谷歌浏览器插件
订阅小程序
在清言上使用

Resonance Regulation on a Hydraulic Pipe Via Boundary Excitations

International journal of mechanical sciences(2023)

引用 1|浏览24
暂无评分
摘要
Resonance of a hydraulic pipe is the standing wave brought by the excitation in fact. This provides a new idea of vibration control of the hydraulic pipe, which means the resonance can be regulated by combination of exci-tations. Inspired by this opinion, the current work studies the multi-modal resonance regulation of a hydraulic pipe by multiple boundary excitations for the first time. The system considers the pump installed at the pipe's end as the fixed boundary with a displacement excitation. To minimize the multi-modal resonance, a force excitation and a moment excitation are acted on the right end. These three excitations have different phase angles and different amplitudes. But they have the same frequency to avoid combination resonance or even beat phenomenon and chaos. Combined responses subject to these three excitations are derived via the analytical method, and verified by a numerical simulation method. To find out the regulating mechanism, nonlinearities of the system are neglected for calculating the exact analytical solution first. The discussion clarifies that, the phase angle of the moment excitation has the same effect on different modal resonances. It is an advantage for the multi-modal resonance reduction. On the contrary, the phase angle of the force excitation has different effects on different modal resonances. By optimizing phase angles and amplitudes of excitations, both the first-two reso-nances are reduced by 50% comparing with the system suffered to the displacement excitation only. The opti-mized conclusion is also real for the nonlinear system. The potential energy and dissipation work are reduced by over 70% for the first-two resonances. This work proposes a potential boundary control technique for the hy-draulic pipe system. Multi-modal resonance control can be realized by adjusting the phase angle or the amplitude of boundary excitations.
更多
查看译文
关键词
Pipe conveying fluid,Hydraulic pipe,Multiple excitation,Boundary excitation,Boundary control,Nonlinear and non-homogenous boundary excitation
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要