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NUMERICAL ANALYSIS OF HEAT TRANSFER PHENOMENA WHEN MITIGATING SEVERE ACCIDENT WITH EXTERNAL REACTOR VESSEL FLOODING

机译:外部反应器容器溢流缓和严重事故时传热现象的数值分析

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The concept of in-vessel retention (IVR) is the stabilization of the reactor pressure vessel (RPV) by cooling the outside vessel wall with water in a severe accident. This study offers detailed information on complex thermal hydrodynamic phenomena, including boiling and two-phase flows when external reactor vessel cooling through flooding of the RPV occurs. The thermal hydrodynamic phenomena in an external reactor vessel are simulated using a computational fluid dynamics (CFD) technique with a phase change heat/mass transfer approach for boiling and the volume of fluid (VOF) approach for two-phase flows. The simulation results give a better understanding of the heat transfer from molten corium to the coolant outside the vessel and of the natural circulation mechanism of cooling water, boiling, and two-phase flows in this system. Also, this study provides quantitative data, such as heat flux, natural circulation flow rates, and heat transfer coefficients at various cooling water temperatures.
机译:容器内滞留(IVR)的概念是在严重事故中通过用水冷却容器外部壁来稳定反应堆压力容器(RPV)。这项研究提供了有关复杂热流体动力学现象的详细信息,包括当RPV溢流发生外部反应堆容器冷却时的沸腾和两相流动。使用计算流体力学(CFD)技术模拟外部反应堆容器中的热流体动力学现象,该技术采用用于沸腾的相变传热/传质方法和用于两相流的流体体积(VOF)方法。模拟结果更好地理解了从熔融皮质到容器外部的冷却剂的热传递以及该系统中冷却水,沸腾和两相流动的自然循环机理。此外,这项研究还提供了定量数据,例如各种冷却水温度下的热通量,自然循环流量和传热系数。

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