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MODELING OF HYDROGEN-AIR DETONATIONS IN THE TONUS CFD CODE AND ITS APPLICATION TO THE FLAME F-19 TEST

机译:TONUS CFD码中氢气爆炸的建模及其在火焰F-19测试中的应用

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In severe accident management, the ability to predict pressure and thermal loads resulting from hydrogen combustion is important since they may threaten containment integrity. In computational modeling, different combustion regimes have to be accounted for and state-of-the-art techniques developed for reliable analysis. In the present study, the focus is on computational fluid dynamics code validation for reactive flows in the detonation regime. The FLAME hydrogen combustion test F-19 performed at the Sandia National Laboratories has been simulated by using the gas detonation model implemented in the TONUS CFD code which is developed by CEA and IRSN (France). In this model the reactive Euler equations are solved and the reaction rate is obtained by the Arrhenius global rate equation. Several simulations were run in order to examine the effect of modifying the parameters of the chemistry model. A mesh convergence study was performed for the purpose of finding out the necessary mesh resolution which could capture the detonation propagation with adequate accuracy. In addition, Chapman-Jouguet post-shock equilibrium conditions and the ZND detonation structure for the present gas mixture were examined by chemical kinetics calculations. The CFD simulation results were compared to the test results and the Chapman-Jouguet post-shock conditions. It was observed that the computational results differ from the C-J results with the CJ velocity being slightly exceeded. The model parameter study showed that it is not possible to significantly affect the flame propagation by adjusting the model parameters.
机译:在严重的事故管理中,预测由氢燃烧引起的压力和热负荷的能力是重要的,因为它们可能会威胁到完整性。在计算建模中,必须考虑不同的燃烧制度,并开发用于可靠分析的最先进的技术。在本研究中,重点是在爆轰方案中的反应流的计算流体动力学代码验证。通过使用CEA和IRSN(法国)开发的TONUS CFD代码中实施的气体爆炸模型进行了模拟在桑迪亚国家实验室进行的火焰氢燃烧试验F-19。在该模型中,求解反应欧拉方程,并通过Arrhenius全局速率方程获得反应速率。运行几种模拟,以检查修改化学模型参数的效果。为了找出可以以足够的精度捕获爆震传播的必要网格分辨率,执行网格融合研究。此外,通过化学动力学计算,检查了Chapman-Jouguet后休克平衡条件和本气体混合物的ZnD爆轰结构。 CFD仿真结果与测试结果和查普曼 - jouguet后休克条件进行了比较。观察到计算结果与C-J的结果不同,CJ速度略微超过。模型参数研究表明,通过调整模型参数,不可能显着影响火焰传播。

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