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Multi-grid Monte Carlo method for radiative transfer in multi-dimensional graded index media with diffuse-specular-gray boundaries

机译:多网蒙特卡罗方法,用于漫射镜灰色边界的多维分级指数介质中的辐射转移

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摘要

The Monte Carlo method, based on the radiative energy absorption distribution, is performed to simulate the radiative transfer in general multi-dimensional absorbing-emitting-scattering graded index media with variable refractive index and diffuse-specular-gray boundaries. A cell-based ray tracing approach is used to track the curve paths of energy particles throughout the medium. In order to accurate curved ray tracing, a multi-grid approach is used in which the domain of interest is discretized into a secondary finer grid for ray tracing, which is embedded into a primary coarser grid to simulate the radiation field. The multi-dimensional media with complex geometries are simulated by blocked-off approach. The accuracy of the present method is verified by comparing its result with benchmarks. Some examples are presented to show the performance of the present method for solving the radiative transfer in multi-dimensional graded index media with irregular geometries and diffuse-specular-gray boundaries. (C) 2018 Elsevier Ltd. All rights reserved.
机译:基于辐射能量吸收分布的蒙特卡罗方法是在具有可变折射率和漫射镜灰色边界的一般多维吸收发射散射分析率指数介质中的辐射转移。基于电池的光线跟踪方法用于跟踪整个介质中能量颗粒的曲线路径。为了精确曲线跟踪,使用多电网方法,其中将感兴趣的领域离散地分成射线跟踪的次级较好网格,其嵌入到主要较粗糙网格中以模拟辐射场。具有复杂几何形状的多维介质通过阻塞方法模拟。通过将其结果与基准进行比较来验证本方法的准确性。提出了一些示例以示出本发明方法的性能,用于用不规则的几何形状和漫射镜灰晶界求解多维渐变指数介质中的辐射传递。 (c)2018年elestvier有限公司保留所有权利。

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