Depressing the torque vibrations of turbine blades using virtual inertia

被引:5
|
作者
Lin, CH [1 ]
Tsao, TP [1 ]
机构
[1] Kao Yuan Inst Technol, Dept Elect Engn, Lu Chu Hsiang 82101, Kaohsiung Hsen, Taiwan
关键词
mechanical filter; electromechanical analogy; electromagnetic (E/M) torque; torque vibration; turbine blade; inertia;
D O I
10.1016/S0378-7796(01)00189-4
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Based on an electromechanical analogy, a turbine mechanical system can be transferred into an equivalent electrical circuit, allowing a phasor diagram to be used to evaluate the turbine shaft and blade responses to the electromagnetic (E/M) torque disturbance. After investigating six practical large-scale turbine units using frequency scanning, the dynamics of the blades were always found to be sensitive to system frequency excitation. Therefore, a system-frequency mechanical filter was designed and installed in the generator-and-rectifier section of the turbine set. This filter normally operates in a non-resonant state with only a low inertia constant such that the system operation is not affected. Only in the event of a fault, does the filter resonate and produce an extremely large virtual inertia that combined with the generator-rotor inertia to make the turbine system, especially the blades, less responsive to the system-frequency E/M torque disturbance. Using simulations, such a virtual inertia was proven to present excellent performance in improving the blade vibration behaviors. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:23 / 32
页数:10
相关论文
共 50 条
  • [31] VIBRATING BEAM DAMPERS FOR REDUCING VIBRATIONS IN GAS-TURBINE BLADES
    JONES, DIG
    NASHIF, AD
    STARGARDTER, H
    JOURNAL OF ENGINEERING FOR POWER-TRANSACTIONS OF THE ASME, 1975, 97 (01): : 111 - 116
  • [32] Vortex induced vibrations of wind turbine blades: Influence of the tip geometry
    Horcas, S. G.
    Barlas, T.
    Zahle, F.
    Sorensen, N. N.
    PHYSICS OF FLUIDS, 2020, 32 (06)
  • [33] Wind turbine blades biaxial inertia vibration fatigue loading system and control
    Liao, Gaohua
    Wu, Jianzhong
    Zhang, Hao
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2019, 40 (02): : 356 - 362
  • [34] Mitigation of edgewise vibrations in wind turbine blades by means of roller dampers
    Zhang, Zili
    Li, Jie
    Nielsen, Soren R. K.
    Basu, Biswajit
    JOURNAL OF SOUND AND VIBRATION, 2014, 333 (21) : 5283 - 5298
  • [35] Natural vibrations of a uniform cascade of hydraulic-turbine blades in a fluid
    Kurzin V.B.
    Korobeinikov S.N.
    Ryabchenko V.P.
    Tkacheva L.A.
    Journal of Applied Mechanics and Technical Physics, 1997, 38 (2) : 240 - 249
  • [36] Control of flapwise vibrations in wind turbine blades using semi-active tuned mass dampers
    Arrigan, John
    Pakrashi, Vikram
    Basu, Biswajit
    Nagarajaiah, Satish
    STRUCTURAL CONTROL & HEALTH MONITORING, 2011, 18 (08): : 840 - 851
  • [37] VIRTUAL REPAIR: GEOMETRIC RECONSTRUCTION FOR REMANUFACTURING GAS TURBINE BLADES
    Piya, Cecil
    Wilson, J. Michael
    Murugappan, Sundar
    Shin, Yung
    Ramani, Karthik
    PROCEEDINGS OF THE ASME INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, 2011, VOL 9, 2012, : 895 - 904
  • [38] Thermal Analysis of Turbine Blades with Thermal Barrier Coatings Using Virtual Wall Thickness Method
    Liu, Linchuan
    Wu, Jian
    Hu, Zhongwei
    Jin, Xiaochao
    Lu, Pin
    Zhang, Tao
    Fan, Xueling
    CMES-COMPUTER MODELING IN ENGINEERING & SCIENCES, 2023, 134 (02): : 1219 - 1236
  • [39] Evaluating a Virtual Inertia Control Scheme for a DFIG Wind Turbine
    Issac Rosales-Romero, A.
    Sergio Sellschopp-Sanchez, F.
    Vargas-Salas, Ricardo
    Arjona-Lopez, Marco A.
    Loera-Palomo, Rodrigo
    PROCEEDINGS OF THE 2021 XXIII IEEE INTERNATIONAL AUTUMN MEETING ON POWER, ELECTRONICS AND COMPUTING (ROPEC 2021), 2021,
  • [40] Control of PMSG-Based Wind Turbine with Virtual Inertia
    Wang, Xiaobing
    Xie, Zhen
    Chang, Yuyang
    PROCEEDINGS OF THE 2019 14TH IEEE CONFERENCE ON INDUSTRIAL ELECTRONICS AND APPLICATIONS (ICIEA 2019), 2019, : 1302 - 1306