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Numerical analysis of hydrogen generation in a BWR during a severe accident

机译:严重事故中压水堆氢生成的数值分析

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The aim of this work is to study the behavior of the temporal evolution of the distributions of the hydrogen concentration and temperatures profiles in the core of the boiling water reactor (BWR) during a severe accident. The core of the BWR is considered as an effective medium where the fuel assembly in the core consists of arrays of in-line fuel rod. The governing effective-medium equations for momentum, heat and mass transfer in terms of effective transport coefficients that capture the essential features of the in-line rods assembly were computed using CFD method. The dependence of the evolution of the dimensionless hydrogen concentration and temperatures profiles with Peclet and Biot numbers show the ability of the effective medium for accurately describing the transport phenomena for BWR during severe accident.
机译:这项工作的目的是研究严重事故期间沸水反应堆(BWR)堆芯中氢浓度和温度分布的时间分布行为。 BWR的芯被视为有效介质,其中芯中的燃料组件由成排的燃料棒阵列组成。使用CFD方法,计算了捕获直列杆组件基本特征的动量,热和质量传递的控制有效介质方程式。无量纲氢浓度和温度曲线的演变与Peclet和Biot数的关系表明,有效介质能够准确描述严重事故期间BWR的传输现象。

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