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Structural design and analysis of a 10MW wind turbine blade

机译:10MW风力涡轮机叶片的结构设计与分析

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The structural aspects of a 70 meter long blade in an upwind, horizontal-axis wind turbine were developed in this paper for use in a high wind speed location. A hybrid composite structure using glass and carbon fiber plies was created yielding a light-weight design with a low tip deflection. The blade was subjected to FEA studies to demonstrate its ability to withstand the extreme loading conditions as defined in the international offshore wind standard. The results confirmed the design to have acceptable performance with regard to tip deflection, maximum and minimum strains, and critical buckling load. Detailed descriptions of the structural components and ply layups are presented along with the resulting maximum and minimum strains and deflections. In addition, optimization techniques were introduced to provide insight for future studies with the blade.
机译:在本文中开发了70米长的刀片在泵送水平轴风力涡轮机中的结构方面,以用于高风速位置。产生使用玻璃和碳纤维层的混合复合结构,产生具有低尖端偏转的轻型设计。叶片进行FEA研究,以证明其能够承受国际海上风标准的极端装载条件。结果证实了该设计在尖端偏转,最大和最小菌株和关键屈曲负荷方面具有可接受的性能。结构组分和帘布层叠层的详细描述随着所得到的最大和最小菌株和偏转。此外,还引入了优化技术,为未来的叶片进行了洞察力。

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