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High accurate three-dimensional neutron noise simulator based on GFEM with unstructured hexahedral elements

机译:非结构六面体的基于GFEM的高精度三维中子噪声模拟器

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The purpose of the present study is to develop the 3D static and noise simulator based on Galerkin Finite Element Method (GFEM) using the unstructured hexahedral elements. The 3D, 2G neutron diffusion and noise equations are discretized using the unstructured hexahedral by considering the linear approximation of the shape function in each element. The validation of the static calculation is performed via comparison between calculated results and reported data for the VVER-1000 benchmark problem. A sensitivity analysis of the calculation to the element type (unstructured hexahedral or tetrahedron elements) is done. Finally, the neutron noise calculation is performed for the neutron noise source of type of variable strength using the Green function technique.It is shown that the error reduction in the static calculation is considerable when the unstructured tetrahedron elements are replaced with the hexahedral ones. Since the neutron flux distribution and neutron multiplication factor are appeared in the neutron noise equation, the more accurate calculation of these parameters leads to obtaining the neutron noise distribution with high accuracy. The investigation of the changes of the neutron noise distribution in axial direction of the reactor core shows that the 3D neutron noise analysis is required instead of 2D.
机译:本研究的目的是开发基于Galerkin有限元方法(GFEM)的3D静态和噪声模拟器,该模拟器使用非结构化六面体元素。通过考虑每个元素中形状函数的线性近似,使用非结构化六面体离散化3D,2G中子扩散和噪声方程。静态计算的验证是通过对VVER-1000基准问题的计算结果与报告数据之间的比较进行的。对元素类型(非结构化六面体或四面体元素)的计算进行了敏感性分析。最后,利用格林函数技术对变强度类型的中子噪声源进行了中子噪声计算,结果表明,用六面体元素代替非结构化的四面体元素时,静态计算中的误差降低效果显着。由于在中子噪声方程中出现了中子通量分布和中子倍增因子,因此这些参数的更精确计算导致获得了高精度的中子噪声分布。对反应堆堆芯轴向中的中子噪声分布变化的研究表明,需要3D中子噪声分析而不是2D分析。

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