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首页> 外文期刊>Journal of Sound and Vibration >NON-LINEAR DYNAMICS AND STABILITY OF CIRCULAR CYLINDRICAL SHELLS CONTAINING FLOWING FLUID. PART IV: LARGE-AMPLITUDE VIBRATIONS WITH FLOW
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NON-LINEAR DYNAMICS AND STABILITY OF CIRCULAR CYLINDRICAL SHELLS CONTAINING FLOWING FLUID. PART IV: LARGE-AMPLITUDE VIBRATIONS WITH FLOW

机译:含流动流体的圆形圆柱壳的非线性动力学和稳定性。第四部分:具有流量的大振幅振动

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摘要

The response of a shell conveying fluid to harmonic excitation, in the spectral neighbourhood of one of the lowest natural frequencies, is investigated for different flow velocities. The theoretical model has already been presented in Part I of the present study. Non-linearities due to moderately large-amplitude shell motion are considered by using Donnell's non-linear shallow-shell theory. Linear potential flow theory is applied to describe the fluid-structure interaction by using the model proposed by Paidoussis and Denise. For different amplitudes and frequencies of the excitation and for different flow velocities, the following are investigated numerically: (1) periodic response of the system; (2) unsteady and stochastic motion; (3) loss of stability by jumps to bifurcated branches. The effect of the flow velocity on the non-linear periodic response of the system has also been investigated. Poincare maps and bifurcation diagrams are used to study the unsteady and stochastic dynamics of the system. Amplitude modulated motions, multi-periodic solutions, chaotic responses, cascades of bifurcations as the route to chaos and the so-called "blue sky catastrophe" phenomenon have all been observed for different values of the system parameters; the latter two have been predicted here probably for the first time for the dynamics of circular cylindrical shells.
机译:对于不同的流速,研究了在最低固有频率之一的频谱附近,输送流体的壳体对谐波激励的响应。理论模型已经在本研究的第一部分中提出。通过使用Donnell的非线性浅壳理论,可以考虑由于中等幅度的壳运动引起的非线性。运用线性势流理论,利用Paidoussis和Denise提出的模型来描述流固耦合。对于不同的激励振幅和频率以及不同的流速,将对以下内容进行数值研究:(1)系统的周期性响应; (二)非平稳随机运动; (3)跳转到分支分支而失去稳定性。还研究了流速对系统非线性周期性响应的影响。 Poincare映射和分叉图用于研究系统的不稳定和随机动力学。对于不同的系统参数值,都可以观察到调幅运动,多周期解,混沌响应,分叉级联作为通往混沌的途径以及所谓的“蓝天大灾难”现象。后两者可能是首次针对圆柱壳的动力学进行了预测。

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