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Numerical analysis and visualization experiment on behavior of borated water during MSLB with RCP running mode in an advanced reactor

机译:先进反应堆RCP运行模式下MSLB过程中含硼水行为的数值分析和可视化实验

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The core bypass phenomenon of borated water injected through direct vessel injection (DVI) nozzles in APR1400 (Advanced Power Reactor 1400MWe) during main steam line break (MSLB) accidents with a reactor coolant pump (RCP) running mode has been simulated using a two-channel and one-dimensional system analysis model code (MARS), and a three-dimensional computational fluid dynamics (CFD) code (FLUENT). A visualization experiment has also been performed using a scaled-down model of the APR1400. The MARS analysis has predicted a serious core bypass phenomenon of borated water, while the CFD analysis has shown results opposite to the MARS results. The CFD analysis has shown that the flow pattern in the downcomer is fully three-dimensional and that vortex flow structures are formed near the cold legs so that the borated water might pass without difficulty into the high flow region of the cold legs and flow well into the lower downcomer. The visualization experiment has shown that the borated water flows well to the lower plenum, as in the CFD analysis. Both the CFD analysis and visualization experiment have proved that a serious core bypass phenomenon of borated water might not happen in the APR 1400. These results are quite different from those predicted by MARS.
机译:在反应堆冷却剂泵(RCP)运行模式下发生主蒸汽管线破裂(MSLB)事故期间,通过APR1400(先进功率反应堆1400MWe)的直接容器注入(DVI)喷嘴注入的硼酸水的核心旁路现象已通过以下两种方式进行模拟:通道和一维系统分析模型代码(MARS),以及三维计算流体动力学(CFD)代码(FLUENT)。还使用APR1400的缩小模型进行了可视化实验。 MARS分析已预测出硼酸水的严重岩心旁路现象,而CFD分析显示出与MARS结果相反的结果。 CFD分析表明,降液管中的流型完全是三维的,涡流结构在冷段附近形成,因此硼酸化的水可以毫无困难地进入冷段的高流量区域并很好地流入下导管。可视化实验表明,与CFD分析一样,硼酸化的水很好地流到下气室。 CFD分析和可视化实验都证明,APR 1400可能不会发生严重的硼酸水核心旁路现象。这些结果与MARS预测的结果有很大不同。

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