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Energy transfers in a system of two coupled oscillators with essential nonlinearity: 1 : 1 resonance manifold and transient bridging orbits

机译:在具有基本非线性的两个耦合振荡器的系统中的能量传递:1:1共振歧管和瞬态桥接轨道

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摘要

The purpose of this study is to highlight and explain the vigorous energy transfers that may take place in a linear oscillator weakly coupled to an essentially nonlinear attachment, termed a nonlinear energy sink. Although these energy exchanges are encountered during the transient dynamics of the damped system, it is shown that the dynamics can be interpreted mainly in terms of the periodic orbits of the underlying Hamiltonian system. To this end, a frequency-energy plot gathering the periodic orbits of the system is constructed which demonstrates that, thanks to a 1:1 resonance capture, energy can be irreversibly and almost completely transferred from the linear oscillator to the nonlinear attachment. Furthermore, it is observed that this nonlinear energy pumping is triggered by the excitation of transient bridging orbits compatible with the nonlinear attachment being initially at rest, a common feature in most practical applications. A parametric study of the energy exchanges is also performed to understand the influence of the parameters of the nonlinear energy sink. Finally, the results of experimental measurements supporting the theoretical developments are discussed.
机译:这项研究的目的是强调和解释在与基本非线性附件(称为非线性能量宿)弱耦合的线性振荡器中可能发生的剧烈能量转移。尽管在阻尼系统的瞬态动力学过程中会遇到这些能量交换,但事实表明,动力学可以主要根据基础哈密顿体系的周期性轨道来解释。为此,构建了一个收集系统周期轨道的频率-能量图,该图表明,由于1:1共振捕获,能量可以不可逆地且几乎完全从线性振荡器转移到非线性附件。此外,可以观察到,这种非线性能量泵浦是由与非线性附加装置兼容的瞬态桥接轨道的激发而触发的,这是大多数实际应用中的共同特征。还进行了能量交换的参数研究,以了解非线性能量吸收器参数的影响。最后,讨论了支持理论发展的实验测量结果。

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