双扰动条件下水轮机竖向振动传导功率流分析

许新勇1, 职保平2,3,蒋莉1,3, 吴珊珊1

振动与冲击 ›› 2016, Vol. 35 ›› Issue (21) : 63-68.

PDF(1056 KB)
PDF(1056 KB)
振动与冲击 ›› 2016, Vol. 35 ›› Issue (21) : 63-68.
论文

双扰动条件下水轮机竖向振动传导功率流分析

  • 许新勇1, 职保平2,3,蒋莉1,3, 吴珊珊1
作者信息 +

Power flow analysis of vertical vibration of the water turbine under the condition of double disturbances

  •  XU Xin-yong 1   ZHI Bao-ping 2 3  JIANG Li 1 3  WU Shan-shan 1
Author information +
文章历史 +

摘要

为分析水电站实际振动的复杂扰动对结构动力特性的影响,本文在单扰动分析的基础上,结合功率流、Kronecker代数、Hadamard积及随机摄动理论,推导了双扰动条件下的功率流随机参数结构分析方法,并应用于水电站竖向振动传导分析。通过水电站厂房结构振动分析表明,双扰动分析方法的结果是正确的,可分析各参数扰动对能量传导率的灵敏度问题。据此可更全面的分析水电站竖向振动的传递路径,同时为解决复杂扰动的水电站振动传递路径系统分析提供一种新的解决思路。

Abstract

The purpose of this work is to analyze the effect of structure parameter disturbance on the dynamic characteristics of an practical vibration hydropower station powerhouse. This research deduces the power flow analysis method of random parameter structure under double disturbances. The research uses the analysis of single disturbance, combined with the power flow, Kronecker algebra, Hadamard product and random perturbation theory. The application of the stochastic perturbation method is expanded. The correctness and feasibility of these formulae are validated by analyzing the hydropower station powerhouse vibration model. The study provides another way to accurately analyze the transfer paths of vertical vibration in hydropower stations.

关键词

双扰动 / 功率流 / 随机参数结构 / 传导路径 / 水电站

Key words

dual disturbances / power flow / stochastic perturbation method / transfer path / hydropower station;

引用本文

导出引用
许新勇1, 职保平2,3,蒋莉1,3, 吴珊珊1. 双扰动条件下水轮机竖向振动传导功率流分析[J]. 振动与冲击, 2016, 35(21): 63-68
XU Xin-yong 1 ZHI Bao-ping 2 3 JIANG Li 1 3 WU Shan-shan 1. Power flow analysis of vertical vibration of the water turbine under the condition of double disturbances[J]. Journal of Vibration and Shock, 2016, 35(21): 63-68

