降低离心泵噪声是一个重要的研究方向。本文对离心泵噪声来源进行了分类评述离心泵噪声主要分为机械噪声和流噪声,着重介绍离心泵流噪声及离心泵系统噪声的研究现状,阐述根据噪声特性开展的延伸应用,以及离心泵研究的发展趋势和热点。离心泵噪声的深入研究,将推动整个泵行业及相关应用行业向更高层次发展。
Reducing the noise of centrifugal pump is an important research direction. The noise sources of centrifugal pumps are classified, mainly including mechanical noise and flow noise. The research status of flow noise and system noise of centrifugal pump is introduced emphatically. Introduced the extended application based on noise characteristics, as well as the development trends and hot spots of centrifugal pump research. Further research on the noise of centrifugal pump will promote the whole pump industry and related application industries to a higher level.
2022,44(7): 7-12 收稿日期:2021-04-16
DOI:10.3404/j.issn.1672-7649.2022.07.002
分类号:TB53;U664.58
作者简介:霍幼文(1966-),男,教授级高级工程师,研究方向为电站泵与特殊泵及系统节能降噪
参考文献:
[1] BOLTON N. Noise generation in pumps[A]. In: Noise in Fluid Machinery[M]. London: ImechE Seminar Publication. March, 1999: 29–44. 2
[2] LANGTHJEM M A, OLHOFF N. A numerical study of flow-induced noise in a two-dimensional centrifugal pump. Part II. Hydroacoustics[J]. Journal of Fluids & Structures, 2004, 19(3): 369–386
[3] 赵威. 离心泵的流噪声数值计算及声优化[D]. 武汉: 华中科技大学, 2013.
[4] 周心一, 吴有生. 流体动力性噪声的相似关系研究[J]. 声学学报, 2002(4): 373–378
ZHOU Xin-yi, WU You-sheng. Study of similarities for fluid-dynamic noise[J]. Acta Acustica, 2002(4): 373–378
[5] 郑雷, 俞荣棠. 国外离心泵噪声的估计方法[J]. 宝钢技术, 1987(1): 61–62
[6] 姚世卫, 杨俊, 张雪冰, 等. 水润滑橡胶轴承振动噪声机理分析与试验研究[J]. 振动与冲击, 2011, 30(2): 214–216
YAO Shi-wei, YANG Jun, ZHANG Xue-bing, et al. Vibration and noise mechanism analysis and tests for water-lubrication rubber bearings[J]. Journal of Vibration and Shock, 2011, 30(2): 214–216
[7] 文宏刚, 丁强民, 刘海山, 等. 基于颗粒阻尼的立式屏蔽泵底座减振技术研究[J]. 中国设备工程, 2019(15): 134–135
[8] IGOR J. KARASSIK, JOSEPH P. Messina, Paul Cooper等. 泵手册[M]. 北 京: 中国石化出版社, 2002.
[9] 袁寿其, 司乔瑞, 薛菲, 等. 离心泵蜗壳内部流动诱导噪声的数值计算[J]. 排灌机械工程学报, 2011, 29(2): 93–98
[10] 刘占生, 刘全忠, 王洪杰. 离心泵变工况流场及叶轮流体激振力研究[J]. 哈尔滨工程大学学报, 2008, 29(12): 1304-1308.
LIU Zhan-sheng, LIU Quan-zhong, WANG Hong-jie. Analysis of off-design flow fields in centrifugal pumps and hydrodynamic forces on impellers. Journal of Harbin Engineering University, 2008, 29(12): 1304-1308.
