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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Nonlinear Hybrid-Mode Resonant Forced Oscillations of Sagged Inclined Cables at Avoidances
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Nonlinear Hybrid-Mode Resonant Forced Oscillations of Sagged Inclined Cables at Avoidances

机译:非线性混合模式谐振在避免时垂直倾斜电缆的强制振荡

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摘要

We investigate nonlinear forced oscillations of sagged inclined cables under planar 1:1 internal resonance at avoidance. To account for frequency avoidance phenomena and associated hybrid modes, actually distinguishing inclined cables from horizontal cables, asymmetric inclined static configurations are considered. Emphasis is placed on highlighting nearly tuned 1:1 resonant interactions involving coupled hybrid modes. The inclined cable is subjected to a uniformly distributed vertical harmonic excitation at primary resonance of a high-frequency mode. Approximate nonlinear partial-differential equations of motion, capturing overall displacement coupling and dynamic extensibility effect, are analytically solved based on a multimode discretization and a second-order multiple scale approach. Bifurcation analyses of both equilibrium and dynamic solutions are carried out via a continuation technique, highlighting the influence of system parameters on internally resonant forced dynamics of avoidance cables. Direct numerical integrations of modulation equations are also performed to validate the continuation prediction and characterize nonlinear coupled dynamics in post-bifurcation states. Depending on the elasto-geometric (cable sag and inclination) and control parameters, and on assigned initial conditions, the hybrid modal interactions undergo several kinds of bifurcations and nonlinear phenomena, along with meaningful transition from periodic to quasiperiodic and chaotic responses. Moreover, corresponding spatio-temporal distributions of cable nonlinear dynamic displacement and tension are manifested.
机译:我们在避免时调查平面1:1内部共振下的下垂倾斜电缆的非线性强制振荡。为了考虑频率避免现象和相关的混合模式,实际区分倾斜电缆从水平电缆,考虑不对称倾斜静态配置。重点放置在突出显示近乎调谐的1:1涉及耦合混合模式的共振相互作用。倾斜电缆在高频模式的初级谐振下经受均匀分布的垂直谐波激发。基于多模离散化和二阶多尺度方法,在分析地解决了运动的近似非线性偏微分方程,捕获整体位移耦合和动态可伸展效应。通过连续技术进行平衡和动态解决方案的分岔分析,突出了系统参数对避免电缆的内部谐振强制动态的影响。还执行调制方程的直接数值积分以验证越野耦合状态下的延续预测并表征非线性耦合动态。取决于弹性几何(电缆凹槽和倾斜)和控制参数,以及在分配的初始条件下,杂交模态相互作用经历了几种分叉和非线性现象,以及从周期性与拟缺陷和混沌反应的有意义的转变。此外,表现出电缆非线性动态位移和张力的相应时空分布。

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