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Least-squares spectral element method for radiative heat transfer in semitransparent media

机译:半透明介质中辐射热传递的最小二乘谱元素法

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摘要

Least-squares spectral element method based on the discrete-ordinate equation is developed to solve multidimensional radiative heat transfer problems in semitransparent media. An efficient algorithm for implementation of the method is presented. Chebyshev polynomials are employed as basis functions for the spectral element discretization. The p-convergence characteristics of the least-squares spectral element method are studied. The convergence rate is very fast and approximately follows the exponential law. Four test problems are taken as examples to verify the least-squares spectral element formulation. The predicted temperature distributions and radiative heat flux are determined by the least-squares spectral element method and compared with data in the references. The results show that the least-squares spectral element method developed in this article has good accuracy for solving multidimensional radiative heat transfer problems.
机译:提出了一种基于离散坐标方程的最小二乘谱元方法,以解决半透明介质中的多维辐射传热问题。提出了一种实现该方法的有效算法。 Chebyshev多项式被用作频谱元素离散化的基础函数。研究了最小二乘谱元素法的p收敛特性。收敛速度非常快,并且近似遵循指数定律。以四个测试问题为例,以验证最小二乘光谱元素公式。预测的温度分布和辐射热通量通过最小二乘谱元素法确定,并与参考文献中的数据进行比较。结果表明,本文提出的最小二乘谱元素法在解决多维辐射传热问题上具有很好的精度。

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