首页> 外文会议>International conference on nuclear engineering >EXPERIMENTAL INVESTIGATION ON THE THERMAL AND FLOW CHARACTERISTICS IN THE IRWST UNDER SPRAYING OF THE STEAM FROM AUTOMATIC DEPRESSURIZATION SYSTEM IN AP1000 PLANT
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EXPERIMENTAL INVESTIGATION ON THE THERMAL AND FLOW CHARACTERISTICS IN THE IRWST UNDER SPRAYING OF THE STEAM FROM AUTOMATIC DEPRESSURIZATION SYSTEM IN AP1000 PLANT

机译:AP1000工厂自动降压系统喷蒸汽时IRWST热流流动特性的实验研究。

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In AP1000 plant, the automatic depressurization system (ADS) works to discharge the high-temperature and high-pressure steam from the Reactor Coolant System (RCS) primary side to the In-containment Refueling Water Storage Tank (IRWST) in the LOCA conditions. In particular, for the AP1000 plant, both the IRWST and ADS spargers are specially designed, and the ADS spargers are located in one corner of the IRWST. All the factors lead to the special and complicated thermal and flow behavior in the IRWST, which in turn have great influences on the condensation effects of the ejected steam. In the present work, an overall scaled-down IRWST and ADS sparger models are built to study the condensation and mixing phenomena in the accidental depressurization events in AP1000. Thermocouples matrix with more than 200 T-type sheathed thermocouples are utilized to measure the three dimensional temperature in the large tank. The Particle Image Velocimetry (PIV) is employed for the measurement of the natural convection flow velocity. Based on the experimental data, the local spraying flow patterns, flow behavior, and thermal stratification phenomena in IRWST etc. are analyzed. The results indicate that the spraying steam condensation flow patterns are closely related to the subcooling degree in the IRWST. In addition, the stratification number is developed to evaluate the thermal stratification extent in the IRWST, which indicates that only part of the fluid are used efficiently for condensing the spraying steam directly.
机译:在AP1000工厂中,自动降压系统(ADS)的工作是在LOCA条件下,将反应堆冷却剂系统(RCS)初级侧的高温高压蒸汽排入盛装加油的储水罐(IRWST)。特别是对于AP1000工厂,IRWST和ADS喷射器都是经过特殊设计的,而ADS喷射器则位于IRWST的一个角落。所有这些因素导致IRWST的特殊和复杂的热和流动行为,进而又对喷射的蒸汽的冷凝效果产生很大的影响。在当前工作中,建立了按比例缩小的IRWST和ADS分布器模型,以研究AP1000意外降压事件中的冷凝和混合现象。具有200多个T型护套热电偶的热电偶矩阵用于测量大型水箱中的三维温度。粒子图像测速(PIV)用于自然对流流速的测量。根据实验数据,分析了IRWST等中的局部喷射流型,流动行为和热分层现象。结果表明,IRWST中的喷雾蒸汽冷凝水流型与过冷度密切相关。另外,通过计算分层数来评估IRWST中的热分层程度,这表明只有部分流体被有效地用于直接冷凝喷射蒸汽。

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