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STRUCTURAL DYNAMICS AND LOAD ANALYSIS OF LARGE OFFSHORE WIND TURBINES IN WESTERN GULF OF MEXICO SHALLOW WATER

机译:墨西哥浅水西湾大型海上风轮机的结构动力学和载荷分析

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In this paper, a study is conducted on wind and metocean loads and associated structural dynamics of a 13.2-MW large offshore wind turbine in Western Gulf of Mexico (GOM) shallow water. The offshore wind turbine considered includes a rotor with three 100-meter long blades and a mono-tower support structure. Natural frequencies and mode shapes of the blades and the mono-tower are determined first and used subsequently to establish a Campbell diagram for safe wind turbine operation. The results show that hydrodynamic added mass has little effect on the natural frequencies and mode shapes of the support structure but it introduces, in part, appreciable effects on loads carried by the turbine when the blades are pitched at wind speeds above the rated speed. Also determined, for normal operation and extreme metocean conditions (i.e., 100-year return hurricanes), are normal thrust on the wind rotor, blade-tip displacement, overturning moment and tower-top displacement sustained by the wind turbine.
机译:在本文中,针对墨西哥西部海湾(GOM)浅水区的13.2 MW大型海上风力涡轮机的风和海洋负荷以及相关的结构动力学进行了研究。所考虑的海上风力涡轮机包括一个带有三个100米长叶片的转子和一个单塔支撑结构。首先确定叶片和单塔的固有频率和模态形状,然后将其用于建立坎贝尔图,以确保风力涡轮机安全运行。结果表明,水动力附加质量对支撑结构的固有频率和振型几乎没有影响,但是当叶片以高于额定速度的风速俯仰时,它对涡轮机所承受的负载产生了可观的影响。对于正常运行和极端海洋条件(即100年回风),还确定了风力涡轮机上的正常推力,叶尖位移,倾覆力矩和塔顶位移。

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