Modeling and nonlinear dynamics of cantilevered pipe with tapered free end concurrently subjected to axial internal and external flows

颤振 悬臂梁 机械 非线性系统 振动 内部流动 流量(数学) 振荡(细胞信号) 钻井隔水管 不稳定性 结构工程 控制理论(社会学) 物理 工程类 声学 空气动力学 机械工程 计算机科学 人工智能 生物 量子力学 遗传学 控制(管理) 钻探
作者
Kun Zhou,Huliang Dai,Lin Wang,Qiao Ni,Peter Hagedorn
出处
期刊:Mechanical Systems and Signal Processing [Elsevier]
卷期号:169: 108794-108794 被引量:24
标识
DOI:10.1016/j.ymssp.2021.108794
摘要

The current study aims to investigate stability and nonlinear dynamics of a cantilevered pipe with a tapered free end concurrently subjected to axial internal and external flows, with the purpose of regulating and controlling the vibration behavior of the pipe. A nonlinear governing equation accounting for the effects of axial internal and external flows on the nonlinear dynamics of the pipe is first established based on the modified Hamilton’s principle. Then, a linear analysis is performed to investigate the stability region and instability mode, while considering the effect of length of the tapered free end. The results show that buckling, flutter and combined buckling-flutter behaviors can occur with varying the internal and external flow velocities. Subsequently, a nonlinear analysis is conducted to further explore vibration amplitude and oscillation shape of the pipe with a tapered free end. It is found that for different values of internal flow velocity, the pipe displays quite distinct vibration behaviors with increasing external flow velocity. This study is expected to be beneficial for optimizing an underwater propulsion system based on oscillations of an attached pipe through adapting the flow velocity and shape of the free end.

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