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Dynamics of Electromagnetic Systems for Energy Harvesting and Filtering.

机译:用于能量收集和过滤的电磁系统的动力学。

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摘要

The focus of this dissertation is on the dynamics of electromagnetic systems for energy harvesting and filtering applications. The inclusion of magnets into systems generates nonlinearity due to the nature of electromagnetic interactions. In this work, magnetic nonlinearity manifests in tip interactions for cantilever beams, coupling effects for electromagnetic transduction, and bistable potential wells for a two beam system. These electromagnetic interactions are used to add non-contact coupling effects for the creation of bistable oscillators or arrays of coupled beams for energy filtering.;Nonlinearity at the tip of cantilever beams acts to change the dynamic and static behavior of the system. In this dissertation, these interactions are analyzed both with and without the nonlinear tip interactions. A linear analysis of the system without the tip interaction first provides insight into the shifting frequencies of the first four natural oscillation modes when considering a rigid body tip mass with rotational inertia and a center of mass that is offset from the tip of the beam. Then, the characterization of the nonlinearities in the beam stiffness and magnetic interaction provide insight into the static and dynamic behavior of the beam. The analytical and numerical investigations, using Rayleigh-Ritz methods and an assumed static deflection, are shown to be consistent with experimental tests. These methods provide a framework for theoretically establishing nonlinear static modes and small-amplitude linear modes that are consistent with physical behavior.;In electromagnetic coupling, the role of nonlinearity can have a detrimental or beneficial effect on energy harvesting. This work includes an investigation of the response of an energy harvester that uses electromagnetic induction to convert ambient vibration into electrical energy. The system's response behavior with linear coupling or a physically motivated form of nonlinear coupling is compared with single and multi-frequency base excitation. This analysis is performed with combined theoretical and numerical studies.;The ability of magnets to add nonlinearity to a system allows for the expansion of the phenomenological behavior of said system and potential advantages and disadvantages for energy harvesting. This work studies a two beam system made up of carbon fiber cantilever beams and attached magnetic tip masses with a focus on energy harvesting potential. Numerical and experimental investigations reveal an array of phenomena from static bifurcations, chaotic oscillations, and sub-harmonic orbits. These features are used to highlight the harvesting prospects for a similarly coupled system.;Beyond nonlinearity, the non-contacting coupling effects of magnets allow for the hypothetical creation of energy filtering systems. In this work, the band structure of a two dimensional lattice of oscillating beams with magnetic tip masses is explored. The focus of the wave propagation analysis is primarily on regions in the band structure where propagation does not occur for the infinite construction of the system. These band gaps are created in this system of 2 x 2 repeating unit cells by periodically varying the mass properties and, for certain configurations, the frequency band gaps manifest in different size and band location. Uncertainty in these regions is analyzed using potential variations associated with specific physical parameters in order to elucidate their influence on the band gap regions. Boundary effects and damping are also investigated for a finite-dimensional array, revealing an erosion of band gaps that could limit the expected functionality.
机译:本文的重点是用于能量收集和过滤应用的电磁系统的动力学。由于电磁相互作用的性质,将磁体包含在系统中会产生非线性。在这项工作中,磁性非线性表现为悬臂梁的尖端相互作用,电磁换能的耦合效应以及两束系统的双稳态势阱。这些电磁相互作用用于添加非接触耦合效应,以创建双稳态振荡器或耦合束阵列以进行能量过滤。悬臂梁尖端的非线性作用会改变系统的动态和静态行为。本文对有无非线性尖端相互作用的相互作用进行了分析。当考虑具有旋转惯性的刚体尖端质量和偏离梁尖端的质心时,没有尖端相互作用的系统的线性分析首先可以洞悉前四个自然振荡模式的位移频率。然后,通过对梁刚度和磁场相互作用的非线性进行表征,可以洞悉梁的静态和动态行为。使用Rayleigh-Ritz方法和假定的静态挠度进行的分析和数值研究表明与实验测试一致。这些方法为理论上建立与物理行为一致的非线性静态模式和小振幅线性模式提供了框架。在电磁耦合中,非线性的作用可能对能量收集产生不利或有益的影响。这项工作包括调查能量收集器的响应,该能量收集器使用电磁感应将周围的振动转换为电能。将系统的线性耦合或物理形式的非线性耦合的响应行为与单频和多频基础激励进行了比较。这种分析是通过理论和数值研究相结合的方法进行的。磁体为系统增加非线性的能力使得该系统的现象学行为得以扩展,并可能产生能量收集的优点和缺点。这项工作研究了由碳纤维悬臂梁和附着的磁头质量组成的两束系统,重点是能量收集潜力。数值和实验研究揭示了一系列来自静态分叉,混沌振荡和次谐波轨道的现象。这些特征用于突出类似耦合系统的收获前景。除非线性之外,磁体的非接触耦合效应还允许假想地创建能量过滤系统。在这项工作中,探索了具有磁尖端质量的振荡梁的二维晶格的能带结构。波传播分析的重点主要是在频带结构中对于系统的无限构造不会发生传播的区域。这些带隙是通过周期性地改变质量特性在2 x 2个重复的单位单元的系统中创建的,对于某些配置,频带隙表现为不同的大小和频带位置。使用与特定物理参数关联的潜在变化来分析这些区域中的不确定性,以阐明其对带隙区域的影响。还对有限维阵列的边界效应和阻尼进行了研究,揭示了带隙的侵蚀可能会限制预期的功能。

著录项

  • 作者

    Owens, Benjamin A. M.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Engineering Mechanical.;Mathematics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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