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Nonlinear piezoelectric plate framework for aeroelastic energy harvesting and actuation applications

机译:空气弹性能量收集和致动应用的非线性压电板框架

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摘要

The use of piezoelectric materials in various applications, including the development of bio-inspired structures, vibration control, energy harvesting, among others, has been investigated by several researchers over the last few decades. In most cases, linear piezoelectricity is assumed in modeling and analysis of such systems. However, the recent literature shows that non-linear manifestations of piezoelectric materials are relevant and can modify the electromechanical behavior especially around the resonance. This work extends the investigation of non-linear piezoelectricity, by adding geometric nonlinearities and aerodynamic effects, to aeroelastic problems such as wind energy harvesting. A piezoaeroelastic model that combines a non-linear coupled finite element model and the doublet lattice model of unsteady aerodynamics is presented. The electromechanically coupled finite element model includes the non-linear behavior of piezoelectric material under weak electric fields. Model predictions are validated by experimental data for 1) a double bimorph actuation case and 2) a vibration based energy harvesting case. Later, the piezoaeroelastic behavior of a generator plate-like wing for wind energy harvesting is numerically investigated when linear as well as non-linear piezoelectricity is considered. The experimentally validated geometrically and materially non-linear framework presented here is applicable to both energy harvesting and actuation problems in the presence of air flow.
机译:在过去几十年中,几个研究人员,在各种应用中使用压电材料,包括生物启发结构的发展,振动控制,能量收获,在过去几十年中已经被几个研究人员调查。在大多数情况下,在这种系统的建模和分析中假设线性压电性。然而,最近的文献表明,压电材料的非线性表现形式是相关的,并且可以改变尤其是围绕共振的机电行为。该工作通过增加几何非线性和空气动力学效应来扩展非线性压电性的调查,以风蚀性问题,例如风能收割。提出了一种压电式型号,其结合了非线性耦合有限元模型和不稳定空气动力学的双峰晶格模型。机电耦合的有限元模型包括弱电场下压电材料的非线性行为。模型预测通过实验数据验证为1)双双芯片致动壳体和2)基于振动的能量收集情况。后来,当考虑线性和非线性压电时,在数量地研究了用于风能收集的发电机板状机翼的压电式行为。这里呈现的实验验证的几何和物质非线性框架适用于在空气流动存在下的能量收集和致动问题。

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