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The use of normal forms for analysing nonlinear mechanical vibrations.

机译:使用常规形式分析非线性机械振动。

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摘要

A historical introduction is given of the theory of normal forms for simplifying nonlinear dynamical systems close to resonances or bifurcation points. The specific focus is on mechanical vibration problems, described by finite degree-of-freedom second-order-in-time differential equations. A recent variant of the normal form method, that respects the specific structure of such models, is recalled. It is shown how this method can be placed within the context of the general theory of normal forms provided the damping and forcing terms are treated as unfolding parameters. The approach is contrasted to the alternative theory of nonlinear normal modes (NNMs) which is argued to be problematic in the presence of damping. The efficacy of the normal form method is illustrated on a model of the vibration of a taut cable, which is geometrically nonlinear. It is shown how the method is able to accurately predict NNM shapes and their bifurcations.
机译:历史上介绍了法则形式的理论,以简化接近共振或分歧点的非线性动力学系统。具体的重点是机械振动问题,用有限的自由度二阶时间微分方程描述。回顾了遵循这种模型的特定结构的标准形式方法的最新变体。它显示了如何将该方法置于法线形式的一般理论的上下文中,前提是将阻尼项和强迫项视为展开参数。该方法与非线性正态模态(NNM)的替代理论形成对比,后者被认为在存在阻尼的情况下存在问题。在几何形状非线性的拉紧电缆振动模型上说明了标准形式方法的有效性。展示了该方法如何能够准确预测NNM形状及其分支。

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