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CFD analysis for thermal mixing in a subcooled water tank under a high steam mass flux discharge condition

机译:高蒸汽量通量排放条件下过冷水箱中热混合的CFD分析

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A Computational Fluid Dynamics (CFD) analysis for a thermal mixing test was performed for 30 s to develop the methodology for a numerical analysis of the thermal mixing between steam and subcooled water and to apply it to Advanced Power Reactor 1400 MWe (APR1400). In the CFD analysis, the steam condensation phenomenon by a direct contact was simulated by the so-called condensation region model. Thermal mixing phenomenon in the subcooled water tank was treated as an incompressible flow, a free surface flow between the air and the water, and a turbulent flow, which are implemented in the CFX4.4. The comparison of the CFD results with the test data showed a good agreement as a whole, but a small local temperature difference was found at some locations. A sensitivity analysis was performed to find the reason of the temperature difference. The commercial CFD code of CFX4.4 together with the condensation region model can simulate the thermal mixing behavior reasonably well when a sufficient number of mesh distributions and a proper numerical method are selected.
机译:进行了30 s的热混合测试的计算流体力学(CFD)分析,以开发用于蒸汽和过冷水之间热混合的数值分析的方法,并将其应用于Advanced Power Reactor 1400 MWe(APR1400)。在CFD分析中,通过所谓的冷凝区域模型来模拟直接接触引起的蒸汽冷凝现象。过冷水箱中的热混合现象被视为不可压缩的流动,空气与水之间的自由表面流动以及湍流,这在CFX4.4中已实现。 CFD结果与测试数据的比较显示出总体上良好的一致性,但是在某些位置发现了较小的局部温差。进行敏感性分析以找出温度差异的原因。当选择足够数量的网格分布和适当的数值方法时,CFX4.4的商业CFD代码和冷凝区域模型可以很好地模拟热混合行为。

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