Coupled Analysis of Fuel Debris Distribution and Recriticality by both Multiphase/Multicomponent Flow and Continuous Energy Neutron Transport Monte Carlo Simulations

Q4 Engineering
S. Yamashita, Kenichi Tada, H. Yoshida, K. Suyama
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引用次数: 0

Abstract

To reveal the melting behaviors of core internals mechanistically and to reduce the uncertainties of existing severe accident analysis codes, a numerical simulation code for melt relocation and accumulation behaviors based on computational fluid dynamics named JUPITER has been developed by JAEA. In this paper, we performed a simulation of the accumulation and spreading of a melt to the pedestal region of a typical BWR containment vessel by JUPITER to consider a method for estimating the fuel debris composition. We performed recriticality analysis by the continuous energy neutron transport Monte Carlo code MVP using detailed fuel debris composition data obtained by JUPITER to evaluate recriticality for fuel debris. It was revealed that JUPITER has the potential to obtain a com-plicated fuel debris distribution mechanistically. Also, in effective multiplication factor analyses, we investigated the effect of parameters ( uranium enrichment, water content ratio and partitioning resolution in MVP analysis ) on the effective multiplication factor. It was also revealed that the partitioning resolution is one of the most important factors in JUPITER-MVP coupled analysis, and an appro-priate partitioning according to the inhomogeneity of the fuel debris distribution obtained by JUPITER will be very important.
多相/多组分流和连续能量中子输运蒙特卡罗模拟对燃料碎片分布和再临界性的耦合分析
为了从机理上揭示堆芯内部构件的熔化行为,并减少现有严重事故分析代码的不确定性,JAEA开发了一个基于计算流体动力学的熔体迁移和积聚行为数值模拟代码JUPITER。在本文中,我们通过JUPITER对典型BWR安全壳底座区域的熔体积聚和扩散进行了模拟,以考虑一种估计燃料碎片成分的方法。我们使用JUPITER获得的详细燃料碎片成分数据,通过连续能量中子输运蒙特卡罗程序MVP进行了再临界性分析,以评估燃料碎片的再临界性。研究表明,JUPITER有可能从机理上获得复杂的燃料碎片分布。此外,在有效倍增因子分析中,我们研究了参数(MVP分析中的铀浓缩、含水率和分配分辨率)对有效倍增因子的影响。此外,在JUPITER-MVP耦合分析中,划分分辨率是最重要的因素之一,根据JUPITER获得的燃料碎片分布的不均匀性进行适当的划分将非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Transactions of the Atomic Energy Society of Japan
Transactions of the Atomic Energy Society of Japan Energy-Nuclear Energy and Engineering
CiteScore
0.50
自引率
0.00%
发文量
16
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