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Articulated blade tip devices for load alleviation on wind turbines

机译:铰接式叶片尖端装置,用于减轻风力涡轮机的负荷

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摘要

This paper investigates the load alleviation capabilities of an articulated tip device, where the outermost portion of the blade can rotate with respect to the rest of the blade. Passive, semi-passive and active solutions are developed for the tip rotation. In the passive and semi-passive configurations tip pitching is mainly driven by aerodynamic loads, while for the active case the rotation is obtained with an actuator commanded by a feedback control law. Each configuration is analyzed and tested using a high-fidelity aeroservoelastic simulation environment, by considering standard operative conditions as well as fault situations. The potential benefits of the proposed blade tip concepts are discussed in terms of performance and robustness.
机译:本文研究了一种铰接式末端装置的减轻负荷的能力,在该装置中,叶片的最外侧部分可以相对于叶片的其余部分旋转。被动式,半被动式和主动式解决方案针对针尖旋转而开发。在无源和半无源配置中,叶尖俯仰主要由气动负载驱动,而在有源情况下,旋转是通过根据反馈控制定律控制的执行器获得的。考虑到标准操作条件以及故障情况,使用高保真航空弹性仿真环境对每种配置进行分析和测试。在性能和坚固性方面讨论了所提出的叶尖概念的潜在好处。

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