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THE INFLUENCE OF TIDAL UNSTEADINESS ON A TIDAL TURBINE BLADE FLOW-INDUCED VIBRATION

机译:潮汐不稳定性对涡轮叶片流动引起的潮汐振动的影响

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The influence of unsteady tidal flow on the flow-induced vibration of a vertical axis tidal turbine blade is investigated numerically in this paper. A 2D CFD model is developed to simulate the blade flow-induced vibration in OpenFoam. The vibration is caused by dynamic loading from the unsteady tide. It is recognized that the unsteady tidal current mainly comes from the changes in tidal velocity magnitude and angle of attack experienced by a tidal turbine blade as it rotates. This paper studies numerically how velocity magnitude and initial angle of attack influence tidal turbine blade vibrations and the effects of the velocity and angle of attack are evaluated separately where the unsteadiness parameters are varied around a set of environmental condition. The vibration is examined through time histories of blade displacement, pressure distribution on the blade surface and the tidal current regime. The blade is assumed to have pitch and heave responses thus the vibration is in the form of transverse and torsional vibrations. The results show that increasing tidal velocity magnitude strengthens the torsional vibration. The increase of angle of attack is likely to generate chaotic motions and enhance both transverse and torsional vibrations.
机译:本文数值研究了非定常潮汐流对立轴潮汐涡轮叶片流致振动的影响。开发了2D CFD模型来模拟OpenFoam中叶片流动引起的振动。振动是由不稳定潮汐产生的动态载荷引起的。公认的是,不稳定的潮流主要来自潮汐涡轮叶片旋转时潮汐速度大小和迎角的变化。本文数值研究了速度大小和初始迎角如何影响潮汐涡轮叶片的振动,并在环境参数随一组环境条件变化的情况下,分别评估了速度和迎角的影响。通过叶片位移的时间历史,叶片表面的压力分布和潮流状态检查振动。假定叶片具有俯仰和升沉响应,因此该振动为横向和扭转振动的形式。结果表明,增加潮汐速度幅值可增强扭转振动。迎角的增加很可能产生混沌运动并增强横向和扭转振动。

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