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Three-dimensional CFD analysis of hydrogen-air-steam explosions in APR1400 containment

机译:APR1400安全壳中氢-空气-蒸汽爆炸的三维CFD分析

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The present study concerns the three-dimensional CFD analysis of hydrogen explosions in APR1400 containment. Initial conditions for combustion simulations are obtained by a cost-effective coupling with a lumped parameter code for preceding mixture distribution analysis. Three severe accident scenarios are examined: Small-Break Loss-Of-Coolant Accident (SB-LOCA) and Station Black-Out (SBO) with activated as well as deactivated three-way valve. Only in the last case, thermal ignition of the hydrogen-air-steam mixture could be triggered. Flame propagation in the containment and particularly in the In-containment Refueling Water Storage Tank (IRWST) is investigated in detail. Additional generic scenarios demonstrate the methods ability to reproduce strong Flame Acceleration (FA) and even the hazardous Deflagration-toDetonation Transition (DDT). (C) 2017 Elsevier B.V. All rights reserved.
机译:本研究涉及APR1400安全壳中氢爆炸的三维CFD分析。燃烧模拟的初始条件是通过具有成本效益的耦合,以及用于先前混合物分布分析的集总参数代码获得的。研究了三种严重的事故情况:小断口冷却水事故(SB-LOCA)和启用和停用三通阀的站停电(SBO)。仅在最后一种情况下,才可以触发氢-空气-蒸汽混合物的热点火。详细研究了火焰在安全壳内,特别是在安全壳内加油储水罐(IRWST)中的传播。其他通用方案演示了该方法具有强大的火焰加速(FA)甚至危险的爆燃-起爆过渡(DDT)的能力。 (C)2017 Elsevier B.V.保留所有权利。

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