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作 者:祝欣慰 颜炳良 Zhu Xinwei;Yan Bingliang(State Nuclear Electric Power Planning Design&Research Institute CO.,LTD.,Beijing,100095,China;Chongqing Chuanyi Control Valve CO.,LTD.,Chongqing,400707,China)
机构地区:[1]国核电力规划设计研究院有限公司,北京100095 [2]重庆川仪调节阀有限公司,重庆400707
出 处:《仪器仪表用户》2020年第2期34-38,共5页Instrumentation
基 金:大型先进压水堆常规岛热力系统关键阀门国产化研究(2019ZX06002026)
摘 要:由于其所在管系的工艺系统特点,核电机组给水泵最小流量阀内工质很容易产生空化现象。对最小流量阀空化产生的原理进行了分析,并对某核电机组给水泵最小流量阀高低位两种布置方式进行了介绍,通过建模对两种布置方式下最小流量阀运行参数进行了计算。针对该核电机组研制的一种多级迷宫式最小流量阀,分别对两种布置方式进行了阀内流场的数值模拟计算。结果表明,低位布置可以使最小流量阀后压力提高。阀后压力的提高加上迷宫式节流槽分级降压作用,可以消除最小流量阀的空化产生。For the characteristics of the process system, cavitation of water in feedwater pump recirculation valve in nuclear power plant can easily occur. The paper analyzes the theory of cavitation in feedwater pump recirculation valve. The paper introduces two arrangements of feedwater pump recirculation valve in a nuclear power plant which are high and low arrangements. The operation parameters of recirculation valve are calculated by establishing hydrodynamic model of recirculating pipeline for two arrangements of valve. Numerical simulation of flow field in a same multistage labyrinth recirculation valve which is developed for this nuclear power plant is done for two different arrangements.The results show that outlet pressure of valve in low arrangement is higher than that in high arrangement. With the increase of outlet pressure and multistage pressure drop of labyrinth throttling grooves, cavitation in feedwater pump recirculation valve can be eliminated.
分 类 号:TM623[电气工程—电力系统及自动化]
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