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Theoretical modeling and nonlinear analysis of piezoelectric energy harvesting from vortex-induced vibrations

机译:涡激振动收集压电能量的理论建模和非线性分析

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A nonlinear distributed-parameter model for harvesting energy from vortex-induced vibrations of a piezoelectric cantilever beam with a circular cylinder attached to its end is developed and validated with experimental results. A reduced-order model is derived by using the Euler-Lagrange principle and implementing the Galerkin discretization. A van der Pol wake oscillator is used to model the vortex-induced lift force. A nonlinear analysis is performed to determine the required number of modes in the Galerkin discretization. It is demonstrated that a one- or two-mode approximation in the Galerkin approach is not sufficient to evaluate the performance of the harvester. Based on a five-mode approximation in the Galerkin approach, an identification for the van der Pol wake oscillator coefficients is performed. To design efficient piezoaeroelastic energy harvesters that can generate energy at low freestream velocities, further analysis is performed to investigate the effects of the cylinder's tip mass, length of the piezoelectric sheet, and electrical load resistance on the synchronization region and performance of the harvester. The results show that depending on the operating free-stream velocity, the cylinder's tip mass, length of the piezoelectric sheet, and electrical load resistance can be optimized to design enhanced piezoaeroelastic energy harvesters from vortex-induced vibrations.
机译:建立了非线性分布参数模型,该模型用于从压电悬臂梁的涡流诱导振动中收集能量,压电悬臂梁的末端装有圆柱,并通过实验结果进行了验证。通过使用Euler-Lagrange原理并实现Galerkin离散化来导出降阶模型。 Van der Pol唤醒振荡器用于模拟涡流引起的升力。执行非线性分析以确定Galerkin离散化中所需的模数。结果表明,Galerkin方法中的一模或二模逼近不足以评估收割机的性能。基于Galerkin方法中的五模式近似,对van der Pol唤醒振荡器系数进行识别。为了设计可以在低自由流速度下产生能量的高效压电气动弹性能量采集器,需要进行进一步的分析以研究圆柱体尖端质量,压电片的长度以及电阻负载对同步器区域和性能的影响。结果表明,根据自由流的运行速度,可以优化圆柱体的尖端质量,压电板的长度和电阻抗性,以根据涡流引起的振动设计增强型压电气动弹性能量收集器。

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