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Dynamic responses of a floating tidal turbine with 6-DOF prescribed floater motions

机译:具有6自由度规定浮子运动的浮潮涡轮机的动力响应

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This study aims to reveal the dynamic response and power output characteristics of a floating tidal turbine with prescribed motions in six degrees of freedom. Floater motions were calculated in the time domain based on linear potential theory. Both wave-induced inflow fields and floater motions are considered in a modified blade element momentum theory model for rotor load simulation. Generator power production and loads on a reference tidal turbine system were investigated. The torque and thrust response spectra are found to be dominated by floater-motion-induced contributions, and two response peaks can be clearly identified. A cancellation effect occurs between direct wave effects and floater-motion-induced loads, and horizontal and vertical rotor positions can significantly affect the dynamic responses of the blade loads; the rotor should be placed close to the floater centre to avoid large floater-motion-induced velocity on the blade section. Sensitivity studies are carried out with varying significant wave heights and peak periods. These results may contribute to a general understanding of floater-induced dynamic loads on floating tidal turbines in a random sea.
机译:这项研究旨在揭示具有规定自由度的六个自由度的浮动潮汐涡轮机的动态响应和功率输出特性。基于线性势能理论在时域中计算浮子运动。修改后的叶片单元动量理论模型中考虑了波浪引起的流入场和浮子运动,以用于转子载荷仿真。研究了参考潮汐涡轮机系统的发电机发电量和负荷。发现扭矩和推力响应谱受浮动运动引起的贡献支配,并且可以清楚地识别出两个响应峰。在直接波效应和浮动运动引起的负载之间会产生抵消效果,水平和垂直转子位置会显着影响叶片负载的动态响应。转子应放置在靠近浮子中心的位置,以避免在叶片部分产生较大的浮子运动引起的速度。敏感度研究是在不同的重要波高和峰值周期进行的。这些结果可能有助于对随机海中浮潮涡轮机上浮子引起的动态载荷的一般理解。

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