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首页> 外文期刊>International journal of non-linear mechanics >Three-dimensional dynamics of a cantilevered pipe conveying fluid, additionally supported by an intermediate spring array
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Three-dimensional dynamics of a cantilevered pipe conveying fluid, additionally supported by an intermediate spring array

机译:悬臂式管道输送流体的三维动力学,另外由中间弹簧阵列支撑

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摘要

In this paper, the three-dimensional (3-D) non-linear dynamics of a cantilevered pipe conveying fluid, constrained by arrays of four springs attached at a point along its length is investigated. In the theoretical analysis, the 3-D equations are discretized via Galerkin's technique. The resulting coupled non-linear differential equations are solved numerically using a finite difference method. The dynamic behaviour of the system is presented in the form of bifurcation diagrams, along with phase-plane plots, time-histories, PSD plots, and Poincare maps for five different spring configurations. Interesting dynamical phenomena, such as 2-D or 3-D flutter, divergence, quasiperiodic and chaotic motions, have been observed with increasing flow velocity. Experiments were performed for the cases studied theoretically, and good qualitative and quantitative agreement was observed. The experimental behaviour is illustrated by video clips (electronic annexes). The effect of the number of beam modes in the Galerkin discretization on accuracy of the results and on convergence of the numerical solutions is discussed.
机译:在本文中,研究了悬臂输送流体的三维(3-D)非线性动力学,该动力学受沿其长度连接在一个点上的四个弹簧的阵列的约束。在理论分析中,通过Galerkin的技术离散化3-D方程。使用有限差分法对所得的耦合非线性微分方程进行数值求解。该系统的动态行为以分叉图的形式呈现,以及五个不同弹簧配置的相平面图,时间历史,PSD图和Poincare图。随着流速的增加,已经观察到有趣的动力学现象,例如2-D或3-D颤动,发散,拟周期运动和混沌运动。从理论上对案例进行了实验,观察到了良好的定性和定量一致性。视频剪辑(电子附件)说明了实验行为。讨论了Galerkin离散化中光束模式数量对结果准确性和数值解收敛性的影响。

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