外激励作用下输流管道伴随有内共振的非线性振动分析

梁 峰;包日东;金 莹;苏 勇

振动与冲击 ›› 2014, Vol. 33 ›› Issue (22) : 146-151.

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PDF(1208 KB)
振动与冲击 ›› 2014, Vol. 33 ›› Issue (22) : 146-151.
论文

外激励作用下输流管道伴随有内共振的非线性振动分析

  • 梁 峰,包日东,金 莹,苏 勇

作者信息 +

Nonlinear vibration of a fluid-conveying pipe under external excitation accounting for internal resonance

  • LIANG Feng,BAO Ri-dong,JIN Ying,SU Yong
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摘要

利用多元L-P法研究外部周期激励下两端固定输流管道伴随有内共振的非线性受迫振动问题。对于外激励流固耦合系统,当第二阶固有频率约为第一阶值的3倍,并且激励频率接近前两阶固有频率中间值时,系统会发生伴随有强烈内部共振的组合共振。利用多元L-P法求解这种振动响应,并详细分析振动中前两个模态的运动及外激励幅值对内共振的影响。数值算例揭示了系统由于内共振而发生的更加丰富而复杂的动力学行为,并且表明,随着激励幅值的增大,内共振的发生趋势将降低,响应形式也会发生变化。研究结果同时证明了多元L-P法在研究非线性动力学方面是便捷而高效的。

Abstract

An external periodic load is considered to act on a fluid-conveying pipe clamped at both ends, and the nonlinear forced vibration for such a system is explored by the multidimensional Lindstedt-Poincaré (MDLP) method. According to the analysis, when the second natural frequency of the system is nearly thrice the first one, and the excitation frequency is near the middle of first two natural frequencies, a combination resonance with internal resonance may occur. The characteristics of this response are discussed, where the motions of first two modes are investigated in detail. The influence of excitation amplitude on the internal resonance is analyzed. Numerical examples reveal rich and complex dynamic behaviors caused by internal resonance and show that the occurrence tendency of internal resonance will die down and the response forms will vary with the excitation amplitude increasing. The convenience and efficiency of the MDLP method in predicting nonlinear dynamics are as well demonstrated by the results of the study.


关键词

输流管道 / 非线性振动 / 内共振 / 外周期激励 / 多元L-P法

Key words

fluid-conveying pipe / nonlinear vibration / internal resonance / external periodic excitation / multidimensional Lindstedt-Poincaré method

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导出引用
梁 峰;包日东;金 莹;苏 勇. 外激励作用下输流管道伴随有内共振的非线性振动分析[J]. 振动与冲击, 2014, 33(22): 146-151
LIANG Feng;BAO Ri-dong;JIN Ying;SU Yong. Nonlinear vibration of a fluid-conveying pipe under external excitation accounting for internal resonance[J]. Journal of Vibration and Shock, 2014, 33(22): 146-151

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