“前后”近似下辐射能量传递的计算方法

Alexander Ju. Krukovskiy, M. Ladonkina, Yuri A. Poveshchenko, I. Popov
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引用次数: 0

摘要

摘要本文给出了圆柱对称电流的前后近似辐射能量传递的计算方法。该方法的关键要素是计算具有强烈空间和时间变化的不透明度介质中的辐射传热的方案。本文讨论了通过提高吸收系数的近似精度来提高差分方程组求解精度的可能性。提出了一种多参数计算实验的数值计算方法,可以得到等离子体不透明度和发射率的正交辐射能量密度。在气体动力学和磁流体动力学的双温模型中,这决定了辐射传热对等离子体电子元件能量平衡的贡献。通过模拟辐射场空间非均匀性的算例,将该方法与一些扩散方法进行了数值比较。结果表明,用本文所考虑的方法进行的计算与用漫射近似方法进行的计算相比,在质量上与问题的解析解吻合得很好。前后近似的明显优点是其结构中固有的完整性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method for calculating radiative energy transfer in the “back and forth” approximation
Abstract. This paper presents a method for calculating the radiative energy transfer in the back and forth approximation for the case of cylindrically symmetric currents. The key element of the method is the scheme for calculating radiative heat transfer in a medium with opacity that strongly varies in space and time. The paper discusses the possibility of improving accuracy of solving a difference equations’ system by making the approximation of absorption coefficients more accurate. The numerical technique proposed for multi-parameter computing experiments makes it possible to obtain the radiation energy density as a quadrature of plasma opacity and emissivity. In two-temperature model of gas dynamics and magnetohydrodynamics, this determines the contribution of radiative heat transfer into the energy balance of the plasma electronic component. Numerical comparison of the proposed method with some diffusion methods was implemented via test examples simulating spatial inhomogeneity of the radiation field. It is shown that the calculations performed according to the methodology considered in this paper, give a qualitatively correct match with the analytical solution of the problem, in contrast to calculations performed by the method of diffuse approximation. The obvious advantage of the back and forth approximation is that integrality is inherent in its structure.
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CiteScore
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