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Piezoelectric Energy Harvesting from Wind Using Coupled Bending-Torsional Vibrations

机译:利用弯曲-扭转耦合振动从风中收集压电能量

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Energy harvesting using Polyvinylidene-fluoride (PVDF) piezoelectric beams from fluid-induced flutter was studied. Vibration tests were performed to compare the power output of a piezoelectric beam subject to bending, and coupled bending-torsion loading conditions. A piezoelectric, harmonic computational analysis was done to further investigate the effect of the bending-torsion loading condition. It was evident that by inciting bending and torsion in the beam simultaneously, higher power outputs were achieved. However, when the tests were conducted in a wind tunnel with fluid forcing as opposed to steady-state vibration, the power output of the combined bending and torsion case was much lower than the bending-only case. High-speed image data indicated that the configurations subjected to bending-torsion flutter had lower bending deformations and were more prone to chaotic flapping, which inherently resulted in reduced power outputs. Finally, a vertical stalk configuration was examined, which produced five times more power compared to the horizontal stalk configuration at 8m/s wind speed due to excessive non-linear bending.
机译:研究了使用聚偏氟乙烯(PVDF)压电束从流体引起的颤振中收集能量的方法。进行了振动测试,以比较经受弯曲的压电梁的功率输出以及耦合的弯曲扭转载荷条件。进行了压电谐波计算分析,以进一步研究弯曲扭转载荷条件的影响。显然,通过同时激发光束的弯曲和扭转,可以实现更高的功率输出。但是,当在风洞中采用流体强迫而不是稳态振动进行测试时,组合弯曲和扭转情况下的功率输出远低于仅弯曲情况。高速图像数据表明,遭受弯曲扭转颤动的构型具有较低的弯曲变形,并且更容易发生混沌颤动,从而固有地导致功率输出降低。最后,检查了垂直杆构型,由于过度的非线性弯曲,在8m / s的风速下,其功率是水平杆构型的五倍。

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