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首页> 外文期刊>Optics Letters >Toward a new radiative-transfer-based model for remote sensing of terrestrial surface albedo
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Toward a new radiative-transfer-based model for remote sensing of terrestrial surface albedo

机译:建立一种新的基于辐射传递的遥感地面反照率模型

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This Letter formulates a simple yet accurate radiative-transfer-based theoretical model to characterize the fraction of radiation reflected by terrestrial surfaces. Emphasis is placed on the concept of inhomogeneous distribution of the diffuse sky radiation function (DSRF) and multiple interaction effects (MIE). Neglecting DSRF and MIE produces a -1.55% mean relative bias in albedo estimates. The presented model can elucidate the impact of DSRF on the surface volume scattering and geometry-optical scattering components, respectively, especially for slant illuminations with solar zenith angles (SZA) larger than 50 degrees. Particularly striking in the comparisons between our model and ground- based observations is the achievement of the agreement level, indicating that our model can effectively resolve the longstanding issue in accurately estimating albedo at extremely large SZAs and is promising for land-atmosphere interactions studies. (C) 2015 Optical Society of America
机译:这封信建立了一个简单而准确的基于辐射转移的理论模型,以表征地面反射的辐射份额。重点放在漫射天空辐射函数(DSRF)和多重相互作用效应(MIE)的不均匀分布的概念上。忽略DSRF和MIE会在反照率估计中产生-1.55%的平均相对偏差。提出的模型可以分别阐明DSRF对表面体积散射和几何光学散射分量的影响,特别是对于太阳天顶角(SZA)大于50度的倾斜照明。在我们的模型与地面观测的比较中,特别令人惊讶的是协议水平的实现,这表明我们的模型可以有效地解决长期存在的问题,从而可以准确地估计超大型SZA的反照率,并且有望用于陆-气相互作用研究。 (C)2015年美国眼镜学会

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