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Experimental research on characteristics of condensation induced water hammer in natural circulation systems

机译:天然循环系统凝结诱导水锤特性的实验研究

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摘要

Condensation induced water hammer (CIWH) is a common phenomenon possibly appearing in industrial pipelines, which may cause pipeline oscillation and even serious damage to the components. Previous research on the CIWH mostly focuses on the steam-water counterflow under forced flow conditions. For new floating nuclear power plants proposed recently, the CIWH may occur in some passive natural circulation safety systems. Nevertheless, the CIWH in natural circulation systems (NCS) has never been reported publicly yet. In this paper, a series of experiments are performed to investigate the flow characteristics during the CIWH in a NCS. The basic flow and temperature characteristics of the CIWH caused by counterflow of saturated steam-water mixtures and subcooled water in the NCS are studied in detail. Thereinto, the steam condensation induced flashing (SCIF) along with CIWH is firstly observed and analyzed. Moreover, the influences of CIWH on the flow behavior of the system are discussed under natural circulation and forced circulation conditions. The experimental results indicate that the occurrence of CIWH can result in further reverse flow of the subcooled water, which causes a sudden decrease in the flow rate of NCS. Moreover, the flow rate is more unstable under natural circulation than under forced flow.
机译:冷凝诱导的水锤(CIWH)是一种常见的现象,可能出现在工业管道中,这可能导致管道振荡甚至对部件造成严重损坏。以前关于CIWH的研究大多专注于强制流动条件下的蒸汽逆流。对于最近提出的新浮动核电站,CIWH可能发生在一些被动天然循环安全系统中。尽管如此,自然循环系统(NCS)中的CIWH尚未公开报告。在本文中,进行一系列实验以研究NCS中CIWH期间的流动特性。详细研究了NCS中饱和蒸汽混合物逆流引起的CIWH的基本流动和温度特性。其中,首先观察并分析蒸汽冷凝诱导闪烁(SCIF)以及CIWh。此外,在天然循环和强制循环条件下讨论了CIWH对系统流动行为的影响。实验结果表明,CIWH的发生可能导致过冷水的进一步反向流动,这导致NCS的流速突然下降。此外,在自然循环下的流速比强制流动更不稳定。

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