Study on response characteristics of two-dof aeroelastic system

被引:0
|
作者
Zhu, Zhi-Wen [1 ,2 ]
Gu, Ming [2 ]
Chen, Zheng-Qing [1 ]
机构
[1] Research Center in Wind Engineering, Hunan University, Changsha 410082, China
[2] State Key Laboratory for Disaster Reduction in Civil Engineering, Tongji University, Shanghai 200092, China
来源
Gongcheng Lixue/Engineering Mechanics | 2008年 / 25卷 / 08期
关键词
Degrees of freedom (mechanics) - Damping - Structural dynamics - Plates (structural components) - Aerodynamics - Aeroelasticity - Vibrations (mechanical);
D O I
暂无
中图分类号
学科分类号
摘要
Based on CFD (Computational Fluid Dynamics) discrete-time aerodynamic models and two degrees-of-freedom (DOF) analysis, aeroelastic responses of a thin plate with and without structural damping, which is placed in smooth flow and oscillates after initial excitation in vertical or/and torsional directions, are evaluated in this paper. The characteristics of aeroelastic displacements and self-excited aerodynamic forces, as well as the relationship among them are also presented. It is confirmed that the vertical and torsional oscillations would simultaneously occur, even though only one DOF excitation is applied. Additionally, at low reduced wind speed, the effect of coupled aerodynamic force on aeroelastic response is not notable, and the aerodynamic force can provide more aerodynamic damping to the aeroelastic system on vertical DOF than on torsional DOF. It is found that both the system's vibration modals are involved in each DOF aeroelastic response as well as in the aerodynamic forces. It is also found that the oscillation of a thin plate with a system frequency is one kind of embroiled oscillation, which combines a dominating motion in one DOF with a secondary motion in another DOF.
引用
收藏
页码:23 / 30
相关论文
共 50 条
  • [1] Transient in a two-DOF nonlinear system
    A. Kozmin
    Yu. Mikhlin
    C. Pierre
    Nonlinear Dynamics, 2008, 51 : 141 - 154
  • [2] Transient in a two-DOF nonlinear system
    Kozmin, A.
    Mikhlin, Yu.
    Pierre, C.
    NONLINEAR DYNAMICS, 2008, 51 (1-2) : 141 - 154
  • [3] Escape of two-DOF dynamical system from the potential well
    Engel, A.
    Ezra, T.
    Gendelman, O., V
    Fidlin, A.
    NONLINEAR DYNAMICS, 2023, 111 (04) : 3019 - 3034
  • [4] Escape of two-DOF dynamical system from the potential well
    A. Engel
    T. Ezra
    O. V. Gendelman
    A. Fidlin
    Nonlinear Dynamics, 2023, 111 : 3019 - 3034
  • [5] Dynamic Characteristics of Novel Two-DOF Resonant Actuator by Vector Control
    Yoshimoto, Takamichi
    Asai, Yasuyoshi
    Hirata, Katsuhiro
    Ota, Tomohiro
    IEEE TRANSACTIONS ON MAGNETICS, 2012, 48 (11) : 2985 - 2988
  • [6] Investigation of the Characteristics of the Electrodynamic Wheel Suspension Device With Two-DOF Motion
    Duan, Jiaheng
    Zhang, Wenlong
    Xiao, Song
    Zhang, Kunlun
    Sykulski, J. K.
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2020, 48 (06) : 2274 - 2279
  • [7] BIFURCATION ANALYSIS OF A TWO-DOF SYSTEM SUBJECT TO DIGITAL POSITION CONTROL
    Habib, Giuseppe
    Rega, Giuseppe
    Stepan, Gabor
    PROCEEDINGS OF THE ASME INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE 2012, VOL 1, PTS A AND B, 2012, : 1007 - +
  • [8] Finite-Time Discrete Control for Two-DOF Helicopter System
    Pandey, Vinay
    Kamal, Shyam
    Ghosh, Sandip
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, 2024, 71 (08) : 3800 - 3804
  • [9] Precision control system of two-DOF stage with linear ultrasonic motor
    Zhang H.
    Shi Y.
    Zhao C.
    Frontiers of Mechanical Engineering in China, 2008, 3 (4): : 421 - 425
  • [10] Inverse Kinematics Model for a Ship Mounted Two-DoF Manipulator System
    Yazid, Edwar
    Mirdanie, Midriem
    Ardiansyah, Rizqi Andry
    Rahmat
    Ristiana, Rina
    Sulaeman, Yaya
    2021 IEEE OCEAN ENGINEERING TECHNOLOGY AND INNOVATION CONFERENCE: OCEAN OBSERVATION, TECHNOLOGY AND INNOVATION IN SUPPORT OF OCEAN DECADE OF SCIENCE (OETIC), 2021, : 50 - 56