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Vibration energy harvesting under concurrent base and flow excitations with internal resonance

机译:并发基础下的振动能量收获和内部共振的流动激发

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摘要

In this study, internal resonance is investigated to further explore the potential of energy harvesting under concurrent base and flow excitations. The effects of system parameters on the performance of energy harvester with three-to-one internal resonance are analyzed analytically. At first, a lumped-parameter model for the energy harvester, which consists of a two-degree-of-freedom airfoil with the piezoelectric coupling introduced to the plunging motion, is established by using a nonlinear quasi-steady aerodynamic model. Subsequently, the method of multiple scales is implemented to derive the approximate analytic solution of the energy harvesting system under three-to-one internal resonance. Then, the bifurcation characteristics of the energy harvester with respect to various system parameters are analyzed. Finally, the numerical solutions are presented to validate the accuracy of the approximate analytic solutions. The study shows that the harvested voltage and power of the energy harvester can be significantly improved in the presence of internal resonance. In addition, the analytic solutions of internal resonance and the bifurcation analysis can provide an essential reference for design of such a kind of energy harvester.
机译:在这项研究中,研究了内部共振,以进一步探索并发基础和流动激发的能量收获的潜力。分析分析分析系统参数对能量收割机性能的影响。首先,通过使用非线性准稳态空气动力学模型建立具有与引入浮动运动的压电耦合的双自由度翼型组成的能量收割机的集合参数模型。随后,实现了多种尺度的方法,以导出在三对一个内部共振下的能量收集系统的近似分析解决方案。然后,分析了能量收割机相对于各种系统参数的分叉特性。最后,提出了数值解决方案以验证近似分析解决方案的准确性。该研究表明,在内部共振存在下,能量收割机的收获电压和功率可以显着提高。此外,内部共振的分析解和分叉分析可以为这种能量收割机的设计提供必要的参考。

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