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Dynamic response of three floaters supporting vertical axis wind turbines due to wind excitation

机译:三个漂浮物支撑垂直轴风风力涡轮机引发的动力响应

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Floating vertical axis wind turbines (VAWTs) are potential solutions for wind energy harvesting in deep-water oceans. The platform design has a great impact on the overall dynamic behaviors of the system. In this study, the dynamic responses of three floating VAWT models under wind excitations were tested in a water tank facility. A three-bladed H-rotor VAWT model with a geometric scale of 1:100 was used and fixed onto three floating platforms inspired by offshore oil rigs and floating wind turbine prototypes. The three platforms, i.e. single-spar, tri-floater, and hepta-spar, represent a deep draft, a strong buoyancy, and a hybrid conceptual model, respectively. The natural frequency of these models has been determined in free-decay tests. In the experiments, six degrees-of-freedom forces/moments were measured in a fixed coordinate setup and the free motion acceleration data were recorded in floating-coordinate tests. Results suggest the mean surging forces are similar for three models, but the mean pitching moments are different due to different floating platform designs. Dynamic loadings are significant for all force/moment components except for the yawing moment. Frequency domain analysis suggests dynamic loadings are dominated by the fundamental rotational frequency and its third harmonic. Despite of these common characteristics, three floating VAWT models show significantly different dynamic loadings and free motion accelerations under the same wind excitation. Due to scaling limitations, the dynamic motion and force data obtained in the present study could not be directly used for full-scale applications. However, the test result reveals the characteristics of fluid-structural interaction of three potential floating VAWT designs, and experimental data could provide validation benchmarks for future reduced-scale computational modeling (C) 2018 Elsevier Ltd. All rights reserved.
机译:浮动垂直轴风力涡轮机(瓦文)是深水海洋风能收割的潜在解决方案。平台设计对系统的整体动态行为产生了很大影响。在这项研究中,在风速激发下的三种浮动VAWT模型的动态反应在水箱设施中进行了测试。使用具有1:100的几何等距的三刃H-ROFOR VAWT模型,并固定到由海上石油钻井平台和浮动风力涡轮机原型的三个浮动平台上。三个平台,即单脚斯,三浮动和七翼,分别代表了深度的草稿,强烈的浮力和混合概念模型。这些模型的固有频率已在自由衰减测试中确定。在实验中,在固定坐标设置中测量六个自由力/瞬间,并且在浮动坐标测试中记录自由运动加速度数据。结果表明三种模型的平均旋转力相似,但由于不同的浮动平台设计,平均投球时刻是不同的。除了偏航时刻,动态负载对于所有力/时刻组件都很重要。频域分析表明动态负荷由基本旋转频率和第三次谐波主导。尽管存在这些共同的特点,但是三种浮动VAWT模型在相同的风励磁下显示出显着不同的动态载荷和自由运动加速度。由于缩放限制,本研究中获得的动态运动和力数据不能直接用于满量程应用。然而,测试结果揭示了三个潜在的浮动VAWT设计的流体结构相互作用的特征,实验数据可以为未来的减少计算建模提供验证基准(C)2018 Elsevier Ltd.保留所有权利。

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