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Topographic effects on bidirectional and hemispherical reflectances calculated with a geometric-optical canopy model

机译:用几何光学机盖模型计算的地形对双向和半球形反射率的影响

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The effects of topography on both the bidirectional reflectance distribution function (BRDF) and the hemispherical reflectance (surface albedo) of a forested scene are investigated with the Li-Strahler geometric-optical model. The Li-Strahler geometric-optical model treats a vegetation canopy as an assemblage of partially illuminated tree crowns of spheroidal shape, and through geometric optics and Boolean set theory, models the proportion of sunlit or shadowed canopy and background as functions of view angle, illumination angle, and crown geometry. The model has been modified to accommodate a sloping surface in its computation of bidirectional and hemispherical reflectance. When the BRDF of a flat vegetated surface is compared to the BRDF of a sloping surface that is similarly vegetated, the interaction of the illumination angle and the slope distort the shape of the BRDF. A hemispherical integration of this distorted BRDF provides an albedo for the sloping surface.
机译:利用Li-Strahler几何光学模型研究了地形对森林场景的双向反射率分布函数(BRDF)和半球反射率(表面反照率)的影响。 Li-Strahler几何光学模型将植被冠层视作球体形状的部分照亮的树冠的集合,并通过几何光学和布尔集理论,将阳光或阴影冠层和背景的比例作为视角,照度的函数进行建模角和冠的几何形状。对该模型进行了修改,以适应其双向和半球形反射率的计算中的倾斜表面。当将平坦的植被表面的BRDF与类似植被的倾斜表面的BRDF进行比较时,照明角度和坡度的相互作用会使BRDF的形状变形。这种变形的BRDF的半球形积分为倾斜的表面提供了反照率。

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