Simulation and Experimental Analysis of the Effect of Differential Pressure on the Noise of High-speed Switching Valves
HUANG Hui1,2, LEI Zhenwen1,2, CHEN Shaorong1,2, LI Yuzheng1,2, SU Junshou3
1. College of Mechanical Engineering and Automation, Fuzhou University, Fuzhou 350108; 2. State Key Laboratory of Fluid Power and Electro-hydraulic Intelligent Control in Fujian Province, Fuzhou University, Fuzhou 350108; 3. Xugong State Key Laboratory Technology Co., in Jiangsu Province, Xuzhou 221122
HUANG Hui, LEI Zhenwen, CHEN Shaorong, LI Yuzheng, SU Junshou. Simulation and Experimental Analysis of the Effect of Differential Pressure on the Noise of High-speed Switching Valves[J]. Journal of Mechanical Engineering, 2026, 62(10): 425-436.
[1] 丁凡,姚健娣,笪靖,等. 高速开关阀的研究现状[J]. 中国工程机械学报,2011,9(3):351-358. DING Fan,YAO Jiandi,DA Jing,et al. Research status of high-speed switching valves[J]. China Journal of Construction Machinery,2011,9(3):351-358. [2] 江海兵. 大流量高速开关阀关键技术研究[D]. 杭州:浙江工业大学,2014. JIANG Haibing. Research on key technology of high flow rate and high-speed switching valve[D]. Hangzhou:Zhejiang University of Technology,2014. [3] 刘少军. 高速开关电磁阀的现状及应用[J]. 液压与气动,1995(6):12-14. LIU Shaojun. Status and application of high-speed switching solenoid valves[J]. Hydraulic and Pneumatic,1995(6):12-14. [4] YANG Huayong,PAN Min. Engineering research in fluid power:A review[J]. Journal of Zhejiang University- Science A,2015,16(6):427-442. [5] WANG Feng,GU Linyi,CHEN Ying. A continuously variable hydraulic pressure converter based on high-speed on-off valves[J]. Mechatronics. 2011,21(8):1298-1308. [6] Kajima T,Kawamura Y. Development of a high-speed solenoid valve:Investigation of solenoids[J]. IEEE Transactions on Industrial Electronics,1995,42(1):1-8. [7] WANG He,Chen Zhen,Huang Jiahai,et al. Development of high-speed on-off valves and their applications[J]. Chinese Journal of Mechanical Engineering,2022,35(1):67. [8] GAO Qiang. Investigation on the transient impact characteristics of fast switching valve during excitation stage[J]. Journal of Low Frequency Noise,Vibration and Active Control,2022,41(4):1322-1338. [9] ZHANG Linhua,Wang Junyu,Song Yongxing,et al. Flow-induced noise mechanism and optimization design of electronic expansion valve[J]. Vacuum,2022,204:111335. [10] JIN Haozhe,Zhang Jiongming,Liu Xiaofei,et al. Study on flow-induced noise characteristics of multistage depressurization valve in the nuclear power plant[J]. Nuclear Engineering and Design,2023,407:112282. [11] Filho E S,DE OLIVEIRA L P R,Ribatski G. A state-of-the-art review on two-phase flow-induced noise in expansion devices[J]. Heat Transfer Engineering,2023,44(1):1-23. [12] WANG Guan,DENG Jianfei,KOU Linyuan,et al. Study on the influence of structural parameters on the flow and cavitation characteristics of tandem multi-stage pressure-reducing valves[J]. Flow Measurement and Instrumentation,2022,87:102230. [13] Liu Jingbin,Liu Zhenming,Wu Jiechang,et al. Visualization experiment and numerical calculation of the cavitation evolution inside the injector ball valve[J]. Fuel,2022,329:125500. [14] Semrau S,Skoda R,Wustmann W,et al. Experimental and numerical investigation of noise generation due to acoustic resonance in a cavitating valve[J]. Journal of Sound and Vibration,2019,463:114956. [15] Zhang Guang,Wu Zeyong,Wu Kexin,et