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首页> 外文期刊>Journal of Sound and Vibration >Simultaneous energy harvesting and vibration control in a nonlinear metastructure: A spectro-spatial analysis
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Simultaneous energy harvesting and vibration control in a nonlinear metastructure: A spectro-spatial analysis

机译:非线性地区中同时能量收集和振动控制:光谱空间分析

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Considerable attention has recently been given to the study of simultaneous energy harvesting and vibration attenuation in metastructures. However, only linear metastructures were investigated although nonlinear metastructures and nonlinear electromechanical devices offer superior interesting wave propagation phenomena (e.g., birth of solitary waves, tunable bandgap, acoustic nonreciprocity) and broadband energy harvesting. In this paper, we investigate the wave propagation in a weakly nonlinear metastructure with electromechanical resonators. Explicit expressions are derived for the nonlinear dispersion relations using the method of multiple scales. These expressions are validated via direct numerical integration. We carried out parametric studies to investigate the role of different parameters of the electromechanical resonators on the linear and nonlinear band structure. To obtain further detailed information on the nonlinear wave propagation, we employ spectro-spatial analysis on the numerical simulations. This spectro-spatial analysis can reveal the output voltage distortion due to different types of nonlinearities. The results indicate that nonlinear chain can enhance energy harvesting through the birth of solitary wave and without degrading the boundary of the bandgap. The results also suggest that such a system is suitable for designing electromechanical diodes and rectifiers. (C) 2020 Elsevier Ltd. All rights reserved.
机译:最近对阶段中的同时能量收集和振动衰减进行了相当大的关注。然而,尽管非线性地区和非线性机电装置提供了优异的有趣波传播现象(例如,孤立波,可调带隙,声学非渗透率)和宽带能量收集的较优有趣的波传播现象,但是仅研究了线性代置。在本文中,我们研究了机电谐振器的弱非线性地区中的波传播。使用多个尺度的方法导出用于非线性色散关系的显式表达式。这些表达式通过直接数值集成验证。我们进行了参数研究,以研究机电谐振器的不同参数对线性和非线性带结构的作用。为了获得关于非线性波传播的进一步详细信息,我们对数值模拟采用光谱空间分析。此分光空间分析可以揭示所述输出电压失真由于不同类型的非线性的。结果表明,非线性链可以通过孤立波的诞生增强能量收集,并且不会降低带隙的边界。结果还表明这种系统适用于设计机电二极管和整流器。 (c)2020 elestvier有限公司保留所有权利。

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