使用统计优化的反转过程中噪声的影响。汽车仪器的宽光谱(0.34-2.30米)和角度范围(180),与AeroNet阳光计的观察结合,提供足够的测量约束,用于表征气溶胶和表面性能,具有最小的假设。在四种不同场运动期间制作的观察中测试了该方法的稳健性:(a)2000年南非区域科学倡议2000年在蒙古,赞比亚,(b)墨西哥城墨西哥城的洲际运输实验阶段B(C)云和陆地表面互动在大气辐射测量(ARM)中央设施(ARM)中央设施,俄克拉荷马州,美国和(d)对飞机和卫星(ARCTAS)在美国阿拉斯加,阿拉斯加,美国的飞机和卫星(ARCTAS)的北极研究。这四个区域主要由不同的表面特性和气溶胶类型为主,因此为新的反演方法提供良好的测试用例。

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