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Analysis of hydrogen flame acceleration in APR1400 containment by coupling hydrogen distribution and combustion analysis codes

机译:通过结合氢分布和燃烧分析代码来分析APR1400安全壳中的氢火焰加速

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This study was conducted as part of the construction of an integrated system to mechanistically evaluate flame acceleration characteristics in a containment of a nuclear power plant during a severe accident In the integrated analysis system, multi-dimensional hydrogen distribution and combustion analysis codes are used to consider three-dimensional effects of the hydrogen behaviors. GASFLOW is used for the analysis of a hydrogen distribution in the containment For the analysis of a hydrogen combustion in the containment, an open-source CFD (computational fluid dynamics) code OpenFOAM is chosen. Data of the hydrogen and steam distributions obtained from a GASFLOW analysis are transferred to the OpenFOAM combustion solver by a conversion and interpolation process between the solvers. The combustion solver imports the transferred data and initializes the containment atmosphere as an initial condition of a hydrogen combustion analysis. The turbulent combustion model used in this study was validated by evaluating the F22 test of the FLAME experiment. The coupled analysis method was applied for the analysis of a hydrogen combustion during a station blackout accident in an APR1400. In addition, the characteristics of the flame acceleration depending on a hydrogen release location are comparatively evaluated.
机译:这项研究是在严重事故发生时机械评估核电站安全壳内火焰加速特性的集成系统构建过程中进行的一部分。在集成分析系统中,使用多维氢分布和燃烧分析代码来考虑氢行为的三维效应。 GASFLOW用于分析安全壳中的氢分布为了分析安全壳中的氢燃烧,选择了开源CFD(计算流体力学)代码OpenFOAM。通过GASFLOW分析获得的氢气和蒸汽分布数据通过求解器之间的转换和插值过程传输到OpenFOAM燃烧求解器。燃烧求解器导入传输的数据并初始化安全壳气氛,作为氢燃烧分析的初始条件。通过评估FLAME实验的F22测试,验证了本研究中使用的湍流燃烧模型。耦合分析方法用于分析APR1400车站停电事故中的氢燃烧。另外,比较地评估了取决于氢释放位置的火焰加速特性。

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