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Clear-sky narrowband albedos derived from VIRS and MODIS

机译:清晰的天空窄带玻璃蛋白源自virs和modis

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The Clouds and Earth's Radiant Energy System (CERES) project is using multispectral imagers. the Visible Infrared Scanner (VIRS) on the Tropical Rainfall Measuring Mission (TRMM) satellite and the Moderate Resolution Imaging Spectroradiometer (MODIS) on Terra, operating since spring 2000, and Aqua, operating since summer 2002, to provide cloud and clear-sky properties at various wavelengths. This paper presents the preliminary results of an analysis of the CERES clear-sky reflectances to derive a set top-of-atmosphere clear sky albedo for 0.65, 0.86, 1.6, 2.13μm, for all major surface types using the combined MODIS and VIRS datasets. The variability of snow albedo with surface type is examined using MODIS data. Snow albedo was found to depend on the vertical structure of the vegetation. At visible wavelengths, it is least for forested areas and greatest for smooth desert and tundra surfaces. At 1.6 and 2.1-μm, the snow albedos are relatively insensitive to the underlying surface because snow decreases the reflectance. Additional analyses using all of the MODIS results will provide albedo models that should be valuable for many remote sensing, simulation, and radiation budget studies.
机译:云和地球的辐射能量系统(CERES)项目正在使用多光谱成像仪。可见红外扫描仪(VIRS)在热带降雨中测量任务(TRMM)卫星和地区的中等分辨率成像光谱仪(MODIS),自2000年春季自2000年春季自2002年以来,运营以来,提供云和清晰的天空性质在各种波长。本文介绍了CERES清晰天空反射分析的初步结果,以导出套装全部大气清晰的天空Albedo为0.65,0.86,1.6,2.13μm,适用于所有主要表面类型,使用组合的MODIS和VIT数据集。使用MODIS数据检查具有表面类型的雪剂的可变性。发现雪剂依赖于植被的垂直结构。在可见波长,它最少适用于森林区域和光滑的沙漠和苔原表面最大。在1.6和2.1-μm处,雪玻璃玻璃对底面相对不敏感,因为雪降低了反射率。使用所有MODIS结果的额外分析将提供对许多遥感,模拟和辐射预算研究来说应该有价值的Albedo模型。

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