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Bidirectional Reflectance of Flat, Optically Thick Particulate Layers: An Efficient Radiative Transfer Solution and Applications to Snow and Soil Surfaces

机译:平坦,光学厚的颗粒层的双向反射:一种有效的辐射传输解决方案及其在雪和土壤表面的应用

摘要

We describe a simple and highly efficient and accurate radiative transfer technique for computing bidirectional reflectance of a macroscopically flat scattering layer composed of nonabsorbing or weakly absorbing, arbitrarily shaped, randomly oriented and randomly distributed particles. The layer is assumed to be homogeneous and optically semi-infinite, and the bidirectional reflection function (BRF) is found by a simple iterative solution of the Ambartsumian's nonlinear integral equation. As an exact Solution of the radiative transfer equation, the reflection function thus obtained fully obeys the fundamental physical laws of energy conservation and reciprocity. Since this technique bypasses the computation of the internal radiation field, it is by far the fastest numerical approach available and can be used as an ideal input for Monte Carlo procedures calculating BRFs of scattering layers with macroscopically rough surfaces. Although the effects of packing density and coherent backscattering are currently neglected, they can also be incorporated. The FORTRAN implementation of the technique is available on the World Wide Web at http://ww,,v.giss.nasa.gov/-crmim/brf.html and can be applied to a wide range of remote sensing, engineering, and biophysical problems. We also examine the potential effect of ice crystal shape on the bidirectional reflectance of flat snow surfaces and the applicability of the Henyey-Greenstein phase function and the 6-Eddington approximation in calculations for soil surfaces.
机译:我们描述了一种用于计算由不吸收或弱吸收,任意形状,随机取向和随机分布的粒子组成的宏观平面散射层的双向反射率的简单高效且准确的辐射转移技术。假定该层是均匀的并且在光学上是半无限的,并且通过Ambartsumian非线性积分方程的简单迭代解找到了双向反射函数(BRF)。作为辐射传递方程的精确解,由此获得的反射函数完全服从能量守恒和互易性的基本物理定律。由于此技术绕过了内部辐射场的计算,因此它是迄今为止可用的最快的数值方法,可以用作计算具有宏观粗糙表面的散射层的BRF的蒙特卡洛程序的理想输入。尽管目前忽略了堆积密度和相干反向散射的影响,但也可以将它们结合在一起。该技术的FORTRAN实现可从以下Web站点获得:http://ww,,v.giss.nasa.gov/-crmim/brf.html,并且可以应用于广泛的遥感,工程和生物物理问题。我们还研究了冰晶形状对平坦雪表面双向反射的潜在影响,以及Henyey-Greenstein相函数和6-Eddington近似在土壤表面计算中的适用性。

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