al. Effect of the opening of a butterfly valve on the dynamic evolution of cavitation[J]. Journal of Mechanical Science and Technology,2022,36(7):3457-3467. [16] Youn C,Asano S,Kawashima K,et al. Flow characteristics of pressure reducing valve with radial slit structure for low noise[J]. Journal of Visualization,2008,11(4):357-364. [17] YI Dayun,LU Liang,Zou Jun,et al. Squeal noise in hydraulic poppet valves[J]. Journal of Zhejiang University-Science A,2016,17(4):317-324. [18] LI Jingxiang,ZHAO Shengdun. Optimization of valve opening process for the suppression of impulse exhaust noise[J]. Journal of Sound and Vibration,2017,389:24-40. [19] ZHANG Jin,YANG Qifan,LÜ Ruiqi,et al. Research on noise generation mechanism and noise reduction ball valve measures of ball valve[J]. IEEE Access,2020,8:15973-15982. [20] LI Shuxun,HOU Jianjun,PAN Weiliang,et al. Study on aerodynamic noise numerical simulation and characteristics of safety valve based on dipole and quadrupole[J]. Acoustics Australia,2020,48:441-454. [21] REN Yukai,YAN Hao,CAI Cunkun. Numerical study on flow-induced noise of deflector jet servo valve based on LES/Lighthill hybrid method[J]. Shock and Vibration,2022,2022:1-17. [22] Ariyadi H M,Jeong J,Saito K. Computational analysis of hydrogen flow and aerodynamic noise emission in a solenoid valve during fast-charging to fuel cell automobiles[J]. Journal of Energy Storage,2022,45:103661. [23] 臧恒波,卢佳鑫,周杰. 新型止回阀稳态噪声特性分析[J]. 热能动力工程,2019,34(8):142-146. ZANG Hengbo,LU Jiaxin,ZHOU Jie. Steady-state noise characterization of a new type of check valve[J]. Thermal Power Engineering,2019,34(8):142-146. [24] 周爱民,段晨,余涛,等. 船用海水调节阀声学性能的仿真预测与试验研究[J]. 流体机械,2017,45(1):15-19. ZHOU Aimin,DUAN Chen,YU Tao,et al. Simulation prediction and experimental study of acoustic performance of marine seawater control valve[J]. Fluid Machinery,2017,45(1):15-19. [25] KUSHIYAMA T,INOUE H,SATO F. Collision velocity of a needle with its seat in a fuel injection valve[J]. Bulletin of JSME,1967,10(40):688-700. [26] GU F,BALL A D. Diesel injector dynamic modelling and estimation of injection parameters from impact response part 1:Modelling and analysis of injector impacts[J]. ARCHIVE:Proceedings of the Institution of Mechanical Engineers,Part D:Journal of Automobile Engineering,1996,210(4):293-302. [27] GU F,BALL A D,RAO K K. Diesel injector dynamic modelling and estimation of injection parameters from impact response part 2:Prediction of injection parameters from monitored vibration[J]. ARCHIVE:Proceedings of the Institution of Mechanical Engineers,Part D:Journal of Automobile Engineering,1996,210(4):303-312. [28] 王年生. 考虑能耗和动态特性的高速开关阀热优化研究[D]. 福州:福州大学,2023. WANG Niansheng. Research on thermal optimization of high-speed switching valve considering energy consumption and dynamic characteristics[D]. Fuzhou:Fuzhou University,2023. [29] 中国国家标准化管理委员会. GB/T 6882—2016消声室和半消声室精密法[S]. 北京:中国国家标准出版社,2016. National Standardization Administration of China. GB/T 6882-2016 Precision method for anechoic and semi-anechoic chambers[S]. Beijing:China National Standard Press,2016. [30] 中国国家标准化管理委员会. GB/T 3768—2017采用反射面上方包络测量面的简易法[S]. 北京:中国国家标准出版社,2017. National Standardization Administration of China. GB/T 3768—2017 Simple method of measuring surfaces using envelopes above reflective surfaces[S]. Beijing:China National Standard Press,2017.