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Climatology of the aerosol optical depth by components from the Multi-angle Imaging SpectroRadiometer (MISR) and chemistry transport models

机译:来自多角度成像光谱仪(MISR)和化学输送模型的组件的气雾光学深度的气候学

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The Multi-angle Imaging SpectroRadiometer (MISR) Joint Aerosol (JOINT_AS) Level 3 product has provided a global, descriptive summary of MISR Level?2 aerosol optical depth (AOD) and aerosol type information for each month over 16+?years since March?2000. Using Version?1 of JOINT_AS, which is based on the operational (Version?22) MISR Level?2 aerosol product, this study analyzes, for the first time, characteristics of observed and simulated distributions of AOD for three broad classes of aerosols: spherical nonabsorbing, spherical absorbing, and nonspherical – near or downwind of their major source regions. The statistical moments (means, standard deviations, and skewnesses) and distributions of AOD by components derived from the JOINT_AS are compared with results from two chemistry transport models (CTMs), the Goddard Chemistry Aerosol Radiation and Transport (GOCART) and SPectral RadIatioN-TrAnSport (SPRINTARS). Overall, the AOD distributions retrieved from MISR and modeled by GOCART and SPRINTARS agree with each other in a qualitative sense. Marginal distributions of AOD for each aerosol type in both MISR and models show considerable high positive skewness, which indicates the importance of including extreme AOD events when comparing satellite retrievals with models. The MISR JOINT_AS product will greatly facilitate comparisons between satellite observations and model simulations of aerosols by type.
机译:三月以来多角度成像光谱仪(MISR)联合气溶胶(JOINT_AS)第3级的产品提供了MISR级别?2气溶胶光学厚度(AOD)和过16+每个月气溶胶型信息?年的全球性的,描述性概述? 2000年。使用版本JOINT_AS 1,其基于所述操作(版本22?)MISR 2级气溶胶产品,本研究的分析,对于第一次,为三大类气雾剂的AOD的观察和模拟分布的特征:?球形非混合,球形吸收和非球形 - 近或沿着其主要源区的下顺风。统计矩(均值,标准差,和skewnesses)和AOD的分布通过从JOINT_AS来源的成分与从两个化学交通模型(的CTM)的结果,戈达德化学气溶胶辐射和运输(GOCART)和光谱辐射传输相比(Sprintars)。总的来说,从MISR检索和由Gocart和Sprintars建模的AOD分布在定性意义上彼此同意。 MISR和模型中每种气溶胶类型的AOD边缘分布表明,在将卫星检索与模型进行比较时,表明包括Extreme Aod事件的重要性。 MISR联合产品将极大地促进卫星观测和型气溶胶模型模拟的比较。

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