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Vortex-induced vibration of pipes conveying fluid using the method of multiple scales
Authors:Huliang Dai  Lin Wang
Affiliation:Department of Mechanics, Huazhong University of Science and Technology, Wuhan 430074, China;Hubei Key Laboratory for Engineering Structural Analysis and Safety Assessment, Wuhan 430074, China
Abstract:The nonlinear dynamics of supported pipes conveying fluid subjected to vortex-induced vibration is evaluated using the method of multiple scales. Frequency response portraits for different internal fluid velocities under lock-in conditions are obtained and the stability of steady-state responses is discussed. Results show that the internal fluid velocity has a prominent effect on the oscillation amplitude and that the steady-state responses incorporating unstable solutions in the lock-in region are also obtained. In addition, the effects of two kinds of fluctuating lift coefficients on the steady-state responses are compared with each other.
Keywords:pipes conveying fluid  vortex-induced vibration  lock-in  steady-state responses  fluctuating lift
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