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Equivalent isotropic scattering formulation for transient short-pulse radiative transfer in anisotropic scattering planar media

机译:各向异性散射平面介质中瞬态短脉冲辐射传递的等效各向同性散射公式

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摘要

An isotropic scaling formulation is evaluated for transient radiative transfer in a one-dimensional planar slab subject to collimated and/or diffuse irradiation. The Monte Carlo method is used to implement the equivalent scattering and exact simulations of the transient short-pulse radiation transport through forward and backward anisotropic scattering planar media. The scaled equivalent isotropic scattering results are compared with predictions of anisotropic scattering in various problems. It is found that the equivalent isotropic scaling law is not appropriate for backward-scattering media in transient radiative transfer. Even for an optically diffuse medium, the differences in temporal transmittance and reflectance profiles between predictions of backward anisotropic scattering and equivalent isotropic scattering are large. Additionally, for both forward and backward anisotropic scattering media, the transient equivalent isotropic results are strongly affected by the change of photon flight time, owing to the change of flight direction associated with the isotropic scaling technique.
机译:评估了各向同性缩放配方在一维平面平板中经受准直和/或漫射辐射的瞬态辐射传递。蒙特卡罗方法用于实现等效短散射和瞬态短脉冲辐射通过正向和反向各向异性散射平面介质传输的精确模拟。将缩放后的等效各向同性散射结果与各种问题中各向异性散射的预测结果进行比较。发现等效的各向同性定律不适用于瞬态辐射传输中的向后散射介质。即使对于光扩散介质,反向各向异性散射和等效各向同性散射的预测之间的时间透射率和反射率分布的差异也很大。另外,对于前向和后向各向异性散射介质,由于与各向同性定标技术相关的飞行方向的变化,瞬态等效各向同性结果受光子飞行时间变化的强烈影响。

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