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Modeling and analysis of novel coupled magneto-electro-aeroelastic continuous system for flutter-based energy harvesting system

机译:基于颤振能量收集系统的新型耦合磁空气弹性连续系统的建模与分析

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摘要

This paper presents a novel continuous model for improving energy harvesting from the aeroelastic flutter induced vibrations based on the use of magneto-electro-elastic (MEE) materials. The proposed model includes a rigid airfoil attached to an elastic beam. The elastic beam is covered with one or two layers of MEE material, and two electrodes are connected to the MEE layers to harvest the electric potential from the electric field. Besides, an external coil is utilized to induce the electric energy resulting from the MEE layer's magnetic field. The equations governing the proposed energy harvesting system are derived considering the continuous beam model using the constitutive equations of MEE materials and the Gauss and Faraday's laws based on Hamilton's principle. The derived governing equations are then modified based on the method of assumed modes. Assuming that the flow is subsonic, the flow is modeled with Peter's unsteady aerodynamic theory. Moreover, the effects of system parameters such as electric and magnetic resistance on the voltage, generated current, and power are realized to determine the best design parameters in terms of generated power. The ascending trend of generated power up to a specific resistance was observed by examining the electric resistance effect, followed by a descending trend with a further increase in the electric resistance. Besides, it was found that the generated power increases with the increase of magnetic resistance. Finally, the comparison between the MEE and piezoaeroelastic harvesting efficiencies was performed, which revealed the prior one's superiority from the generated power perspective.(c) 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种新的连续模型,可根据使用磁电弹性(MEE)材料来改善来自空气弹性颤动诱导振动的能量收集。所提出的模型包括附接到弹性束的刚性翼型。弹性梁覆盖有一个或两层MEE材料,并且两个电极连接到MEE层以收集来自电场的电位。此外,外部线圈用于诱导由MEE层的磁场产生的电能。通过基于汉密尔顿原则的原则,考虑使用Mee材料和Gauss和法拉第法律的本文方程,推导出所提出的能量收集系统的方程。然后基于假定模式的方法修改导出的管理方程。假设流量是括号的,该流程与Peter的不稳定空气动力学理论建模。此外,实现了系统参数,例如电压,产生电流和功率的电磁阻的影响,以确定产生的功率方面的最佳设计参数。通过检查电阻效应,观察到产生电阻的产生功率的上升趋势,然后通过电阻进一步增加了下降趋势。此外,发现产生的功率随着磁阻的增加而增加。最后,执行了Mee和Piezoera的比较,从而揭示了先前的权力透视的优越性。(c)2021 elestvier有限公司保留所有权利。

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