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首页> 外文期刊>International Journal of Thermal Sciences >Fundamentals of a new method for the solution of the radiative transfer equation
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Fundamentals of a new method for the solution of the radiative transfer equation

机译:一种求解辐射传递方程的新方法的基本原理

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摘要

The fundamentals of a new radiation model are described in this paper. The spatial and angular dependence of the radiation intensity are split in such a way that the radiation intensity is approximated by a linear combination of basis functions dependent only on the angular direction. The coefficients of the approximation are functions of the spatial coordinates. The spatial discretization is performed using the finite volume method and the angular discretization is based on the finite element method. This means that the basis functions are defined according to the criteria used in the finite element method. The step scheme was employed in the spatial discretization and bilinear basis functions were chosen for the angular discretization. The method may be applied to both grey and non-grey media, non-scattering and scattering media, simple and complex geometries. However, it is still in an early stage of development, and therefore it is applied in this paper to simple one-dimensional problems of radiative transfer in enclosures with grey, emitting-absorbing and scattering media. The results obtained show that the method gives good results for several benchmark problems with available analytical solutions, and converges to the exact solution as the grid is refined and the number of terms in the approximation increases.
机译:本文介绍了新辐射模型的基本原理。以这样的方式划分辐射强度的空间和角度依赖性,使得通过仅依赖于角度方向的基函数的线性组合来近似辐射强度。近似系数是空间坐标的函数。使用有限体积方法执行空间离散化,并且基于有限元方法进行角度离散化。这意味着基本函数是根据有限元方法中使用的标准定义的。在空间离散化中采用了步进方案,并且选择了双线性基函数进行角度离散化。该方法可以应用于灰色和非灰色介质,非散射和散射介质,简单和复杂的几何形状。但是,它仍处于发展的早期阶段,因此,本文将其应用于带有灰色,发射吸收和散射介质的外壳中简单的一维辐射传递问题。所获得的结果表明,该方法对于具有可用解析解的多个基准问题都给出了良好的结果,并且随着网格的细化和近似项的增加,收敛到了精确的解。

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