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A parametric study on nonlinear flow-induced dynamics of a fluid-conveying cantilevered pipe in post-flutter region from macro to micro scale

机译:颤振后区域从宏观到微观尺度上的流体输送悬臂管道非线性流动诱发动力学的参数研究

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A mathematical formulation is proposed to investigate the nonlinear flow-induced dynamic characteristics of a cantilevered pipe conveying fluid from macro to micro scale. The model is developed by using the extended Hamilton's principle in conjunction with the inextensibility condition and laminar and turbulent flow profiles as well as modified couple stress theory. The current model is capable of recovering the classical model of cantilevered pipe conveying fluid by neglecting the couple stress effect. The governing equation of motion is presented in dimensionless form in a convenient and usable manner. To solve the problem at hand, the integro-partial-differential equation of motion is discretized into a set of ordinary differential equations via Galerldn method. Afterward, a Runge-Kutta's finite difference scheme is employed to evaluate the nonlinear dynamic response of the cantilevered pipe conveying fluid. A parametric study is carried out to examine the influences of mass parameter and dimensionless mean flow velocity on, the nonlinear dynamic characteristics of the cantilevered pipe conveying fluid in post-flutter region. The role of size-dependency in the nonlinear behavior of pipe is explored by converting the new set of dimensionless parameters into the conventional one. Eventually, some convergence studies are performed to indicate the reliability of present results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种数学公式来研究从宏观到微观尺度上输送流体的悬臂管道的非线性流致动力特性。该模型是通过使用扩展的汉密尔顿原理,不可扩展条件,层流和湍流分布以及改进的耦合应力理论而开发的。通过忽略偶应力效应,当前模型能够恢复悬臂管道输送流体的经典模型。运动的控制方程以方便和可用的方式以无量纲形式呈现。为了解决当前的问题,通过Galerldn方法将运动的积分偏微分方程离散化为一组常微分方程。然后,采用Runge-Kutta的有限差分方案来评估悬臂输送流体的非线性动力响应。进行了参数研究,研究了质量参数和无量纲平均流速对后扰动区悬臂输送流体非线性动力学特性的影响。通过将新的无量纲参数集转换为常规参数,探索了尺寸依赖性在管道非线性行为中的作用。最终,进行了一些收敛研究以表明当前结果的可靠性。 (C)2016 Elsevier Ltd.保留所有权利。

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