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  2019, Vol. 40 Issue (2): 127-136    DOI: 10.19636/j.cnki.cjsm42-1250/o3.2019.002
  研究论文 本期目录 | 过刊浏览 | 高级检索 |
含非线性能量汇的简支输液管非线性振动控制研究
严浩1,熊夫睿3 ,姜乃斌3, 代胡亮1,2, 王琳1,2 ,黄绮珊1, 倪樵1,2
1. 华中科技大学力学系
2. 中国核动力研究设计院核反应堆系统设计技术重点实验室,
3. 中国核动力研究设计院核反应堆系统设计技术重点实验室
Nonlinear Vibration Control of a Simply supported Pipe Conveying Fluid with Nonlinear Energy Sink
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摘要 论文建立了一个含有非线性能量汇(NES)装置并输运脉动内流的简支输液管道理论模型, 研究了NES装置对管道的非线性动力学特性与振动控制的影响. 利用Galerkin和龙格库塔法, 得到了在含NES和不含NES装置时管道动力学响应的数值结果. 研究表明, NES装置能有效地抑制管道振动. 通过对比可知, NES对管道系统的稳定性和非线性振动控制有着明显的影响. 此外, 本文还详细讨论了NES装置相关参数对系统的动力学影响. 结果表明, 增大NES的弹簧刚度、阻尼和质量比有利于管道减振, 且最佳安装位置在管道中点. 此外, 增大阻尼?能缩小失稳激励频率区域, 而其他参数的变化对失稳激励频率区域影响较小.
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严浩 熊夫睿 姜乃斌 代胡亮 王琳 黄绮珊 倪樵
关键词 输液管道 非线性能量汇 脉动内流 非线性振动    
Abstract

Pipes conveying fluid are widely applied in heat exchanger systems, nuclear power plants, chemical process plants, marine risers, etc. However, the excessive piping vibration can cause leaks, fatigue failures and noises. Thus, investigations on the vibration suppression of pipes are of theoretical and practical significance. In this study, we construct a theoretical model to investigate the nonlinear dynamics of a simply-supported pipe conveying pulsating fluid equipped with a nonlinear energy sink (NES). By taking the deflection-dependent axial force into consideration, the nonlinear governing equations of the system are obtained. Based on the Galerkin method and the Runge-Kutta algorithm, the resulting equations are discretized and solved. Numerical results for the nonlinear dynamical responses of the pipes with and without NES are presented. It is found that pipe vibration can be effectively suppressed by the NES. Comparing with the pipe without NES under the same condition, the stability and nonlinear vibration characteristics of the pipe are greatly affected when the NES is attached. The effects of NES parameters on the stability and vibration response of the system are elaborately addressed. Numerical results show that an increase in the nonlinear (cubic) stiffness k, dissipation s or mass ratio e can improve the suppression of pipe vibration; and the improvement in the suppression of pipe vibration by increasing dissipation s is more significant than those by increasing other NES parameters. It shows that the best mounting position for the NES to reduce pipe vibration is at the midpoint of the pipe. In addition, it is found that an increase in dissipation s can shrink the unstable region in the frequency domain, while other NES parameters have little effects on the instability. Therefore, dissipation s is the most effective parameter for the nonlinear energy sink to control the vibration of pipes conveying fluid.

收稿日期: 2018-12-03      出版日期: 2019-04-11
基金资助:大变形输液管的非线性、非平面振动研究;非线性振动及其控制;松支承约束下U型管束面内流致振动机理研究
通讯作者: 倪樵     E-mail: niqiao@hust.edu.cn
引用本文:   
严浩 熊夫睿 姜乃斌 代胡亮 王琳 黄绮珊 倪樵. 含非线性能量汇的简支输液管非线性振动控制研究[J]. , 2019, 40(2): 127-136.
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