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Two-phase flow induced vibrations in a marine riser conveying a fluid with rectangular pulse train mass

机译:船用立管中的两相流感应振动,其输送具有矩形脉冲序列质量的流体

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A riser conveys fluids from a subsea system to a host floater; however, oil and gas phases may alternate, increasing pipe's stress and damaging downstream facilities. This paper studies the nonlinear planar vibrations of a steel lazy wave riser excited by slug flow. The employed formulations comprise the Euler-Bernoulli beam model and the steady plug-flow model with a time-space-varying mass per unit length in the form of a rectangular pulse train. The equations are solved by a Runge-Kutta finite difference scheme and frequency-response curves are constructed for effective tension, curvature, usage factor and fatigue damage. The results offer a useful insight of the slugging frequencies and slug lengths that may receive attention during the design of risers.
机译:立管将流体从海底系统输送到主浮子;但是,油气相可能会交替出现,从而增加管道的应力并损坏下游设施。本文研究了由弹团流激励的钢制懒人立管的非线性平面振动。所采用的公式包括Euler-Bernoulli束模型和稳态塞流模型,其中单位长度随时空变化的质量为矩形脉冲序列。通过Runge-Kutta有限差分方案求解方程,并绘制出有效拉力,曲率,使用系数和疲劳损伤的频率响应曲线。结果提供了在竖管设计期间可能引起注意的击打频率和弹头长度的有用见解。

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