最优扩散粗网格有限差分法加速基于DGFEM的SN的最优θ

IF 0.4 Q4 NUCLEAR SCIENCE & TECHNOLOGY Journal of Nuclear Fuel Cycle and Waste Technology Pub Date : 2022-08-08 DOI:10.1115/icone29-89221
Boran Kong, Han Zhang, Kaijie Zhu, C. Hao, Jiong Guo, Fu Li
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引用次数: 0

摘要

最优扩散粗网格有限差分法(odCMFD)是近年来发展起来的中子输运方程加速方法。与传统的CMFD相比,它在扩散系数上增加了最优θ。与传统的CMFD相比,该方法具有更高的收敛速度,并且在较大的光学厚度范围内也具有收敛性。而odCMFD的最优θ是由一维传统SN的傅里叶分析结果确定的。当应用odCMFD来加速基于DGFEM的SN时,这个最优θ并不总是合适的。因此,有必要为这个新方案找到一个新的最优。本文利用odCMFD加速对k-特征值中子输运问题进行了基于DGFEM的SN的傅里叶分析。傅里叶分析结果表明,当内迭代次数大于10次时,内迭代次数的增加对光谱半径的影响很小。同时,基于DGFEM的SN的阶数和SN正交集的阶数对谱半径的影响较小。散射比对光谱半径有较大影响,散射比的减小使光谱半径增大。设置内部迭代次数为10次,对于不同的散射比,通过傅里叶分析得到odCMFD的最优θ和多项式拟合曲线。最后,在odCMFD加速下,通过实际一维DGFEM计算得到谱半径的数值估计。实验值与傅里叶分析理论结果吻合较好。
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The Optimal Theta of Optimally Diffusive Coarse Mesh Finite Difference Method to Accelerate DGFEM Based SN
Optimally diffusive coarse mesh finite difference (odCMFD) method is a recently developed acceleration method for neutron transport equation. Compared with the traditional CMFD, it adds an optimal theta on the diffusion coefficient. This new acceleration method achieves a higher convergence rate than the traditional CMFD and promises the convergence even in large optical thickness region. However, the optimal theta of odCMFD is determined by the Fourier analysis results of the 1D traditional SN. When applying the odCMFD to accelerate DGFEM based SN, this optimal theta is not always suitable. Therefore, it is necessary to find a new optimal theta for this new scheme. In this paper, a Fourier analysis of DGFEM based SN using odCMFD acceleration for k-eigenvalue neutron transport problem is conducted. Fourier analysis results show that when the number of inner iterations is higher than 10, the increment of the inner iterations has little impact on the spectral radius. Meanwhile, the order of the DGFEM based SN and the order of SN quadrature set have little impact on the spectral radius. The scattering ratio has great impact on the spectral radius, the decrement of scattering ratio increases the spectral radius. Set the number of inner iterations as 10, for different scattering ratio, an optimal theta of odCMFD and a polynomial fitting curve are obtained by Fourier analysis. Finally, numerical estimations of spectral radius are obtained by real 1D DGFEM based SN calculation with odCMFD acceleration. The experiment values fit well with the Fourier analysis theoretical results.
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CiteScore
0.80
自引率
25.00%
发文量
35
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