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Effect of small-scale snow surface roughness on snow albedo and reflectance

机译:小规模雪面粗糙度对雪剂和反射的影响

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The primary goal of this paper is to present a model of snow surface albedo accounting for small-scale surface roughness effects. The model is based on photon recollision probability, and it can be combined with existing bulk volume albedo models, such as Two-streAm Radiative TransfEr in Snow (TARTES). The model is fed with in situ measurements of surface roughness from plate profile and laser scanner data, and it is evaluated by comparing the computed albedos with observations. It provides closer results to empirical values than volume-scattering-based albedo simulations alone. The impact of surface roughness on albedo increases with the progress of the melting season and is larger for larger solar zenith angles. In absolute terms, small-scale surface roughness can decrease the total albedo by up to about 0.1. As regards the bidirectional reflectance factor (BRF), it is found that surface roughness increases backward scattering especially for large solar zenith angle values.
机译:本文的主要目标是展示雪表面Albedo占小规模粗糙度效应的模型。 该模型基于光子回收概率,它可以与现有的批量卷二手模型组合,例如雪(馅饼)中的两流辐射转移。 该模型以平板轮廓和激光扫描仪数据为原位测量表面粗糙度,并且通过将计算的Albedos与观察结果进行比较来评估。 它提供了比仅基于体积散射的Albedo模拟的经验值更接近的结果。 随着熔化季节的进展,表面粗糙度对反照的影响随着较大的太阳能天性角度而越大。 在绝对术语中,小规模的表面粗糙度可以将总Albedo降低至约0.1。 关于双向反射率因子(BRF),发现表面粗糙度显着增加向后散射,特别是对于大型太阳能天顶角值。

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