Numerical studies of the hydrodynamic damping of a vibrating hydrofoil in torsional mode

被引:0
|
作者
Yong-shun Zeng
Zhi-feng Yao
Biao Huang
Fu-jun Wang
Qin Wu
Ruo-fu Xiao
Guo-yu Wang
机构
[1] China Agricultural University,College of Water Resources and Civil Engineering
[2] Beijing Engineering Research Center of Safety and Energy Saving Technology for Water Supply Network System,School of Mechanical and Vehicular Engineering
[3] Beijing Institute of Technology,undefined
来源
Journal of Hydrodynamics | 2021年 / 33卷
关键词
Torsional mode; hydrodynamic damping; added mass; hydrofoil; Donaldson trailing edge;
D O I
暂无
中图分类号
学科分类号
摘要
The vortex-induced vibration may lead to a premature failure of hydraulic mechanical systems, especially under the resonance condition in the torsional mode. To predict the structural fatigue life, a careful consideration of the dynamic response to the hydraulic excitations is essential in the design phase. This study focuses on the numerical investigation of the relationship between the flow velocity, the added mass and the hydrodynamic damping, particularly, with respect to a Donaldson-type hydrofoil, vibrating in the first torsional mode. A two-way fluid-structure interaction (FSI) method is used to predict above two parameters. The flow velocity is in the range of 0 m/s–20m/s. To evaluate the hydrodynamic damping ratio, an identification method is proposed, based on a modified version of the logarithmic decay method. The relative deviations of the simulated natural frequencies and hydrodynamic damping ratios as compared with the experimental data for the first torsional modes, are within 8.1% and 16.6%, respectively. The analysis results show that the added mass coefficient for the first torsional mode is in the range of 1.59–1.86, and is around 44% of that for the first bending mode. The trends of the boundary layer thickness and the wake width against the reduced velocity are found to be opposite to that of the hydrodynamic damping ratio. The theoretical equation for predicting the hydrodynamic damping ratio is modified, which is shown to be more reliable due to its consideration of the velocity independent hydrodynamic damping phase.
引用
收藏
页码:347 / 360
页数:13
相关论文
共 50 条
  • [31] HYDRODYNAMIC DAMPING OF THE TORSIONAL VIBRATIONS OF THE SYSTEM SHAFT-SHIPS PROPELLER
    PISARENKO, GS
    BEREGOVENKO, AY
    STRENGTH OF MATERIALS, 1983, 15 (05) : 589 - 598
  • [32] A comprehensive empirical equation for the hydrodynamic damping of vibrating blade-like structures
    Zeng, Y. S.
    Wang, C. Y.
    Huang, B.
    Wang, F. J.
    Xiao, R. F.
    Yao, Z. F.
    OCEAN ENGINEERING, 2023, 270
  • [33] Resonance assessment of a hydrofoil by considering hydrodynamic damping ratio under continuously varying inlet velocity
    Zeng, Y. S.
    Qian, Z. H.
    Yao, Z. F.
    Wu, Q.
    Shi, J. T.
    Zhang, Z. Y.
    Luo, X. W.
    ENERGY, 2025, 323
  • [34] Numerical research on hydrodynamic characteristics offish-like flexible oscillating hydrofoil
    Li, Zhitong
    Xue, Gang
    Liu, Yanjun
    Guo, Fengxiang
    Li, Shizhen
    2018 IEEE 8TH INTERNATIONAL CONFERENCE ON UNDERWATER SYSTEM TECHNOLOGY: THEORY AND APPLICATIONS (USYS), 2018,
  • [35] Numerical studies on flows around a flexibly wiggling hydrofoil
    He, Guoyi
    Zhang, Xing
    Zhang, Shuguang
    Lixue Xuebao/Chinese Journal of Theoretical and Applied Mechanics, 2010, 42 (01): : 15 - 22
  • [36] NUMERICAL MODELING OF DAMPING CHARACTERISTICS IN A TORSIONAL MICRO-RESONATOR
    Acharya, Tathagata
    Martin, Michael J.
    INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION - 2012, VOL 9, PTS A AND B, 2013, : 281 - 286
  • [37] DESIGN CALCULATION PROCEDURE FOR TORSIONAL-MODE VIBRATING VISCOSIMETERS WITH CONCENTRATED ELASTICITY
    KRUTIN, VN
    SMIRNITS.IB
    INDUSTRIAL LABORATORY, 1967, 33 (04): : 542 - &
  • [38] THE DYNAMIC SHEAR MODULUS AND INTERNAL-FRICTION OF A FIBER VIBRATING IN THE TORSIONAL MODE
    SIMPSON, HM
    FORTNER, BE
    AMERICAN JOURNAL OF PHYSICS, 1987, 55 (01) : 44 - 46
  • [39] Research on numerical prediction methods of hydrodynamic damping ratio for a hydrofoil based on one-way and two-way fluid-structure interactions
    Zeng Y.
    Yao Z.
    Hong Y.
    Wang F.
    Shuili Xuebao/Journal of Hydraulic Engineering, 2020, 51 (11): : 1432 - 1439
  • [40] Effects of unsteady stream on hydrodynamic behavior of flexible hydrofoil in semi-passive mode
    Zhang, Yubing
    Wang, Qixian
    Han, Jiazhen
    Xie, Yudong
    RENEWABLE ENERGY, 2023, 206 : 451 - 465