[11] 杨爱玲, 徐洋, 李国平, 等. 叶片载荷对离心泵内流动激励力及噪声的影响[J]. 排灌机械工程学报, 2014, 32(1): 23–28
[12] 丛国辉, 王福军. 双吸离心泵隔舌区压力脉动特性分析[J]. 农业机械学报, 2008, 39(6): 60–63
[13] 张浩, 冯涛, 刘碧龙, 等. 离心泵流噪声实验研究[J]. 噪声与振动控制, 2013(1):
[14] 司乔瑞, 袁寿其, 袁建平. 叶轮隔舌间隙对离心泵性能和流动噪声影响的试验研究[J]. 振动与冲击, 2016, 35(3): 164–168
SI Qiao-rui, YUAN Shou-qi, YUAN Jian-ping. Experimental study on the influence of impeller-tongue gap on the performance and flow-induced noise characteristics of centrifugal pumps[J]. Journal of Vibration and Shock, 2016, 35(3): 164–168
[15] 司乔瑞, 袁建平, 衡亚光, 等. 蜗壳形状对离心泵流动诱导噪声的影响[J]. 排灌机械工程学报, 2015, 33(3): 209–215
[16] 何涛, 钟荣, 孙玉东. 离心泵水动力噪声计算方法研究[J]. 船舶力学, 2012, 16(4): 449–455
HE Tao, ZHONG Rong, SUN Yu-dong. Numerical method on hydrodynamic noise of centrifugal pump[J]. Journal of Ship Mechanics, 2012, 16(4): 449–455
[17] 吴英友, 邢维升, 朱显明, 等. 某型离心水泵振动特性分析[J]. 中国舰船研究, 2008, 3(1): 51–54
WU Ying-you, XING Wei-seng, ZHU Xian-ming, et al. Study on vibration characteristic of centrifugal pump[J]. Chinese Journal of Ship Research, 2008, 3(1): 51–54
[18] 袁寿其, 薛菲, 袁建平, 等. 离心泵压力脉动对流动噪声影响的试验研究[J]. 排灌机械工程学报, 2009, 27(5): 287–290
[19] 刘厚林, 王勇, 袁寿其, 等. 叶轮出口宽度对离心泵流动诱导振动噪声的影响[J]. 华中科技大学学报自然科学版, 2012, 40(1): 123–127
[20] 王乐勤, 平仕良, 吴大转. 大功率高压离心泵的优化设计[J]. 排灌机械工程学报, 2010, 28(6): 470–473
[21] 牟介刚, 刘剑, 谷云庆, 等. 仿生蜗壳离心泵内部非定常流动特性分析[J]. 浙江大学学报(工学版), 2016, 50(5): 927–933
MOU Jie-gang, LIU Jian, GU Yun-qing, et al. Analysis on unsteady flow characteristics in centrifugal pump with bionic volute[J]. Journal of Zhejiang University (Engineering Science), 2016, 50(5): 927–933
[22] 张瑶, 罗先武. 离心泵叶轮进口前非定常流动研究[J]. 舰船科学技术, 2015, 37(1): 39–44+55
[23] 王欣, 孟根其其格. 中比转速离心泵小流量工况下压力脉动特性[J]. 水力发电, 2018(1): 68–72
[24] 周佩剑, 王福军, 姚志峰. 旋转失速条件下离心泵叶轮压力脉动特性研究[J]. 农业机械学报, 2015(10): 61–66
[25] 黄俊雄, 耿少娟, 吴瑞, 等. 不同叶轮形式下离心泵噪声特性对比研究[J]. 声学学报, 2010, 35(2): 113–118
HUANG Jun-xiong, GENG Shao-juan, Wu Rui, et al. Comparison of noise characteristics in centrifugal pumps with different types of impellers[J]. Chinese Journal of Acoustics, 2010, 35(2): 113–118
[26] 高新民, 陈冰, 吕敬高, 等. 船用离心泵减振降噪分析[J]. 流体机械, 2011, 39(9): 50–53
[27] 黄国富, 常煜, 张海民, 等. 低振动噪声船用离心泵的水力设计[J]. 船舶力学, 2009, 13(2): 313–318
HUANG Guo-fu, CHANG Yu, ZHANG Hai-min, et al. Hydraulic redesign on a marine centrifugal pump for hydro-borne vibration and noise reduction[J]. Journal of Ship Mechanics, 2009, 13(2): 313–318
[28] 龚卫锋, 李兵, 孙卫平, 等. 电动离心泵振动特性试验研究[J]. 流体机械, 2012, 40(4): 10–12
[29] 张德满, 俞健, 邱浩然, 等. 变频调速对离心泵振动的影响研究[J]. 舰船科学技术, 2016, 38(15): 72–75
ZHANG De-man, YU Jian, QIU Hao-ran, et al. Research on the influence of centrifugal pump vibration under different speed-adjustable method[J]. Ship Science and Technology, 2016, 38(15): 72–75
[30] 蒋爱华, 张志谊, 章艺, 等. 离心泵噪声研究的综述和展望[J]. 振动与冲击, 2011, 30(2): 77–84
JIANG Ai-hua, ZHANG Zhi-yi, ZHANG Yi, et al. Review and outlook of studying on noise of centrifugal pumps[J]. Journal of Vibration and Shock, 2011, 30(2): 77–84
