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A Piezoelectric Wind Energy Harvester with Interaction Between Vortex-Induced Vibration and Galloping

机译:压电风能收割机,涡旋诱导振动和疾驰之间的相互作用

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It is of significance to lower the cut-in speed of piezoelectric wind energy harvesters (PWEHs) to expand the applications. Previous experiments have verified that the cut-in speed may be effectively lowered by the interaction between vortex-induced vibration (VIV) and galloping. This work derives a mathematical model of the VlV-galloping interactive PWEHs by considering the effect of the piezoelectric layer on the equation of motion and adding an electrical equation to relate the electrical output with the deformation. Numerical simulations show that, with the increase of the side length of the square cross-section of the bluff body, the harvesters demonstrate a behavior transition from separated to interacted VTV and galloping. For a VTV-galloping interactive PWEH, the electrical responses predicted by the interactive model are greatly different from those predicted by VTV and galloping models. Experimental results show that the interactive model successfully predicts the interaction between VTV and galloping. Moreover, the simulated electrical outputs agree well with the experiments. Therefore, the proposed interactive model provides a useable tool to design a VTV-galloping interactive PWEH.
机译:降低压电风能收割机(PWEH)的切割速度是重要的意义,以扩大应用。先前的实验已经验证,通过涡旋诱导的振动(VIV)与疾驰之间的相互作用可以有效地降低切口速度。该工作通过考虑压电层对运动方程的影响并添加电气量来衍生VLV良好的交互式PWEHS的数学模型,以将电输出与变形相关。数值模拟表明,随着凹槽体的方形横截面的侧长度的增加,收割机展示了从分离到相互作用的VTV和疾驰的行为转变。对于VTV疾驰的交互式PWEH,交互式模型预测的电响应与VTV和疾驰模型预测的电响应有很大不同。实验结果表明,交互式模型成功预测了VTV和疾驰之间的相互作用。此外,模拟电输出与实验很好。因此,所提出的交互式模型提供了一种可用的工具来设计VTV良好的交互式PWEH。

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