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Spectral Element Approach for Coupled Radiative and Conductive Heat Transfer in Semitransparent Medium

机译:半透明介质中辐射与传导耦合传热的谱元方法

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摘要

A spectral element method is presented to solve coupled radiative and conductive heat transfer problems in multidimensional semitransparent medium. The solution of radiative energy source is based on a second order radiative transfer equation. Both the second order radiative transfer equation and the heat diffusion equation are discretized by spectral element approach. Four various test problems are taken as examples to verify the performance of the spectral element method. The h-and the p-convergence characteristics of the spectral element method are studied. The convergence rate of p refinement for different values of Planck number follows the exponential law and is superior to that of h refinement. The spectral element method has good property to tolerate skewed meshes. The predicted dimensionless temperature distributions determined by the spectral element method agree well with the results in references. The presented method is very effective to solve coupled radiative and conductive heat transfer in semitransparent medium with complex configurations and demands little on the quality of mesh.
机译:提出了一种光谱元素方法来解决多维半透明介质中的辐射与传导耦合传热问题。辐射能源的解决方案基于二阶辐射传递方程。二阶辐射传递方程和热扩散方程都通过谱元方法离散化。以四个不同的测试问题为例,以验证光谱元素方法的性能。研究了谱元法的h-和p-收敛特性。对于不同的普朗克数值,p细化的收敛速度遵循指数定律,并且优于h细化的收敛速度。频谱元素法具有很好的容忍倾斜网格的特性。通过谱元素法确定的预测无量纲温度分布与参考文献中的结果非常吻合。提出的方法对于解决结构复杂的半透明介质中的辐射与传导耦合传热非常有效,对网格质量的要求不高。

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