Method for Recognizing Kinetic Parameters of Rotor by Transient Vibration Response During Starting Process[J]. 2016, 50(7): 1-6.
DOI:
Method for Recognizing Kinetic Parameters of Rotor by Transient Vibration Response During Starting Process[J]. 2016, 50(7): 1-6.DOI: 10.7652/xjtuxb201607001.
Method for Recognizing Kinetic Parameters of Rotor by Transient Vibration Response During Starting Process
Analyzing the compositions of the vibration response signals of rotor system during starting process and the cause of beat vibration phenomenon in vibration response signal
one transient vibration response of starting process based identification method for rotor kinetic parameters in time domain is proposed. Here unbalanced vibration response signal during starting process is considered to identify the natural frequency and damping parameters of rotor system instead of sine sweep vibration response signal in frequency domain parameter identification method. The rule of parameter estimation is given and the first-order natural frequencies and ratios of damping of rotor systems is estimated by both simulated and experimental response signals during starting process. The proposed method for parameter identification only needs the vibration response signals of rotor during the starting process in time domain
HUANG Wenhu, SHAO Chengxun. A method for identification of vibration parameters from the time-domain [J]. Journal of Vibration and Shock, 1982(1): 43-53.
HUANG Wenhu, SHAO Chengxun, LIU Hua, et al. The developments and predictions in modern parameter identification of vibrating system [J]. Journal of Applied Mechanics, 1985, 2(3): 69-82, 100.
IBRAHIM S R. A time-domain modal vibration test technique [J]. The Shock and Vibration Bulletin, 1973, 43(4): 21-37.
IBRAHIM S R. The experimental determination of vibration parameters from time responses [J]. The Shock and Vibration Bulletin, 1976, 46(5): 187-196.
IBRAHIM S R. A method for direct identification of vibration parameters from the free response [J]. The Shock and Vibration Bulletin, 1977, 47(4): 183-198.
SMITH W R. Least squares time domain method for simultaneous identification of vibration parameters from multiple free response records [C]∥AIAA/ASME/ASCE/AHS 22nd SDM Conference. Reno, NV, USA: AIAA, 1981: 194-201.
IBRAHIM S R. The use of random decrement technique for identification of structural modes of vibration [J]. Journal of Spacecraft and Rockets, 1977, 14(11): 696-700.
NIE Xueyuan, DING Hua. Discussion on modal parameter identification method based on random decrement technique [J]. Journal of Machine Design, 2012, 29(8): 1-4.
LI Hui, ZHOU Jing, DU Yongfeng, et al. Parameter identification and finite element analysis based on stochastic subspace method [J]. Low Temperature Architecture Technology, 2008, 125(5): 44-48.
XIONG Wanli, WEN Bangchun, DUAN Zhishan. Characteristics of amplitude decreasing and resonance band delaying in transient processes of rotor systems [J]. Journal of Vibration and Shock, 1999, 18(4): 12-15, 89.
ZHU Xiangzhe. Finite element analysis of transient imbalance response for a rotor-bearing system during start-up [J]. Oil Field Equipment, 2007, 36(8): 14-17.[15] 缪红燕, 高金吉, 徐鸿. 转子系统瞬态不平衡响应的有限元分析 [J]. 振动与冲击, 2004, 23(3): 1-4, 20.
MIAO Hongyan, GAO Jinji, XU Hong. Transient response of unbalanced rotor system through its critical speed [J]. Journal of Vibration and Shock, 2004, 23(3): 1-4, 20.
YUAN Huiqun, ZHU Xiangzhe, LI Dong, et al. Dynamic characteristics of transient starting up of a rotor system [J]. Journal of Vibration and Shock, 2009, 28(7): 33-38.
XIAO Mingjie, HUANG Jinping, LI Feng. Prediction and analysis to the transient dynamic characteristics of the turbo-pump rotor system based on the transfer matrix method [J]. Journal of Mechanical Strength, 2011, 33(6): 900-906.