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Discontinuous finite element method for combined radiation-conduction heat transfer in participating media

机译:参与介质中辐射传导热传导的非连续有限元方法

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摘要

A discontinuous finite element method (DFEM) is extended to combined radiation-conduction heat transfer in gray and isotropically scattering media. The computational domain is discretized into finite elements and the shape functions are constructed on each discrete element. The forced inner-boundary continuity in the continuous finite element method (FEM) is released and the DFEM elements are connected by a simulated numerical flux across the inner-element boundaries, this makes the DFEM numerical stable and flexible in dealing with irregular geometry with curve boundaries. The accuracy of the DFEM algorithm for combined heat transfer is verified by comparing the DFEM results with other benchmark solutions. Combined heat transfer in two-dimensional media with irregular geometries is further solved by using the DFEM. Results show that the DFEM demands little on unstructured mesh quality and is highly accurate for solving coupled radiation-conduction heat transfer in participating medium with complex configurations.
机译:不连续有限元方法(DFEM)扩展为在灰色和各向同性散射介质中进行辐射传导组合传热。计算域离散为有限元,并且在每个离散元素上构造形状函数。释放了连续有限元方法(FEM)中的强制内边界连续性,并且通过模拟数值通量跨内元素边界连接了DFEM元素,这使得DFEM数值在处理具有曲线的不规则几何时是稳定且灵活的边界。通过将DFEM结果与其他基准解决方案进行比较,验证了用于组合传热的DFEM算法的准确性。使用DFEM可以进一步解决二维不规则几何形状介质中的传热问题。结果表明,DFEM对非结构网格的质量要求不高,并且对于解决复杂结构的参与介质中耦合的辐射传导热传递具有很高的准确性。

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