参考文献

[1] H G D Goyder,R G W. Vibration Power Flow partⅠandⅡ [J]. Journal of Sound and Vibration.1980.68:59-75.
[2] J L Wohlever,R J Bemhard. Mechanical Energy Flow Models of Rods and Beams [J]. Journal of Sound and Vibration. 1992(1).153:1-19.
[3] R J Pinnington , R G White. Power Flow through Isolators to Resonant and Nonresonant Beams [J]. Journal of Sound and Vibration.1981, 75(2):179-197.
[4] G R Pinnington. Vibrational Power Transmission from Finite Source Beam to an Infinite Receiver beam via a Continuous Mount[J]. Journal of Sound and Vibration. 1990.137(1)   117-129.
[5] 殷学文,崔宏飞,顾晓军,黄捷,沈荣瀛.功率流理论、统计能量分析和能量有限元法之间的关联性[J]. 船舶力学, 2007. 11(4): 637-646.
 Xuewen Y, Hongfei C, Xiaojun G, Jie H, Rongying S. Relevancy among power flow theory, statistical energy analysis and energy finite element method [J]. Journal of Ship Mechanics. 2007, 11(4): 637-646. ( in Chinese)
[6] 赵群,张义民,赵晋芳.频域内振动路径的功率流传递度排序[J]. 航空动力学报, 2009(5): 1177-1181.
     Qun Z, Yimin Z, Jinfang Z, Powerflow transfer ratio of vibration path systems in frequency range [J]. Journal of Aerospace Power. 2009(5): 1177-1181. ( in Chinese)
[7] 职保平.基于复杂扰动的水电机组与厂房振动传导研究[D]. 大连,大连理工大学,2014.
Baoping Z. Study of vibration transmission path about hydropower station units and powerhouse with complex disturbance [D], Dalian: Dalian University of Technology, 2014. (in Chinese)
[8] B N Singh, D Yadav , N G R. Iyengar. Natural Frequencies of Composite Plates with Random Material Properties Using Higher-Order Shear Deformation Theory [J]. Int. J. Mech. Sci., 2001, 43, 2193-2214.
[9] T D Popescu.Detection and Diagnosis of Model Parameter and Noise Variance Changes With Application in Seismic Signal Processing [J].Mech. Syst. Sig. Pr., 2011, 25(5), 1598-1616.
[10] J D Kaplunov,E V Nolde ,B F Shorr, A Perturbation Approach for EvaluatingNatural Frequencies of Moderately Thick Elliptic Plates [J].J. Sound Vib., 2005, 281(3-5), 905-919.
[11] M Kamiński. Least Squares Stochastic Boundary Element Method [J]. Eng. Anal. Bound. Elem., 2011, 35(5), 776-784.
[12] M Madani,M Fathizadeh, Y  Khan, A. Yildirim, On the Coupling of the Homotopy Perturbation Method and Laplace Transformation [J]. Math. Comput. Model., 2011, 53(9-10), 1937-1945.
[13] J Ma, W Gao, P Wriggers, T Wu and S Sahraee. The Analyses of Dynamic Response and Reliability of Fuzzy-Random Truss under Stationary Stochastic Excitation [J]. Comput. Mech., 2010, 45(5), 443-455.
[14] W Gao,C M Song,F Tin-Loi. Probabilistic Interval Response and Reliability Analysis of Structures with a Mixture of Random and Interval Properties [J]. Comput. Model. Eng. Sci., 2009, 46(2), 151-189.
[15] B P  Zhi, Z Y  Ma. Disturbance Analysis of Hydropower Station Vertical Vibration Dynamic Characteristics: The Effect of Dual Disturbances [J]. Structural Engineering and Mechanics. 2015, 53(2): 297-309.
[16] B P  Zhi, Z Y  Ma. Path Transmissibility Analysis Considering Two Types of Correlations in Hydropower Stations [J]. Journal of Applied Mathematics, 2013, 802546
[17] 马震岳, 董毓新. 水电站机组及厂房振动的研究与治理[M]. 北京: 中国水利水电出版社. 2004. 34 ~ 35.
Zhenyue M, Yuxin D. Vibration and its Corrective Actions of Water Turbine Generator Set and Power House [M]. Beijing: China Water Power Press. 2004:34-35. ( in Chinese)
[18] 马震岳, 董毓新. 水轮发电机组动力学[M] . 大连:大连理工出版社. 2003. 197 ~ 199.
Zhenyue M, Yuxin D. Dynamics of Water Turbine Generator Set [M]. Dalian: Dalian University of Technology Press. 2003:197-199. ( in Chinese)
[19] 徐伟,马震岳,职保平. 基于功率流理论的大型水电站厂房结构脉动压力频响分析[J]. 水利学报,2012,05:615-622.
Wei X, Zhenyue M, Baoping Z, Analysis on frequency response to pulsating pressure in large hydropower house based on the theory of power flow [J]. ShuiLi XueBao, 2012, 05:615-622. ( in Chinese)
[20] 徐伟,马震岳,职保平. 水压脉动能量传导对水电站厂房墙体影响分析[J]. 水力发电学报,2013,02:233-239
Wei X, Zhenyue M, Baoping Z, Analysis on power flow transmission of pressure fluctuation along the walls of hydropower house [J]. Journal of Hydroelectric Engineering, 2013, 32(2): 233-239. ( in Chinese)
[21] 职保平,马震岳,吴嵌嵌. 考虑顶盖系统的水轮机竖向振动传递路径分析[J]. 水力发电学报,2013,03:241-246.
Baoping Z, Zhenyue M,Qianqian W, Study on transfer paths of vertical vibrations in the head cover system of turbine [J], Journal of Hydroelectric Engineering, 2013, 32(3): 241-246. ( in Chinese)

PDF(1056 KB)

Accesses

Citation

Detail

段落导航
相关文章

/