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Comparative analysis of radiative transfer approaches for calculation of plane transmittance and diffuse attenuation coefficient of plane-parallel light scattering layers

机译:计算平面平行光散射层的平面透射率和扩散衰减系数的辐射传递方法的比较分析

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摘要

We present an analysis of a number of different approximations for the plane transmittance T_p and diffuse attenuation coefficient K_d of a semi-infinite, unbounded, plane-parallel, and optically homogeneous layer. The maximally wide optical conditions (from the full absorption to the full scattering and from the fully forward to the fully backward scattering) were considered. The approximations were analyzed from the point of view of their physical limitations and closeness to the numerical solution of the radiative transfer equation for the plane transmittance. The main criterion for inclusion of the models for analysis was the possibility of practical use, i.e., approximations were well parameterized and included only easily measured or estimated parameters. A detailed analysis of errors for different T_p and K_d models showed that the two-stream radiative transfer Ben-David model yields the best results over all optical conditions and depths. However, the quasi-single-scattering and polynomial Gordon's approximations proved to be the best for the depths close to zero.
机译:我们对半无限,无界,平面平行且光学均质层的平面透射率T_p和扩散衰减系数K_d进行了许多不同的近似分析。考虑了最大的光学条件(从完全吸收到完全散射以及从完全向前到完全向后散射)。从近似值的物理局限性和与平面透射率的辐射传递方程的数值解的接近性的角度分析了近似值。包含用于分析的模型的主要标准是实际使用的可能性,即,近似值已很好地参数化,仅包含易于测量或估计的参数。对不同T_p和K_d模型的误差进行的详细分析表明,在所有光学条件和深度下,两流辐射传输Ben-David模型产生的最佳结果。但是,对于接近零的深度,拟单散射和多项式戈登近似被证明是最好的。

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