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Solar zenith angle effects on forest canopy hemispherical reflectances calculated with a geometric-optical bidirectional reflectance model

机译:利用几何光学双向反射模型计算的太阳天顶角对林冠半球反射率的影响

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The bidirectional reflectance distribution function (BRDF) provided by the Li-Strahler geometric-optical forest canopy model has been integrated to provide spectral instantaneous hemispherical reflectances of sparsely vegetated surfaces. Further integration over the Sun's zenith angles can yield daily or longer interval hemispherical reflectances as well. A variety of simulated canopies were modeled with varying solar angles. In all cases, as the geometric-optical model introduced increased shadowing of the surface with increased solar zenith angle, the direct-beam hemispherical surface reflectance gradually decreased. The hemispherical reflectance values are direct beam calculations and do not directly include canopy multiple scattering and leaf specularity or consider the impact of diffuse irradiance. These limitations are acceptable for sparse canopies, in which 3D shadowing effects are large. However, radiative transfer calculations have shown that these phenomena must be incorporated before truly realistic modeling of hemispherical surface reflectances can be achieved for dense canopies.
机译:Li-Strahler几何光学林冠模型提供的双向反射率分布函数(BRDF)已被集成,以提供稀疏植被表面的光谱瞬时半球反射率。在太阳的天顶角上进一步积分也可以产生每日或更长时间的半球反射率。各种模拟的顶篷都以不同的太阳角建模。在所有情况下,随着引入的几何光学模型随着太阳天顶角的增加而增加了表面的阴影,直接光束半球表面的反射率逐渐降低。半球反射率值是直接光束计算,不直接包括冠层多次散射和叶片镜面反射率,也没有考虑漫射辐射的影响。这些限制对于3D阴影效果较大的稀疏顶篷是可以接受的。但是,辐射传输计算表明,对于浓密的树冠,要实现对半球表面反射率的真实逼真的建模,必须先结合这些现象。

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