[31] 贺小峰, 曾伟, 王学兵, 等. 水压柱塞泵噪声特性的试验研究[J]. 中国机械工程, 2008, 19(2): 160–162
[32] 柯兵, 谢志强. 管路系统声学设计技术的现状及发展趋势[J]. 中国舰船研究, 2008, 3(2): 57–63
KE Bing, XIE Zhi-qiang. A review of acoustical design technologies for shipboard piping system[J]. Chinese Journal of Ship Research, 2008, 3(2): 57–63
[33] 夏极, 张阳阳, 潘庆彬. 管路低噪声排水装置设计及试验研究[J]. 舰船科学技术, 2017, 39(1): 90–95
XIA Ji, ZHANG Yang-yang, PAN Qing-bin. Design and testing study of low noise drainage device for pipelines[J]. Ship Science and Technology, 2017, 39(1): 90–95
[34] 李志印, 任凡, 张军军. 风速对管路振动激励影响的试验及分析[J]. 噪声与振动控制, 2013(2): 105–108
LI Zhi-yin, REN Fan, ZHANG Jun-jun. Experimental analysis of vibration excitation effect of airflow velocity on ventilation pipeline[J]. Noise and Vibration Control, 2013(2): 105–108
[35] 周志杰, 沈正帆, 种道彤. 船舶管路阀门阻力系数试验研究[J]. 中国科技论文, 2015(10): 1197–1202
[36] 喻萌. 基于ANSYS的输流管道流固耦合特性分析[J]. 中国舰船研究, 2007, 2(5): 54–57
YU Meng. Analysis on charicterastics of fluid-structure interaction for fluid conveying pipes by ANSYS[J]. Chinese Journal of Ship Research, 2007, 2(5): 54–57
[37] 赵大为, 罗小辉, 杨珍. 一种管路压力脉动抑制装置优化设计及试验分析[J]. 噪声与振动控制, 2014, 34(6): 188–191
ZHAO Da-wei, LUO Xiao-hui, YANG Zhen. Optimal design and testing analysis of a pressure fluctuation suppression device for pipelines[J]. Noise and Vibration Control, 2014, 34(6): 188–191
[38] 沈正帆, 吴声敏, 张瑶, 等. 基于有限元仿真的隔振通舱管件设计[J]. 舰船科学技术, 2013, 35(12): 73–77
SHEN Zheng-fan, WU Sheng-min, ZHANG Yao, et al. Research and design of pipe penetration piece with damping based on FEM[J]. Ship Science and Technology, 2013, 35(12): 73–77
[39] 王勇, 赵大为, 江山, 等. 船舶管路系统弹性隔振试验[J]. 噪声与振动控制, 2013(3): 163–166
[40] 蔡标华, 俞健, 白亚鹤. 舰船系统管路弹性减振设计与试验[J]. 舰船科学技术, 2011, 33(11): 61–64
CAI Biao-hua, YU Jian, BAI Ya-he. Design of elastic damping vibration on warship piping and its testing research[J]. Ship Science and Technology, 2011, 33(11): 61–64
[41] 何钦, 张志山. 变频器谐波的危害及防治[J]. 电机与控制应用, 2012, 39(11): 54–57
[42] 唐剑飞, 王林. 多相异步电机电磁噪声研究[J]. 船电技术, 2012, 32(6): 44–47
TANG Jian-fei, WANG Lin. Research on the Magnetic noise of multiphase induction[J]. Marine Electric & Electronic Engineering, 2012, 32(6): 44–47
[43] 侯立军, 苏彦民, 陈林, 等. 多相感应电机调速系统研究-综述[J]. 机床与液压, 2004(4): 8–12
HOU Lijun, SU Yanmin, CHEN Lin, et al. Multi-phase induction machine drive research - a survey[J]. Machine Tool & Hydraulics, 2004(4): 8–12
[44] 薛诚, 宋文胜, 冯晓云. 五相永磁同步电机多目标优化直接转矩控制算法[J]. 中国电机工程学报, 2016, 36(6): 1695–1704
XUE Cheng, SONG Wen-sheng, FENG Xiao-yun. A direct torque control algorithm of five-phase permanent-magnet machines with multi-objective optimization[J]. Proceedings of the CSEE, 2016, 36(6): 1695–1704
[45] 张文斌, 李兵, 刘会, 等. 离心泵侧向式螺旋形压出室[P]. 上海: CN205478555U, 2016-08-17.
[46] 卢展雄, 刘琼, 王凯, 等. 基于专利地图的国内外多级离心泵技术分析[J]. 排灌机械工程学报, 2017, 35(3): 216–221
[47] 罗兴锜, 吴大转. 泵技术进展与发展趋势[J]. 水力发电学报, 2020, 39(6): 1–17