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Dynamic Response Analysis of Three Floating Wind Turbine Concepts with a Two-Bladed Darrieus Rotor

机译:两叶Darrieus转子的三种漂浮式风力涡轮机概念的动力响应分析

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摘要

Recently, interest in the development of floating vertical axis wind turbines (FVAWTs) has been increasing, since FVAWTsmight prove to be one of the optimal configurations in deep waters. In this study, a FVAWT with a 5 MW Darrieus rotorwas used as the reference wind turbine and was mounted on three different floating support structures: the OC3 spar buoy,the OC4 semi-submersible, and a tension leg platform (TLP). Fully coupled nonlinear time domain simulations using thecode SIMO-RIFLEX-DMS were conducted. A series of load cases with turbulent wind and irregular waves was carried outto investigate the dynamic responses of these three FVAWT concepts by estimating the generator power production, theplatform motions, the tower base bending moments, and the mooring line loads. For the spar, semi-submersible, and TLPFVAWT concepts, twice-per-revolution (2P) effects resulting from the 2P aerodynamic loads are prominent in the dynamicresponses of these concepts. Because of the compliant catenary mooring systems, the spar and the semi-submersible canhelp to mitigate the 2P effects on structural loads and mooring line tensions as compared to the TLP concept, at the cost oflarger platform motions. The TLP is not a good substructure for a vertical axis wind turbine unless the cyclic variation ofaerodynamic loads is significantly reduced.
机译:近年来,人们对浮动垂直轴风力涡轮机(FVAWT)的开发兴趣日益浓厚,因为事实证明FVAWT是深水中的最佳配置之一。在本研究中,将具有5兆瓦Darrieus转子的FVAWT用作参考风力涡轮机,并将其安装在三种不同的浮动支撑结构上:OC3浮标,OC4半潜式和张力腿平台(TLP)。使用代码SIMO-RIFLEX-DMS进行了完全耦合的非线性时域仿真。进行了一系列带有湍流和不规则波的载荷工况,通过估算发电机的发电量,平台运动,塔基弯矩和系泊绳载荷来研究这三个FVAWT概念的动力响应。对于翼梁,半潜式和TLPFVAWT概念,由2P空气动力载荷产生的每转两次(2P)效果在这些概念的动力响应中十分突出。由于采用了顺应性的悬链系泊系统,与TLP概念相比,翼梁和半潜式潜水器可以帮助减轻2P对结构载荷和系泊缆索张力的影响,但要以更大的平台运动为代价。对于垂直轴风力涡轮机来说,TLP并不是很好的子结构,除非大大降低了空气动力学负载的周期性变化。

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