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An iterative finite element method for piezoelectric energy harvesting composite with implementation to lifting structures under Gust Load Conditions

机译:压电能量采集复合材料的迭代有限元方法及其在阵风荷载下提升结构的实现。

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摘要

In this paper, a novel iterative finite element method (FEM) for energy harvesting purpose is presented. In this iterative FEM, the electromechanical coupling in the governing piezoelectric energy harvesting equation is separated into two parts. One part is an actuator-like problem and can be evaluated with ease via commercial software. The solution of the other part, for voltage generation, is obtained straightforward utilising the structural response of the earlier part. These two parts are solved iteratively until the convergence in voltage and structural responses is reached. The new iterative FEM is implemented to solve the dynamic problems of piezoelectric-based energy harvester in the frequency and time domains. The application of the present iterative FEM to evaluate the piezoelectric energy harvesting of lifting structures under an aeroelastic condition, i.e., gust load, is shown in some details. The validation against other methods from the literature shows the robustness and capabilities of the iterative FEM.
机译:在本文中,提出了一种新颖的能量收集迭代有限元方法。在此迭代有限元法中,控制压电能量收集方程式中的机电耦合分为两部分。一部分是类似执行器的问题,可以通过商业软件轻松评估。利用早期部分的结构响应,可以直接获得另一部分用于产生电压的解决方案。反复求解这两个部分,直到达到电压和结构响应的收敛。实现了新的迭代有限元法,以解决基于压电的能量收集器在频域和时域方面的动态问题。在一些细节中示出了本迭代FEM在气动弹性条件(即阵风载荷)下评估提升结构的压电能量收集的应用。针对文献中其他方法的验证显示了迭代有限元法的鲁棒性和功能。

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