基于数字信号处理的轴流泵压力脉动试验研究

陆 荣1,袁建平1,李彦军1,付燕霞2,夏水晶1

振动与冲击 ›› 2017, Vol. 36 ›› Issue (20) : 18-22.

PDF(1656 KB)
PDF(1656 KB)
振动与冲击 ›› 2017, Vol. 36 ›› Issue (20) : 18-22.
论文

基于数字信号处理的轴流泵压力脉动试验研究

  • 陆 荣1,袁建平1,李彦军1,付燕霞2,夏水晶1
作者信息 +

Experimental investigation of pressure fluctuation in the axial-flow pump based on digital signal processing

  •  LU Rong1,YUAN Jian-ping1,LI Yan-jun1,FU Yan-xia2,XIA Shui-jing1
Author information +
文章历史 +

摘要

传统电信号压力传感器受电流干扰严重,为准确地获得轴流泵内部压力脉动特性,采用高精度数字压力采集系统对一轴流泵模型的叶轮进口、导叶流道内和导叶出口进行压力测试,试验在包含马鞍区的4个流量工况(0.45Qd、0.8Qd、1.0Qd、1.2Qd)下进行。试验结果表明:在稳定工况(0.8Qd、1.0Qd、1.2Qd)下叶轮进口监测点P1的时域信号为规则的正弦波,脉动周期与叶片通过周期一致;受叶轮与导叶的动静干涉影响,导叶内部P2及出口P3均出现了小峰值的二次谐波。在非稳定工况(0.45Qd)下各点的时域信号均出现较大峰值的二次谐波。通过快速傅里叶变换(FFT)获得了各监测点的频域结果:稳定工况下各监测点的压力脉动主频均为叶频(BPF),从叶轮进口至导叶出口幅值逐渐减小;非稳定工况下由于回流和叶顶泄漏涡等因素的影响,各监测点的频率成分复杂,主频向高频段移动且伴随有较强高频信号,脉动幅值大于其余工况。

Abstract

In order to obtain the accurate characteristics of pressure fluctuation in the axial flow pump, the monitoring points of pressure were set near the impeller inlet, the blade passages and the vane outlet. The test was conducted by applying the high precision digital pressure acquisition system under 4 different flow rates which are 0.45, 0.8, 1.0 and 1.2 of the design flow(Qd), respectively. Time domains of pressure fluctuations show that: under stable conditions (0.8Qd, 1.0Qd, 1.2Qd), the pressure at P1 near the inlet shows a regular waveform with 3 peaks and 3 valleys as time changes, which is associated with the blade number. Due to the interaction between the rotor and stator, the pressure at both P2 and P3 inside the vane shows a second harmonic wave with a lower amplitude. While at 0.45Qd, the pressure of 3 points show a significant second harmonic wave due to the drop of head. Based on Fast Fourier Transform(FFT), the main frequency of all monitors is always the blade passing frequency(BPF) with its amplitude decreasing from the impeller inlet to the vane outlet under stable conditions. However, the unsteady flow like backflow and tip vortex at 0.45Qd lead to the complex frequency components and the main frequency shifted to high frequency segment accompanied by higher amplitude.
 

关键词

轴流泵 / 压力脉动 / 数字信号 / 试验

Key words

axial flow pump / pressure fluctuation / digital signal / experiment

引用本文

导出引用
陆 荣1,袁建平1,李彦军1,付燕霞2,夏水晶1. 基于数字信号处理的轴流泵压力脉动试验研究[J]. 振动与冲击, 2017, 36(20): 18-22
LU Rong1,YUAN Jian-ping1,LI Yan-jun1,FU Yan-xia2,XIA Shui-jing1 . Experimental investigation of pressure fluctuation in the axial-flow pump based on digital signal processing[J]. Journal of Vibration and Shock, 2017, 36(20): 18-22

