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Development of 3D neutron noise simulator based on GFEM with unstructured tetrahedron elements

机译:非结构化四面体元素的基于GFEM的3D中子噪声模拟器的开发

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In the present study, the neutron noise, i.e. the stationary fluctuation of the neutron flux around its mean value is calculated based on the 2G, 3D neutron diffusion theory. To this end, the static neutron calculation is performed at the first stage. The spatial discretization of the neutron diffusion equation is performed based on linear approximation of Galerkin Finite Element Method (GFEM) using unstructured tetrahedron elements. Using power iteration method, neutron flux and corresponding eigen-value are obtained. The results are then benchmarked against the valid results for VVER-1000 (3D) benchmark problem. In the second stage, the neutron noise equation is solved using GFEM and Green's function method for the absorber of variable strength noise source. Two procedures are used to validate the performed neutron noise calculation. The calculated neutron noise distributions are displayed in the different axial layers in the reactor core and its variation in axial direction is investigated. The main novelty of the present paper is the solution of the neutron noise equations in the three dimensional geometries using unstructured tetrahedron elements. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本研究中,基于2G,3D中子扩散理论计算中子噪声,即中子通量在其平均值附近的平稳波动。为此,在第一阶段执行静态中子计算。中子扩散方程的空间离散化是基于Galerkin有限元方法(GFEM)的线性近似,使用的是非结构化四面体元素。使用功率迭代法,得到中子通量和相应的本征值。然后将结果与VVER-1000(3D)基准测试问题的有效结果进行基准测试。在第二阶段,使用GFEM和格林函数方法对变强度噪声源的吸收器求解中子噪声方程。使用两个过程来验证执行的中子噪声计算。计算出的中子噪声分布显示在反应堆堆芯的不同轴向层中,并研究其轴向变化。本文的主要新颖之处在于使用非结构化四面体元素求解三维几何中的中子噪声方程。 (C)2016 Elsevier Ltd.保留所有权利。

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