半边界法在一维柱坐标系中求解中子输运方程中的应用

IF 3.2 3区 工程技术 Q1 NUCLEAR SCIENCE & TECHNOLOGY
Yang Liu , Lei Xue , Hangyu Shi , Zhiyi Ni , Liangzhi Cao , Xiaoping Ouyang
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引用次数: 0

摘要

核反应堆堆芯内的中子分布在核工程中起着至关重要的作用,直接影响到核反应堆的安全运行。中子输运方程提供了确定这种分布的基本方法。本文应用半边界法求解柱坐标下的中子输运方程。通过推导离散节点值之间的数学关系,HBM在整个模型中建立了边界条件与任意空间点上中子通量之间的显式相关性。与传统的有限差分方法相比,HBM只需要对边界值进行迭代计算,从而提高了计算精度,同时减少了执行时间和内存需求。本文详细介绍了HBM的离散化和推导过程。对空间离散化参数和角度离散化参数的影响进行了灵敏度分析。收敛性分析表明,空间离散化在径向上具有二阶精度,而角离散化具有一阶收敛性。通过与蒙特卡罗方法的比较,验证了HBM的一致性、准确性和可信性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of the half-boundary method to solving the neutron transport equation in 1D cylindrical coordinate
The neutron distribution within a nuclear reactor core plays a crucial role in nuclear engineering, directly influencing the safe operation of nuclear reactors. The neutron transport equation provides a fundamental approach to determine this distribution. This study applies the half-boundary method (HBM) to solve the neutron transport equation in cylindrical coordinates. By deriving mathematical relationships among discrete nodal values, the HBM establishes explicit correlations between boundary conditions and neutron flux at arbitrary spatial points throughout the model. Compared to traditional finite difference methods, the HBM only requires iterative calculations on boundary values, thereby improving computational accuracy while reducing both execution time and memory requirements. In this paper, the HBM discretization and derivation processes are described in detail. The sensitivity analysis to assess the influence of varying the spatial and angular discretization parameters is made. Convergence analysis demonstrates that spatial discretization achieves second-order accuracy in the radial direction, while angular discretization exhibits first-order convergence. Three numerical test cases are presented to verify the HBM by comparing its results with the Monte Carlo method, showing their consistency, high accuracy, and credibility.
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来源期刊
Progress in Nuclear Energy
Progress in Nuclear Energy 工程技术-核科学技术
CiteScore
5.30
自引率
14.80%
发文量
331
审稿时长
3.5 months
期刊介绍: Progress in Nuclear Energy is an international review journal covering all aspects of nuclear science and engineering. In keeping with the maturity of nuclear power, articles on safety, siting and environmental problems are encouraged, as are those associated with economics and fuel management. However, basic physics and engineering will remain an important aspect of the editorial policy. Articles published are either of a review nature or present new material in more depth. They are aimed at researchers and technically-oriented managers working in the nuclear energy field. Please note the following: 1) PNE seeks high quality research papers which are medium to long in length. Short research papers should be submitted to the journal Annals in Nuclear Energy. 2) PNE reserves the right to reject papers which are based solely on routine application of computer codes used to produce reactor designs or explain existing reactor phenomena. Such papers, although worthy, are best left as laboratory reports whereas Progress in Nuclear Energy seeks papers of originality, which are archival in nature, in the fields of mathematical and experimental nuclear technology, including fission, fusion (blanket physics, radiation damage), safety, materials aspects, economics, etc. 3) Review papers, which may occasionally be invited, are particularly sought by the journal in these fields.
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