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Large eddy simulations of erosion of a stratified layer by a buoyant jet

机译:浮力射流腐蚀分层层的大涡模拟

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During a Loss of Coolant Accident (LOCA) accident, leaked hydrogen from the primary circuit can form a stable stratified layer at the top of the containment building. The formation and erosion of a stratified layer is a challenging numerical problem due to the interaction mechanism of the jet flow with the stratified layer. The OECD-NEA conducted an experiment to investigate the erosion of the stratified layer by a vertical air-helium jet from the bottom of the large vessel (height 8 m., diameter 4 m). During the experiment, CFD grade experimental data was generated that could be used for comparative studies. In this study, the LES (Large Eddy Simulation) numerical methodology is used to validate the PANDA experiment for the nuclear reactor containment safety analysis. Specific attention is given to the analysis of the interaction between a buoyant jet and stratified layer. An understanding of the interaction mechanisms will help to quantify turbulent mass transport of the gas components. Good agreement between the numerical results and the experimental data is observed for temporal velocity, gas concentration and temperature data. FFT (Fast Fourier Transform) analysis is applied to check the numerical grid resolution and POD (Proper Orthogonal Decomposition) is applied to investigate coherent flow structures and turbulent mass transport mechanisms. Horseshoe vortices, which has previously been observed experimentally and numerically for buoyant jets, are observed near the round jet.
机译:在发生冷却剂事故(LOCA)事故期间,从主回路泄漏的氢气可以在安全壳建筑物的顶部形成稳定的分层层。由于射流与分层层的相互作用机理,分层层的形成和侵蚀是一个具有挑战性的数值问题。 OECD-NEA进行了一项实验,研究了从大型容器底部(高度8 m,直径4 m)的垂直空气氦射流对分层层的侵蚀。在实验过程中,生成了CFD级实验数据,可用于比较研究。在这项研究中,使用LES(大涡模拟)数值方法来验证用于核反应堆安全性分析的PANDA实验。应特别注意浮力射流与分层层之间相互作用的分析。对相互作用机理的理解将有助于量化气体组分的湍流传质。对于瞬时速度,气体浓度和温度数据,观察到数值结果和实验数据之间的良好一致性。使用FFT(快速傅立叶变换)分析来检查数值网格分辨率,并使用POD(正确的正交分解)来研究相干流动结构和湍流传质机理。在圆形射流附近观察到了以前在浮力射流上进行过实验和数值观察的马蹄涡。

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