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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >A comparison of spatial discretization schemes for differential solution methods of the radiative transfer equation
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A comparison of spatial discretization schemes for differential solution methods of the radiative transfer equation

机译:辐射传递方程微分求解方法的空间离散方案比较

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A comparison of discretization schemes required to evaluate the radiation intensity at the cell faces of a control volume in differential solution methods of the radiative transfer equation is presented. Several schemes developed using the normalized variable diagram and the total variation diminishing formalisms are compared along with essentially non-oscillatory schemes and genuinely multidimensional schemes. The calculations were carried out using the discrete ordinates method, but the analysis is equally valid for the finite-volume method. It is shown that the S schemes of the genuinely multidimensional family perform quite well, particularly in problems with discontinuous radiation intensity fields. However, they are time consuming, and so they do not always become more attractive regarding the trade-off between accuracy and computational requirements, in comparison with other high-order schemes that, although being less accurate, are also more economical. (C) 2007 Elsevier Ltd. All rights reserved.
机译:给出了在辐射传递方程的微分求解方法中评估控制体积的细胞面辐射强度所需的离散化方案的比较。比较了使用归一化变量图和总变异减少形式主义开发的几种方案,以及基本上非振荡的方案和真正的多维方案。计算是使用离散纵坐标方法进行的,但该分析对于有限体积方法同样有效。结果表明,真正的多维族的S方案表现很好,特别是在辐射强度场不连续的问题中。但是,它们很耗时,因此与其他尽管精度较低但也更经济的高阶方案相比,它们在精度和计算要求之间的取舍方面并不总是更具吸引力。 (C)2007 Elsevier Ltd.保留所有权利。

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