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An extended half-range spherical harmonics method for first-order neutron transport equation based on variational treatment

机译:基于变分处理的一阶中子输运方程的扩展半程球谐函数方法

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A new variational approach with anisotropic scattering kernel for first order neutron transport equation based on Finite Element Method (FEM) and Double-P-N (DPN) approximation has been introduced. In presented variational principle, the angular dependence of the neutron flux has been separated into two sub-ranges of the forward and backward moving particles. The applied boundary conditions for the DPN method are straightforward in comparison to the conditions for the P-N method. The method has also been extended for 2D plane geometry by using extended half-range spherical harmonics method. By defining a new variational principle, the discontinuity of angular flux on the boundary surface has been treated. A new computing program has been developed, to calculate the angular flux by this method which has the capability to solve neutron transport equation by arbitrary DPN approximation in 1D anisotropic scattering media. Moreover, by investigating extended half-range spherical harmonics method, the program has been developed for 2D geometry. The efficacy of the method is assessed by comparing the required order of angular expansion which is necessary to achieve fine results in several benchmarks. The results demonstrate the superiority of the method against traditional P-N method. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种基于有限元法(FEM)和双P-N(DPN)近似的一阶中子输运方程的各向异性散射核变分方法。在提出的变分原理中,中子通量的角度依赖性已被分为前进和后退运动粒子的两个子范围。与P-N方法的条件相比,DPN方法的应用边界条件很简单。通过使用扩展的半范围球谐函数方法,该方法也已扩展到二维平面几何。通过定义新的变分原理,已解决了边界面上角通量的不连续性。开发了一种新的计算程序,通过该方法计算角通量,该方法具有通过一维各向异性散射介质中的任意DPN近似来求解中子输运方程的能力。此外,通过研究扩展的半范围球谐函数方法,该程序已开发用于二维几何。通过比较所需的角度扩展顺序来评估该方法的有效性,这是在几个基准中获得良好结果所必需的。结果证明了该方法相对于传统的P-N方法的优越性。 (C)2017 Elsevier Ltd.保留所有权利。

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