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NONLINEAR DYNAMICS OF AN EXTENSIBLE FLEXIBLE PIPE CONVEYING FLUID AND SUBJECTED TO EXTERNAL AXIAL FLOW

机译:可伸长柔性管道输送流体的非线性动力学,对外轴流

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In this paper, the nonlinear equations representing the dynamics of a slender flexible pipe conveying fluid and subjected to external axial flow are formulated using the extended Hamilton's principle. The internal flow is assumed to be steady, fully developed turbulent and approximated by a plug flow, while the external flow is represented by the induced hydrodynamic forces associated with friction, hydrostatic and inviscid components. The pipe centerline is considered to be extensible, and hence two coupled nonlinear equations of motion associated with longitudinal and transverse displacements are derived to describe the dynamics of the system. The developed model takes into account the fluid pressurization force and the tension in the pipe, which may be externally applied or associated with the frictional forces. For verification purpose, comparisons were performed, wherein the developed formulation was reduced to some published linear models. Numerical solutions were obtained for a case study of a double-pipe heat exchanger, wherein the effects of internal flow, external flow, flowrate, and radial gap on the dynamic characteristics of the system were addressed.
机译:在本文中,使用延伸的汉密尔顿原理配制代表细长柔性管传送流体的动力学和对外轴流流动的非线性方程。假设内部流动稳定,完全显得湍流并且通过插头流近似,而外部流动由与摩擦,静液压和耐羧组分相关的诱导的流体动力学表示。管中心线被认为是可扩展的,因此导出与纵向和横向位移相关联的两个耦合的非线性方程以描述系统的动态。开发模型考虑了流体加压力和管中的张力,这可以与摩擦力外部施加或与摩擦力相关联。为了验证目的,进行比较,其中显影配方还原为一些公开的线性模型。获得了对双管热交换器的案例研究的数值解决方案,其中解决了内部流动,外部流动,流量,流量和径向间隙对系统的动态特性的影响。

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