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Vibration and Dynamic Stability of Pipes Conveying Fluid on Elastic Foundations

机译:在弹性基础上输送流体的管道的振动和动态稳定性

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The paper deals with the vibration and dynamic stability of cantilevered pipes conveying fluid on elastic foundations. The relationship between the eigenvalue branches and corresponding unstable modes associated with the flutter of the pipe is thoroughly investigated. Governing equations of motion are derived from the extended Hamilton's principle, and a numerical scheme using finite element methods is applied to obtain the discretized equations. The critical flow velocity and stability maps of the pipe are obtained for various elastic foundation parameters, mass ratios of the pipe, and structural damping coefficients. Especially critical mass ratios, at which the transference of the eigenvalue branches related to flutter takes place, are precisely determined. Finally, the flutter configuration of the pipe at the critical flow velocities is drawn graphically at every twelfth period to define the order of the quasi-mode of flutter configuration.
机译:本文研究在弹性基础上输送流体的悬臂管的振动和动态稳定性。深入研究了特征值分支与与管道颤动相关的相应不稳定模式之间的关系。运动控制方程是从扩展的汉密尔顿原理导出的,并应用了一种使用有限元方法的数值方案来获得离散方程。针对各种弹性地基参数,管道的质量比和结构阻尼系数,获得了管道的临界流速和稳定性图。精确地确定了临界质量比,在该临界质量比下发生了与颤动有关的特征值分支的转移。最后,在第十二个周期以图形方式绘制临界流速下的管道颤动配置,以定义颤动配置的准模式的顺序。

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