首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Effect of angular quadrature schemes on the computational efficiency of the discrete transfer method for solving radiative transport problems with participating medium
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Effect of angular quadrature schemes on the computational efficiency of the discrete transfer method for solving radiative transport problems with participating medium

机译:角正交方案对离散传递方法求解参与介质辐射传输问题的计算效率的影响

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摘要

This article deals with the effects of angular quadrature schemes on the computational efficiency of the discrete transfer method (DTM) used for solving radiative transport problems with a participating medium. Four different quadrature schemes are considered. The first scheme uses the ray directions and the associated weights as per the original formulation of the DTM. In the second and third schemes, the ray arrangements are different but the quadrature schemes are the same as that used in the collapsed dimension method. The fourth scheme uses the ray directions and the corresponding weights according to the imporved quadrature scheme employed in the discrete ordinates method (DOM). The effects of the four quadrature schemes on the computational efficiency are tested for four benchmark radiative transport problems. Results are compared with the exact methods and with those available in the literature. It has been found that if the ray directions and the weights are chosen as per the DOM, the computational efficiency of the DTM is the best.
机译:本文讨论了正交积分方案对离散传递方法(DTM)的计算效率的影响,该方法用于解决参与介质的辐射传输问题。考虑了四种不同的正交方案。第一种方案按照DTM的原始公式使用射线方向和相关的权重。在第二个和第三个方案中,射线布置不同,但正交方案与折叠尺寸方法中使用的方案相同。第四种方案根据离散坐标法(DOM)中采用的改进正交方案使用射线方向和相应的权重。针对四个基准辐射传输问题,测试了四种正交方案对计算效率的影响。将结果与确切的方法以及文献中提供的方法进行比较。已经发现,如果根据DOM选择射线方向和权重,则DTM的计算效率最佳。

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