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Smart Structure for Small Wind Turbine Blade

机译:小型风轮机叶片的智能结构

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摘要

Wind energy is seen as a viable alternative energy option for future energy demand. The blades of wind turbines are generally regarded as the most critical component of the wind turbine system. Ultimately, the blades act as the prime mover of the whole system which interacts with the wind flow during the production of energy. During wind turbine operation the wind loading cause the deflection of the wind turbine blade which can be significant and affect the turbine efficiency. Such a deflection in wind blade not only will result in lower performance in electrical power generation but also increase of material degradation due high fatigue life and can significantly shorten the longevity for the wind turbine material. In harnessing stiffness of the blade will contribute massive weight factor and consequently excessive bending moment. To overcome this excessive deflection due to wind loading on the blade, it is feasible to use shape memory alloy (SMA) wires which has ability take the blade back to its optimal operational shape. This paper details analytical and experimental work being carried out to minimize blade flapping deflection using SMA.
机译:风能被视为未来能源需求的可行替代能源选择。风力涡轮机的叶片通常被认为是风力涡轮机系统的最关键部件。最终,叶片充当整个系统的原动力,在产生能量的过程中,叶片与风流相互作用。在风力涡轮机运行期间,风载荷引起风力涡轮机叶片的偏转,这可能是显着的并且影响涡轮机效率。风力叶片的这种偏转不仅将导致发电性能降低,而且由于高疲劳寿命而导致材料降解增加,并且可以显着缩短风力涡轮机材料的寿命。在利用线束时,叶片的刚度将贡献巨大的重量系数,从而导致过度的弯矩。为了克服由于叶片上的风载荷而导致的过度偏转,使用形状记忆合金(SMA)线是可行的,该形状记忆合金(SMA)线能够将叶片恢复到其最佳工作形状。本文详细介绍了为减少使用SMA的叶片拍打偏转而进行的分析和实验工作。

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