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Evaluation of the finite-volume solutions of radiative heat transfer in a complex two-dimensional enclosure with unstructured polygonal meshes

机译:具有非结构化多边形网格的复杂二维外壳中辐射热传递的有限体积解的评估

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摘要

Radiative heat transfer in a complex two-dimensional enclosure with an absorbing, emitting, and isotropically scattering gray medium is investigated by using the finite-volume method. In particular, an implementation of the unstructured polygonal meshes, based on an unstructured triangular system, is introduced, thereby reducing the computation time required for the analysis of thermal radiation. By connecting each center point of the triangular meshes rather than joining the centroids of the triangular elements to the midpoints of the corresponding sides to form a polygonal element, it not only prevents concave shapes of adjacent faces, it also reduces the number of control-volume faces of the polygonal mesh. After a mathematical formulation and corresponding discretization equation for the radiative transfer equation are derived, the final discretization equation is introduced with the conventional finite-volume approaches. The present formulation is then validated by comparing results with those obtained in previous related works. All the results presented in this work show that the present method is accurate and computationally efficient for the analysis of radiative heat transfer problems in complex geometries.
机译:利用有限体积方法研究了具有吸收,发射和各向同性散射灰色介质的复杂二维外壳中的辐射传热。特别地,介绍了基于非结构化三角系统的非结构化多边形网格的实现,从而减少了热辐射分析所需的计算时间。通过连接三角形网格的每个中心点,而不是将三角形元素的质心连接到相应边的中点以形成多边形元素,不仅防止了相邻面的凹入形状,而且还减少了控制体积多边形网格的面。在推导了辐射传递方程的数学公式和相应的离散方程后,使用常规的有限体积方法引入了最终的离散方程。然后通过将结果与先前相关工作中获得的结果进行比较来验证本制剂。这项工作中提出的所有结果表明,本方法对于分析复杂几何形状中的辐射传热问题是准确且计算有效的。

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