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Spatially Complete Global Spectral Surface Albedos: Value-Added Datasets Derived from Terra MODIS Land Products

机译:空间完整的全球光谱表面反照率:来自Terra MODIS土地产品的增值数据集

摘要

Land surface albedo is an important parameter in describing the radiative properties of the earth s surface as it represents the amount of incoming solar radiation that is reflected from the surface. The amount and type of vegetation of the surface dramatically alters the amount of radiation that is reflected; for example, croplands that contain leafy vegetation will reflect radiation very differently than blacktop associated with urban areas. In addition, since vegetation goes through a growth, or phenological, cycle, the amount of radiation that is reflected changes over the course of a year. As a result, albedo is both temporally and spatially dependant upon global location as there is a distribution of vegetated surface types and growing conditions. Land surface albedo is critical for a wide variety of earth system research projects including but not restricted to remote sensing of atmospheric aerosol and cloud properties from space, ground-based analysis of aerosol optical properties from surface-based sun/sky radiometers, biophysically-based land surface modeling of the exchange of energy, water, momentum, and carbon for various land use categories, and surface energy balance studies. These projects require proper representation of the surface albedo s spatial, spectral, and temporal variations, however, these representations are often lacking in datasets prior to the latest generation of land surface albedo products.
机译:陆地表面反照率是描述地球表面辐射特性的重要参数,因为它代表从表面反射的入射太阳辐射量。表面植被的数量和类型极大地改变了被反射的辐射量。例如,包含多叶植被的农田反射的辐射与与城市地区相关的柏油路反射的辐射将有很大不同。此外,由于植被经历了一个生长周期或物候周期,因此反射的辐射量会在一年中发生变化。结果,由于植被表面类型和生长条件的分布,反照率在时间和空间上都依赖于全球位置。地表反照率对于许多地球系统研究项目至关重要,包括但不限于从太空遥感大气气溶胶和云的特性,基于地面的太阳/天空辐射计,基于生物物理的基于地面的气溶胶光学特性分析土地表面建模,用于各种土地利用类别的能量,水,动量和碳的交换,以及地表能量平衡研究。这些项目需要正确表达地表反照率的空间,光谱和时间变化,但是,在最新一代陆面反照率产品之前的数据集中通常缺少这些表示。

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