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A hybrid geometric optical-radiative transfer approach for modeling albedo and directional reflectance of discontinuous canopies

机译:混合几何光学辐射传输方法模拟不连续冠层的反照率和方向反射率

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A new model for the bidirectional reflectance of a vegetation cover combines principles of geometric optics and radiative transfer. It relies on gap probabilities and path length distributions to model the penetration of irradiance from a parallel source and the single and multiple scattering of that irradiance in the direction of an observer. The model applies to vegetation covers of discrete plant crowns that are randomly centered both on the plane and within a layer of variable thickness above it. Crowns assume a spheroidal shape with arbitrary height to width ratio. Geometric optics easily models the irradiance that penetrates the vegetation cover directly, is scattered by the soil, and exits without further scattering by the vegetation. Within a plant crown, the probability of scattering is a negative exponential function of path length. Within-crown scattering provides the source for singly-scattered radiation, which exits with probabilities proportional to further path-length distributions in the direction of exitance (including the hotspot effect). Single scattering provides the source for double scattering, and then higher order pairs of scattering are solved successively by a convolution function. Early validations using data from a conifer stand near Howland, Maine, show reasonable agreement between modeled and observed reflectance.
机译:植被覆盖物双向反射的新模型结合了几何光学原理和辐射传递原理。它依靠间隙概率和路径长度分布来模拟来自平行源的辐照度的穿透以及该辐照度在观察者方向上的单次和多次散射。该模型适用于离散植物冠的植被覆盖物,这些植物覆盖物在平面上以及在其上方的可变厚度层内随机居中。冠呈球形,具有任意的高宽比。几何光学可以轻松地模拟直接穿透植被覆盖,被土壤散射并离开植被而不会进一步散射的辐照度。在植物冠内,散射的概率是路径长度的负指数函数。冠内散射为单散射辐射提供了源,单辐射的出射概率与出射方向上的进一步光程分布成正比(包括热点效应)。单散射为双散射提供了源,然后通过卷积函数连续求解高阶散射对。早期使用缅因州霍兰德附近的针叶树立场的数据进行的验证表明,模拟反射率和观测反射率之间存在合理的一致性。

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