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Nonlinear parametric vibration of spinning pipes conveying fluid with varying spinning speed and flow velocity

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TLDR
In this article, a nonlinear parameter-excited model of spinning pipes conveying fluid is proposed by considering the spinning speed and flow velocity are perturbed periodically, and the stability and nonlinear parametric vibrations of such system are studied analytically and numerically.
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This article is published in Applied Mathematical Modelling.The article was published on 2021-07-01. It has received 35 citations till now. The article focuses on the topics: Spinning & Parametric oscillator.

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Citations
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Bifurcation behavior of nonlinear pipes conveying pulsating flow

TL;DR: In this article, the nonlinear behavior of supported pipes conveying pulsating fluid is examined in the vicinity of subharmonic and combination resonances, and the method of averaging is used to yield a set of autonomous equations.
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Nonlinear dynamics of fluid-conveying composite pipes subjected to time-varying axial tension in sub- and super-critical regimes

TL;DR: In this article, the nonlinear dynamics of a simply-supported fluid-conveying composite pipe subjected to axial tension in sub- and super-critical regimes are investigated, where the tension acting on the pipe is assumed to comprise an average component and a harmonically changing disturbance component.
Journal ArticleDOI

Nonlinear dynamics of fluid-conveying composite pipes subjected to time-varying axial tension in sub- and super-critical regimes

TL;DR: In this paper , the nonlinear dynamics of a simply-supported fluid-conveying composite pipe subjected to axial tension in sub- and super-critical regimes are investigated, where the tension acting on the pipe is assumed to comprise an average component and a harmonically changing disturbance component.
Journal ArticleDOI

Pipes conveying fluid: A fertile dynamics problem

TL;DR: The early studies on the dynamics of pipes conveying fluid by Feodos'ev, Housner, Benjamin and Païdoussis elucidated the basic dynamics of the system as mentioned in this paper .
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Dynamic modeling and experimental study of a complex fluid-conveying pipeline system with series and parallel structures

TL;DR: In this paper , an improved transfer matrix model (ITMM) is proposed for the dynamic modeling of the complex fluid-conveying pipeline system with series and parallel structures, which can consider both fluid-structure interaction and structural coupling between two parallel liquid-filled pipes.
References
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Journal ArticleDOI

A review of drillstring vibration modeling and suppression methods

TL;DR: A broad survey of the drillstring vibration modeling literature can be found in this paper, where the state-of-the-art models for predicting axial, torsional and bending vibrations (uncoupled and coupled), boundary condition assumptions, equation formulation methods, and applications to vibration mitigation are reviewed.
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Non-linear rotor dynamics as applied to oilwell drillstring vibrations

TL;DR: In this paper, the dynamic behaviour of a section of whirling drill collars is analyzed in terms of rotor dynamics, with account taken of the nonlinear influences caused by drilling fluid, stabilizer clearance and stabilizer friction.
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Nonlinear dynamics of a pipe conveying pulsating fluid with combination, principal parametric and internal resonances

TL;DR: In this paper, the nonlinear dynamics of a hinged-hinged pipe conveying pulsatile fluid subjected to combination and principal parametric resonance in the presence of internal resonance is investigated.
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Nonlinear dynamics of a pipe conveying pulsating fluid with parametric and internal resonances

TL;DR: In this article, the nonlinear planar vibration of a pipe conveying pulsatile fluid subjected to principal parametric resonance in the presence of internal resonance is investigated using the method of multiple scales (MMS).
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Transverse free vibration and stability analysis of spinning pipes conveying fluid

TL;DR: In this paper, the transverse free vibration and stability of a doubly gyroscopic system conveying fluid is analyzed for spinning pipes conveying fluids. But the qualitative stability of the present system mainly depends on the effects of fluid-structure interaction (FSI) and mass ratio, while the spinning speed plays a significant role in determining the quantitative values of the frequency.
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