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Pressure dependence of dryout in a heat-generating porous debris bed

机译:干沟在发热多孔碎片床中的压力依赖性

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The primary objective of this work is to numerically study the effect of system pressure on the occurrence of dryout phenomena in heap-shaped, heat-generating porous debris beds. This is achieved using a multiphase computational fluid dynamics (CFD) model that is implemented in the framework of the commercial CFD platform ANSYS FLUENT. The model is extensively validated with available experimental data on two different aspects: pressure drop in two-phase flow through porous media and prediction of dryout in typical porous debris beds. A wide range of system pressure, relevant to severe accident conditions, is considered in this analysis in order to obtain a thorough understanding of its impact on multiphase flow and dryout occurrence in porous debris beds. This analysis is performed for different subcoolings of flooding water, which gives additional knowledge on the effects of coolant subcooling on dryout occurrence. Results indicate that dryout in debris beds occurs at progressively higher power densities as the system pressure is raised. Similar effects are observed with increase in liquid subcooling as well.
机译:这项工作的主要目的是在数值上研究系统压力对堆成型,发热多孔多孔碎片床上干沟现象的发生的影响。这是通过在商业CFD平台ANSYS流畅的框架中实现的多相计算流体动力学(CFD)模型来实现的。该模型广泛验证有关两个不同方面的可用实验数据:通过多孔介质通过多孔介质和典型多孔碎片床中的干沟预测的两相流压降。在该分析中考虑了与严重事故条件相关的广泛的系统压力,以便彻底了解其对多孔碎片床上的影响多相流量和干扰发生的影响。对水淹水的不同过冷进行该分析,这对冷却剂过冷在干沟发生的影响提供了额外的知识。结果表明,随着系统压力升高,在逐步更高的功率密度下发生干扰。随着液体过冷的增加,观察到类似的效果。

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