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Study on pressure surge characteristics of reactor coolant pump shaft stuck accident condition based on wavelet analysis
Qu, Zehui; Li, Yibin; Pan, Jun; Li, Donghao; Yang, Congxin; Wang, Xiuyong; Guo, Yanlei
刊名Nuclear Engineering and Design
2022-10-01
卷号397
关键词Accidents Coolants Fluid structure interaction Impellers Pressure vessels Steam generators Timing circuits Vortex flow Wavelet analysis Closed systems Flow passage Guide-vane Pressure surges Primary circuits Pump shafts Reactor coolant pumps Reactor primary circuit closed system Shaft stick accident Wavelet-analysis
ISSN号0029-5493
DOI10.1016/j.nucengdes.2022.111921
英文摘要In order to study the internal transient pressure surge law of the reactor coolant pump (RCP) during the shaft stuck transition. Based on HPR1000 reactor primary circuit closed system (RPCCS), the steam generator tube bundle area and the reactor pressure vessel core area are simplified. The hydraulic characteristics of the RCP can be matched with the resistance characteristics of the system pipeline. The transient numerical calculation of the RCP shaft stuck transition process is carried out by establishing a three-dimensional simplified model of RPCCS. The pressure surge characteristics of each monitoring point in the impeller, guide vane and volute passage under different shaft stuck mass flow periods (TQi) are obtained. The collected transient pressure surge data is analyzed by wavelet transform method (WTM). The results show that: in the stable operation state, the wavelet intensity value in the high frequency band in each flow passage change periodically and alternately. During the process of shaft stuck transition, the demarcation point (TN0) is taken when the impeller speed just drops to 0 r/min. The pressure of each monitoring point in the flow passage reaches the extreme value at this point, and then gradually tends to the reference pressure of 15.5 MPa. The regularity of high-band wavelet response in each flow passage of the RCP is gradually destroyed. Taking TN0 as the demarcation point, the low-band wavelet response firstly increases and then decreases. And the low-band wavelet response in the guide vane passage is generally higher than that in other flow passages at the same time. In this process, there is significantly different in the vortex structures on both sides of the impeller blade. The high vorticity magnitude regions appear in the impeller passage on the side of the blade working surface and in the guide vane passage. In this paper, by revealing the time–frequency characteristics of pressure surge in the RCP under shaft stuck accident (SSA), which provides a certain support for the dynamic safety evaluation of the reactor hydrodynamic system. © 2022 Elsevier B.V.
语种英语
出版者Elsevier Ltd
内容类型期刊论文
源URL[http://ir.lut.edu.cn/handle/2XXMBERH/159749]  
专题能源与动力工程学院
作者单位School of Energy and Power Engineering, Lanzhou University of Technology, NO.36 Pengjiaping Road, Qilihe District, Lanzhou; 730050, China
推荐引用方式
GB/T 7714
Qu, Zehui,Li, Yibin,Pan, Jun,et al. Study on pressure surge characteristics of reactor coolant pump shaft stuck accident condition based on wavelet analysis[J]. Nuclear Engineering and Design,2022,397.
APA Qu, Zehui.,Li, Yibin.,Pan, Jun.,Li, Donghao.,Yang, Congxin.,...&Guo, Yanlei.(2022).Study on pressure surge characteristics of reactor coolant pump shaft stuck accident condition based on wavelet analysis.Nuclear Engineering and Design,397.
MLA Qu, Zehui,et al."Study on pressure surge characteristics of reactor coolant pump shaft stuck accident condition based on wavelet analysis".Nuclear Engineering and Design 397(2022).
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