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Two methods for the computation of nonlinear modes of vibrating systems at large amplitudes

机译:计算大振幅振动系统非线性模式的两种方法

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The aim of this paper is to present two methods for the calculation of the nonlinear normal modes of vibration for undamped nonlinear mechanical systems: the time integration periodic orbit method and the modal representation method. In the periodic orbit method, the nonlinear normal mode is obtained by making the continuation of branches of periodic orbits of the equation of motion. The terms "periodic orbits" means a closed trajectory in the phase space, which is obtained by time integration. In the modal representation method, the nonlinear normal mode is constructed in terms of amplitude, phase, mode shape, and frequency, with the distinctive feature that the last two quantities are amplitude and total phase dependent. The methods are compared on two DOF strongly nonlinear systems.
机译:本文的目的是提出两种用于计算非阻尼非线性机械系统的非线性法向振动模态的方法:时间积分周期轨道法和模态表示法。在周期轨道方法中,通过使运动方程的周期轨道的分支连续来获得非线性法线模式。术语“周期轨道”是指在相空间中的闭合轨迹,该闭合轨迹是通过时间积分获得的。在模态表示方法中,根据振幅,相位,模态形状和频率构造非线性法线模式,其显着特征是最后两个量取决于振幅和总相位。该方法在两个自由度强非线性系统上进行了比较。

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