参考文献

[1] 关醒凡.现代泵理论与设计[M]. 北京: 中国宇航出版社,2011.
[2] 王宏光,徐小龙,杨爱玲,等. 轴流泵流动噪声数值模拟[J]. 排灌机械工程学报,2011, 29(3): 199-203.
Wang Hongguang, Xu Xiaolong, Yang Ailing, et al. Numerical simulation of flow noise in axial-flow pump[J]. Journal of Drainage and Irrigation Machinery Engineering,2011, 29(3): 199-203.
[3] 王松林,谭磊,王玉川. 离心泵瞬态空化流动及压力脉动特性[J]. 振动与冲击,2013, 32(22): 168-173.
Wang Songlin, Tan Lei, Wang Yuchuan. Characteristics of transient cavitation flow and pressure fluctuation for a centrifugal pump[J].Journal of Vibration and Shock, 2013, 32(22): 168-173.
[4] Tan Lei, Zhu Baoshan, Cao Shuliang, et al. Numerical simulation of unsteady cavitation flow in a centrifugal pump at off-design conditions. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2014, 228(11): 1994-2006.
[5] Zhang Desheng, Shi Wei dong, Chen Bin, et al. Unsteady Flow Analysis and Experimental Investigation of Axial-Flow Pump[J]. Journal of Hydrodynamics, 2010, 22(1): 35-43.
[6] 王福军,张玲,张志民. 轴流泵不稳定流场的压力脉动特性研究[J]. 水利学报,2007, 38(8): 1003-1009.
Wang Fujun, Zhang Ling, Zhang Zhimin. Analysis on pressure fluctuation of unsteady flow in axial flow pump[J]. Journal of Hydraulic Engineering, 2007, 38(8): 1003-1009.
[7] Zuo Zhigang, Liu Shuhong, Sun Yuekun, et al. Pressure fluctuations in the vaneless space of High-head pump-turbines-A review[J]. Renewable and Sustainable Energy Reviews, 2015, 41: 965-974.
[8] 谭磊,王玉川,曹树良,等. 离心泵蜗舌区非定常流动特性[J]. 北京理工大学学报,2014(7): 670-675.
Tan Lei, Wang Yuchuan, Cao Shuliang, et al. Characteristic of Unsteady Flow Around the Tongue Region in a Centrifugal Pump[J]. Transactions of Beijing Institute of Technology, 2014(7): 670-675.
[9] 周林玉. 偏离工况下离心泵的压力脉动和振动分析[J]. 流体机械, 2015, 43(2): 52-55.
Zhou Linyu, Analysis on Pressure Fluctuation and Vibration of a Centrifugal Pump for Off-design Conditions[J]. Fluid Machinery, 2015, 43(2): 52-55.
[10] 吴登昊,袁寿其,任芸,等. 管道泵压力脉动及振动的研究[J]. 华中科技大学学报:自然科学版,2013, 41(4): 16-20.
Wu Denghao, Yuan Shouqi, Ren Yun, et al. Pressure pulsation and vibration in in-line circulator pumps[J]. Journal of Huazhong University of Science and Technology(Natural Science Edition), 2013, 41(4): 16-20.
[11] 张德胜,王海宇,施卫东,等. 轴流泵多工况压力脉动特性试验[J]. 农业机械学报,2014, 45(11): 139-145.
Zhang Desheng, Wang Haiyu, Shi Weidong, et al. Experimental Investigation of Pressure Fluctuation with Multiple Flow Rates in Scaled Axial Flow Pump[J]. Transactions of the Chinese Society for Agricultural Machinery, 2014, 45(11): 139-145.
[12] 张德胜,耿琳琳,施卫东,等. 轴流泵水力模型压力脉动和振动特性试验[J]. 农业机械学报,2015, 46(6) 66-72.
Zhang Desheng, Geng LinLin, Shi Weidong, et al. Experimental Investigation on Pressure Fluctuation and Vibration in Axial-flow Pump Model[J]. Transactions of the Chinese Society for Agricultural Machinery, 2015, 46(6): 66-72.
[13] Pan Hong, Bu Minsheng. Pressure fluctuation signal analysis of pump based on ensemble empirical mode decomposition method[J]. Water Science and Engineering, 2014, 25(2): 227-235.
[14] 王鹏,袁寿其,王秀礼,等. 蜗壳不同心度对核主泵瞬态水动力特性研究[J]. 振动与冲,2015, 34(22): 13-18.
Wang Peng, Yuan Shouqi, Wang Xiuli, et al. Volute eccentricity effect on transient dynamic characteristics of nuclear main pump[J]. Journal of Vibration and Shock, 2015, 34(22): 13-18.
[15] 施卫东,徐燕,张启华,等. 多级潜水泵内部压力脉动特性[J]. 排灌机械工程学报,2014, 32(3): 196-201.
Shi Weidong, Xu Yan, Zhang Qihua, et al. Characteristics of pressure pulsation in multi-stage submersible pump[J]. Journal of Drainage and Irrigation Machinery Engineering, 2014, 32(3): 196-201.
[16] 施卫东,姚捷,张德胜,等. 采样频率和时间对轴流泵压力脉动特性的影响[J]. 排灌机械工程学报,2013, 31(3): 190-194.
Shi Weidong, Yao Jie, Zhang Desheng, et al. Influence of sampling frequency and time on pressure fluctuation characteristics of axial-flow pump[J]. Journal of Drainage and Irrigation Machinery Engineering, 2013, 31(3): 190-194.
[17] 王玉川,谭磊,曹树良,等. 离心泵叶轮区瞬态流动及压力脉动特性[J]. 机械工程学报:2014, 50(10): 163-169.
Wang Yuchuan, Tan Lei, Cao Shuliang, et al. Characteristics of Transient Flow and Pressure Fluctuation in Impeller for Centrifugal Pump[J]. Journal of Mechanical Engineering, 2014, 50(10): 163-169.
[18] 袁建平,朱钰雯,周帮伦,等. 余热排出泵内部压力脉动特性分析[J]. 排灌机械工程学报, 2015, 33(6): 475-480.
Yuan Jianping, Zhu Yuwen, Zhou Banglun, et al. Analysis on pressure fluctuation in residual heat removal pumps[J]. Journal of Drainage and Irrigation Machinery Engineering, 2015, 33(6): 475-480.

PDF(1656 KB)

503

Accesses

0

Citation

Detail

段落导航
相关文章

/