首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >An unstructured Monte Carlo ray-tracing method for solving radiative heat transfer in 3D gray semitransparent medium
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An unstructured Monte Carlo ray-tracing method for solving radiative heat transfer in 3D gray semitransparent medium

机译:一种用于求解3D灰色半透明介质辐射传热的非结构化蒙特卡罗射线跟踪方法

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摘要

Monte Carlo ray-tracing method (MCRTM) is widely used for solving the Radiative Transfer equation (RTE) due to its high accuracy and flexibility. In this paper, a MCRTM is developed for solving the radiative heat transfer in gray semitransparent media with complex geometries which are discretized by 3D unstructured grids. A novel algorithm associated to unstructured four-node tetrahedron element is proposed for generating random emitting positions of rays, and the ray tracing process is performed based on Beer's law. Meanwhile, radiation distribution factors are used for calculating radiative source terms which are loaded to the grid. The present method is first validated by comparing the predictive results with those from previous studies on a cubic enclosure, a 3D L-shaped enclosure, and a 3D elliptical enclosure, respectively. Furthermore, a radiation-conduction heat transfer problem is examined in a cylindrical enclosure. All the comparisons show that the present method is in good agreement with these previous cases. This method can be well adapted to various complex geometries. In addition, since the source term is calculated by the radiation distribution factor, which can be reused for different conditions as long as the volumetric radiative properties remain unchanged, this will bring great advantage when coupled with other heat transfer models such as conduction, convection, combustion, etc. (C) 2018 Elsevier Ltd. All rights reserved.
机译:蒙特卡罗射线跟踪方法(MCRTM)广泛用于求解辐射传输方程(RTE),因为其高精度和灵活性。在本文中,开发了一种MCRTM,用于求解具有复杂几何形状的灰色半透明介质中的辐射传热,其由3D非结构化网格离散化。提出了一种与非结构化四节点四面体元件相关联的新算法,用于产生光线的随机发射位置,并且基于啤酒的定律执行光线跟踪过程。同时,辐射分布因子用于计算加载到电网的辐射源术语。首先通过将预测结果与来自先前研究的那些与立方外壳,3D L形外壳和3D椭圆外壳进行比较来验证本方法。此外,在圆柱形外壳中检查辐射传热问题。所有比较都表明本方法与以前的情况吻合良好。该方法可以很好地适应各种复杂的几何形状。另外,由于源术语通过辐射分布因子计算,因为只要体积辐射性能保持不变,可以重复使用该辐射分布因子,因为随着其他传热模型等传热模型,这将带来很大的优势,如传导,对流,燃烧等(c)2018年elestvier有限公司保留所有权利。

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