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Oscillatory Flows Induced by Direct Contact Condensation of Flowing Steam with Injected Water

机译:流动蒸汽与注入水的直接接触冷凝引起的振荡流

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When subcooled water in accumulator tanks is injected during a loss-of-coolant accident of a pressurized water reactor, violent condensation takes place in cold legs because of direct contact of flowing steam with the injected water. An experiment is performed to determine the condensation and mixing processes of steam and water under oscillatory conditions. The observed flow patterns are classified into three groups and boundaries of these flow patterns are correlated in terms of the condensability of the injected water. The mutual relation of the condensation phenomena to the mixing behavior of steam with water are studied by applying synchronous measurements of pressures to flow observation with high speed movie. The test results confirm that the condensation is a driving force to produce the restoring force to the plugging water motion. Good consistency is observed between the condensation efficiency and the mixing pattern of steam with water. A correlation for the oscillation period is developed which agrees with test data within an error of ±20%. The correlation shows that the oscillation period is proportional to the square root of the plugging water mass.
机译:在压水堆失水事故中注入储罐中的过冷水时,由于流动的蒸汽与注入的水直接接触,在冷段发生剧烈冷凝。进行实验以确定在振荡条件下蒸汽和水的冷凝和混合过程。观察到的水流模式分为三类,这些水流的边界在注入水的冷凝性方面是相关的。通过将压力的同步测量应用于高速电影的流动观测,研究了冷凝现象与蒸汽与水的混合行为之间的相互关系。测试结果证实,凝结是驱动力,以产生对堵塞水运动的恢复力。在冷凝效率和蒸汽与水的混合方式之间观察到良好的一致性。建立了振荡周期的相关性,该相关性与测试数据一致,误差在±20%之内。相关性表明,振荡周期与堵塞水团的平方根成正比。

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