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The influence of wind shear on vibration of geometrically nonlinear wind turbine blade under fluid-structure interaction

机译:流体剪切作用下风切变对几何非线性风力涡轮机叶片振动的影响

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摘要

For the large-scale offshore wind turbine blades, the governing equations in fluid domain and the motion equations in structural domain with geometric nonlinearity were developed based on ALE description, and the corresponding discrete equations were obtained. Blade entity model was built up using Pro/E, and the blade vibration characteristics under fluid-structure interaction (FSI) were simulated using ANSYS. Numerical results show that wind shear effect greatly increases the peak values of response curves for displacement and stress, makes the effect of bi-directional fluid-structure interaction (BFSI) more obvious, and also accelerates the attenuation of vibration curves. The displacement of blade airfoil increases nonlinearly along the span direction, and reaches the maximum at the blade tip. The maximum Mises stress appears in the middle of the blade, and reduces gradually towards each end of the blade. Furthermore, the contribution of wind shear effect (WSE) to displacement and Mises stress is much greater than that of FSI.
机译:对于大型海上风机叶片,基于ALE描述,建立了具有几何非线性的流体域控制方程和结构域运动方程,得到了相应的离散方程。利用Pro / E建立了叶片实体模型,并利用ANSYS模拟了流固耦合作用下的叶片振动特性。数值结果表明,风切变效应极大地增加了位移和应力响应曲线的峰值,使双向流固耦合效应更加明显,并加速了振动曲线的衰减。叶片翼型的位移沿翼展方向非线性增加,并在叶片尖端达到最大。最大的米塞斯应力出现在叶片的中央,并逐渐向叶片的两端减小。此外,风切变效应(WSE)对位移和Mises应力的贡献远大于FSI。

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  • 来源
    《Ocean Engineering》 |2014年第1期|14-19|共6页
  • 作者单位

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, PR China;

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, PR China;

    School of Computing, Engineering and Mathematics, University of Western Sydney, Sydney 2751, Australia;

    Department of Engineering Technology and Construction Management, University of North Carolina at Charlotte, NC 28223, USA;

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, PR China;

    College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wind turbine blade; Wind shear effect; Fluid-structure interaction; Geometric nonlinearity; Vibration characteristics;

    机译:风力发电机叶片风切变效应;流固耦合几何非线性振动特性;

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