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首页> 外文期刊>Journal of Mechanical Science and Technology >The aerodynamic interference effects of a floating offshore wind turbine experiencing platform pitching and yawing motions
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The aerodynamic interference effects of a floating offshore wind turbine experiencing platform pitching and yawing motions

机译:浮式海上风力发电机在平台俯仰和偏航运动中的气动干扰效应

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摘要

Generally, a floating offshore wind turbine experiences larger motions than onshore or ground fixed wind turbines because of its free motions of the platform on the water. The accurate prediction of unsteady aerodynamic performances and loads for the rotating blades installed on a floating offshore wind turbine is a numerically complex problem and it is still challenging works. In this study, both the conventional numerical methods based on an unsteady blade element momentum theory and the advanced computational fluid dynamic method have been applied for the rotating blades with oscillating motions. Unsteady aerodynamic characteristics of the rotating blades with the platform pitching and yawing motions are numerically investigated in detail. It is shown that there are flow interaction phenomena between the rotating wind turbine blades with oscillating motions and generated blade-tip vortices. Finally, the unsteady aerodynamic blade loads for the pitching motion are also calculated and the results are compared for each rotating blade in order to show the effect of aerodynamic load variations during its oscillating motion.
机译:通常,由于平台在水上的自由运动,浮动海上风力涡轮机比陆上或地面固定风力涡轮机经受更大的运动。对安装在浮式海上风力涡轮机上的旋转叶片的不稳定气动性能和载荷的准确预测是一个数字复杂的问题,并且仍然是一项具有挑战性的工作。在这项研究中,基于非定常叶片动量理论的传统数值方法和先进的计算流体动力学方法都已应用于具有摆动运动的旋转叶片。详细地研究了随着平台俯仰和偏航运动的旋转叶片的非定常空气动力学特性。结果表明,在旋转的风力涡轮机叶片之间,随着振荡运动和产生的叶尖涡流之间存在流动相互作用现象。最后,还针对俯仰运动计算了非定常的气动叶片载荷,并对每个旋转叶片的结果进行了比较,以显示气动载荷在其摆动过程中变化的影响。

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