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Nonlinear modeling of electro-aeroelastic dynamics of composite beams with piezoelectric coupling

机译:压电联轴器复合梁电气弹性动力学的非线性建模

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Structural and aerodynamic non-linearities can lead to persistent oscillations in aeroelastic systems, which allows the conversion of mechanical energy into electric power. Flexible beams represent an example of structures that can be used as energy harvesters. This work aims to model and analyze the non-linearities induced by the flow-structure interaction of an energy harvester consisting of a laminated beam integrated with a piezoelectric sensor. The cantilevered beam and the piezoelectric lamina are modeled using a nonlinear finite element approach, while unsteady aerodynamic effects are described by a state-space model that allows for arbitrary nonlinear lift characteristics. Wind tunnel tests for a fluttering beam in a broad range of flow speeds and preset angles of incidence were used to validate the electro-aeroelastic model. The matching of experimental and computational results reveals the importance of appropriately modeling structural and aerodynamic non-linearities for reproducing the physical electro-aeroelastic behavior of the system. These findings are of practical and theoretical relevance, and are further supported by the model's complete inability to reproduce experimental results when either of the non-linearities are "switched off".
机译:结构和空气动力学非线性可能导致空气弹性系统中的持续振荡,这使得机械能转化为电力。柔性光束表示可用作能量收割机的结构的示例。该工作旨在模拟和分析由集成与压电传感器的层压梁组成的能量收割机的流动结构相互作用引起的非线性。使用非线性有限元方法建模悬臂梁和压电薄片,而不稳定的空气动力学效果是由允许任意非线性提升特性的状态空间模型描述的。在宽范围的流速和预设入射角处的凸梁隧道试验用于验证电气弹性模型。实验和计算结果的匹配揭示了适当建模结构和空气动力学非线性来再现系统的物理电气弹性行为的重要性。这些发现具有实用性和理论相关性,并且当模型完全无法再现实验结果,当其中的任一线性被“关闭”时,该结果进一步支持。

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