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Nonorthogonal finite-volume solutions of radiative heat transfer in a three-dimensional enclosure

机译:三维空间中辐射传热的非正交有限体积解

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A finite-volume solution procedure for radiative heat transfer in a three-dimensional nonorthogonal enclosure containing participating medium is proposed with geometric relations commonly adopted in computational fluid dynamics. A general discretization equation is formulated by using the directional weight and the step scheme for spatial differencing. The present approach is validated through comparison with the problems of hexahedral enclosure, annular sector, and three-dimensional combustion chamber, in which the solution accuracy as wed as computation efficiency required have been examined for various cases. All of the results presented here support its accuracy as well as moderate efficiency in computation time in the nonorthogonal three-dimensional radiation calculation. Finally, the present method is applied to a kidney-shaped combustion chamber as a three-dimensional test case. [References: 23]
机译:提出了一种在包含参与介质的三维非正交壳体中辐射热传递的有限体积求解程序,该程序具有在计算流体动力学中通常采用的几何关系。通过使用方向权重和空间差分的阶跃方案,制定了一个一般的离散方程。通过与六面体外壳,环形扇形和三维燃烧室的问题进行比较,验证了本方法的有效性,在这些问题中,针对各种情况检查了作为计算效率所需的求解精度。在此提出的所有结果都支持其准确性以及非正交三维辐射计算中计算时间的适度效率。最后,将本方法应用于三维燃烧室作为肾形燃烧室。 [参考:23]

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