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Loop Analysis Of A Natural Circulation Two-phase Flow Under An External Reactor Vessel Cooling

机译:外部反应堆容器冷却下自然循环两相流的回路分析

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Under ERVC (External Reactor Vessel Cooling) conditions in a severe accident, a natural circulation two-phase flow is driven and a decay heat from the reactor vessel wall can be removed for an integrity of a reactor vessel wall. In this study, to estimate a natural circulation mass flow rate and to analyze the major factor determining the natural circulation mass flow rate, a loop analysis using the drift flux model was carried out and the calculation results were compared with experimental ones. From the results, the calculated circulation mass flow rate was similar to the experimental results within about a 15% error bound. And it is estimated that the shape factor of the coolant inlet and outlet is dominant for the calculation of the natural circulation mass flow rate and that a modeling of the coolant inlet and outlet should be improved to predict an accurate natural circulation mass flow rate.
机译:在严重事故中的ERVC(外部反应堆容器冷却)条件下,会驱动自然循环两相流,并且可以除去反应堆容器壁的衰减热,以确保反应堆容器壁的完整性。在这项研究中,为了估算自然循环质量流量并分析决定自然循环质量流量的主要因素,使用漂移通量模型进行了环路分析,并将计算结果与实验结果进行了比较。从结果来看,在约15%的误差范围内,计算出的循环质量流速与实验结果相似。并且估计,冷却剂入口和出口的形状因子对于自然循环质量流量的计算是主要的,并且应该改进冷却剂入口和出口的模型以预测准确的自然循环质量流量。

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