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The Solution Of Transient Radiative Transfer With Collimated Incident Serial Pulse In A Plane-parallel Medium By The Dresor Method

机译:用Dresor法求解平面平行介质中准直入射串行脉冲的瞬态辐射传递

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摘要

A time-dependent distribution of ratios of energy scattered by the medium or reflected by the boundary surfaces (DRESOR) method was proposed to solve the transient radiative transfer in a one-dimensional slab. This slab is filled with an absorbing, scattering, and nonemitting medium and exposed to a collimated, incident serial pulse with different pulse shapes and pulse widths. The time-dependent DRESOR values, representing the temporal response of an instantaneous, incident pulse with unit energy and the same incident direction as that for the serial pulse, were proposed and calculated by the Monte Carlo method. The temporal radiative intensity inside the medium with high directional resolution can be obtained from the time-dependent DRESOR values. The transient incident radiation results obtained by the DRESOR method were compared to those obtained with the Monte Carlo method, and good agreements were achieved. Influences of the pulse shape and width, reflectivity of the boundary, scattering albedo, optical thickness, and anisotropic scattering on the transient radiative transfer, especially the temporal response along different directions, were investigated.
机译:为了解决一维平板中的瞬态辐射传递,提出了一种由介质散射或由边界表面反射的能量的比率随时间变化的分布(DRESOR)。该平板填充有吸收,散射和非发射介质,并暴露于具有不同脉冲形状和脉冲宽度的准直入射串行脉冲。通过蒙特卡罗方法提出并计算了随时间变化的DRESOR值,该值代表具有单位能量且与串行脉冲具有相同入射方向的瞬时入射脉冲的时间响应。可以从随时间变化的DRESOR值获得具有高方向分辨率的介质内部的时间辐射强度。将通过DRESOR方法获得的瞬态入射辐射结果与通过蒙特卡洛方法获得的瞬态辐射结果进行比较,并取得了良好的一致性。研究了脉冲形状和宽度,边界的反射率,散射反照率,光学厚度和各向异性散射对瞬态辐射传递,特别是沿不同方向的时间响应的影响。

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