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Techniques for the retrieval of aerosol properties over land and ocean using multiangle imaging

机译:利用多角度成像技术检索陆地和海洋气溶胶特性的技术

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摘要

Aerosols are believed to play a direct role in the radiation budget of Earth, but their net radiative effect is not well established, particularly on regional scales. Whether aerosols heat or cool a given location depends on their composition and column amount and on the surface albedo, information that is not routinely available, especially over land. Obtaining global information on aerosol and surface radiative characteristics, over both ocean and land, is a task of the Multi-angle Imaging SpectroRadiometer (MISR), an instrument to be launched in 1998 on the Earth Observing System EOS-AM1 platform. Three algorithms are described that will be implemented to retrieve aerosol properties globally using MISR data. Because of the large volume of data to be processed on a daily basis, these algorithms rely on lookup tables of atmospheric radiative parameters and predetermined aerosol mixture models to expedite the radiative transfer (RT) calculations. Over oceans, the "dark water" algorithm is used, taking full advantage of the nature of the MISR data. Over land, a choice of algorithms is made, depending on the surface types within a scene-dark water bodies, heavily vegetated areas, or high-contrast terrain. The retrieval algorithms are tested on simulated MISR data, computed using realistic aerosol and surface reflectance models. The results indicate that aerosol optical depth can be retrieved with an accuracy of 0.05 or 10%, whichever is greater, and some information can be obtained about the aerosol chemical and physical properties.
机译:人们相信气溶胶在地球的辐射预算中起着直接作用,但其净辐射效果尚不明确,特别是在区域范围内。气雾剂加热还是冷却给定位置取决于其成分和气柱数量以及地表反照率,这是常规上无法获得的信息,尤其是在陆地上。多角度成像光谱辐射仪(MISR)的任务是获得有关海洋和陆地上的气溶胶和表面辐射特性的全球信息,该仪器将于1998年在地球观测系统EOS-AM1平台上启动。描述了三种算法,这些算法将实现以使用MISR数据全局检索气溶胶特性。由于每天需要处理大量数据,因此这些算法依赖于大气辐射参数的查找表和预定的气溶胶混合物模型来加快辐射传递(RT)的计算。在海洋上,充分利用了MISR数据的性质,使用了“暗水”算法。在陆地上,根据场景中黑暗的水体,茂密的植被区域或高对比度地形中的表面类型,可以选择算法。检索算法在模拟MISR数据上进行了测试,并使用实际的气溶胶和表面反射率模型计算得出。结果表明,可以以0.05或10%(以较大者为准)的精度检索气溶胶光学深度,并且可以获得有关气溶胶化学和物理特性的一些信息。

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