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Analysis of the radiative transfer equation with highly assymetric phase function

机译:具有高度非对称相位函数的辐射传递方程分析

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摘要

This paper considers a scalar radiative transfer problem with high scattering anisotropy. Two computational methods are presented based on decomposition of the diffuse light field into a regular and anisotropic part. The first algorithm (DOMAS) singles out the anisotropic radiance in the forward scattering peak using the Small-Angle Modification of RTE. The second algorithm (DOM2+) separates the single scattering radiance as an anisotropic part, which largely defines the fine detail of the total radiance in the backscattering directions. In both cases, the anisotropic part is represented analytically. With anisotropy subtraction, the regular part of the signal, which requires a numerical solution, is essentially smoothed as a function of angles. Further, the transport equation is obtained for the regular part that contains an additional source function from the anisotropic part of the signal. This equation is solved with the discrete ordinates method. A conducted numerical analysis of this work showed that algorithm DOMAS has a strong advantage as compared to the standard discrete ordinates method for simulation of the radiance transmission, and DOM2+ is the best of the three for the reflection computations. Both algorithms offer at least a factor of three acceleration of convergence of the azimuthal series for highly anisotropic phase functions.
机译:本文考虑了具有高散射各向异性的标量辐射传输问题。提出了两种基于漫射光场分解为规则和各向异性部分的计算方法。第一种算法(DOMAS)使用RTE的小角度修正来挑选出前向散射峰中的各向异性辐射。第二种算法(DOM2+)将单散射辐射分离为各向异性部分,这在很大程度上定义了反向散射方向上总辐射的精细细节。在这两种情况下,各向异性部分都是以分析方式表示的。通过各向异性减法,信号的常规部分(需要数值解)基本上是作为角度的函数进行平滑处理的。此外,还从信号的各向异性部分获得了包含附加源函数的常规部分的传输方程。该方程用离散纵坐标方法求解。数值分析表明,与标准离散纵坐标法相比,DOMAS算法在辐射透射模拟方面具有较强的优势,DOM2+是三者中最好的一种。对于高度各向异性的相位函数,这两种算法都提供了至少三倍的方位角级数收敛加速。

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