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Dynamics of the double-beam piezo-magneto-elastic nonlinear wind energy harvester exhibiting galloping-based vibration

机译:双光束压电 - 磁弹性非线性风能收割机的动态,展示良好的振动

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This paper investigates a dynamic model and behavior of a novel double-beam piezo-magneto-elastic nonlinear wind energy harvester (DBPME-WEH). The DBPME-WEH is a double-beam structure, which contains the magnet-induced bistable nonlinearity to enhance the performance of the galloping-based vibration energy harvesting. The corresponding governing equations of motion are formulated, and the numerical results based on the equations are validated by a series of the wind tunnel experiments. Both the numerical and experimental results show that the DBPME-WEH outperforms the linear double-beam piezoelectric wind energy harvester, significantly reducing the cut-in speed. To understand the nonlinear dynamic behavior of the proposed energy harvester, this study performs the numerical investigations of the time-domain responses, phase portraits and frequency spectrums of the DBPME-WEH under selected wind speeds. The intra-well, chaotic and inter-well oscillations are discovered with respect to low, medium and high wind speeds intervals, respectively. The parametric study is performed to uncover the influences of the beams stiffness ratio, effective mass ratio and the width of the bluff body that help developing the insights of the effective design of the DBPME-WEH.
机译:本文研究了一种新型双梁压电 - 磁弹性非线性风能收割机(DBPME-WEH)的动态模型和行为。 DBPME-WEH是一种双光束结构,它包含磁体引起的双稳态非线性,以提高宏观的振动能量收获的性能。配制运动的相应控制方程,并通过一系列风洞实验验证基于等式的数值结果。数值和实验结果都表明,DBPME-WEH优于线性双光束压电风能收割机,显着降低了切割速度。为了了解所提出的能量收割机的非线性动态行为,该研究在所选择的风速下执行DBPME-WEH的时域响应,相位肖像和频谱的数值研究。阱内,相对于低,中和高风速间隔发现井间,混沌和井间振荡。进行参数研究以揭示光束刚度比,有效质量比和凹槽体宽度的影响,这有助于开发DBPME-WEH的有效设计的见解。

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