Numerical Analysis on Characteristic of Hydrogen Mixing and Stratification in a Containment Model

Cheng Peng, L. Tong, Xuewu Cao
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引用次数: 2

Abstract

Hydrogen explosion is one of the severe threats to the integrity of containment for nuclear power plant which has drawn many experts attention to make great efforts on hydrogen related issues, espeically after the Fukushima Dai-ichi nuclear power station accident took place. However, the issue of hydrogen distribution hasn’t been closed as a result of related complex process of hydrogen transport and the particular design of each kind of facility. In the present study, CFD method has been applied to the pre-analysis on the characteristic of hydrogen mixing and stratification in a computational containment model for the sake of probable phenomena identification and instrumentaion design of experimental study in the next phase. Firstly, physical models have been verified by the experimental data from THAI HM2. Based on the determined numerical models, five typical groups of cases have been simulated, considering the effect of initial momentum, injection location, and injection direction. During the cases, only helium has been released in the vessel isothermally, on behalf of hydrogen. The results show that the backflow from the wall to the main stream in the dome and the buoyancy force may strongly dominate the helium flow, thus affacting the mixing and stratification. The eccentric injection and horizontal injection may also influence the helium distribution, in which the wall effects and rapid shifting may play important roles. However, the inference will be examined in the experiments later. All the work will be helpful for safety design and analysis of newly-built containment in China.
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安全壳模型中氢气混合和分层特性的数值分析
氢气爆炸是对核电站安全壳完整性的严重威胁之一,特别是在福岛第一核电站事故发生后,引起了许多专家对氢气相关问题的关注。然而,由于氢气输运过程的复杂性和各种设施的特殊性,氢气的分配问题并没有完全解决。本研究将CFD方法应用于计算容器模型中氢气混合分层特性的预分析,为下一阶段实验研究的可能现象识别和仪器设计提供依据。首先,利用THAI HM2的实验数据对物理模型进行了验证。在确定的数值模型的基础上,考虑初始动量、注射位置和注射方向的影响,对五组典型情况进行了模拟。在这种情况下,只有氦在容器中等温释放,而不是氢。结果表明,从壁面向圆顶内主流的回流和浮力对氦气流动具有强烈的支配作用,从而影响了混合和分层。偏心注入和水平注入也会影响氦的分布,其中壁效应和快速移动可能起重要作用。不过,这个推论将在稍后的实验中加以检验。这些工作对国内新建安全壳的安全设计和分析具有一定的指导意义。
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