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Combined damping model for dynamics and stability of a pipe conveying two-phase flow

机译:输流两相流动力学与稳定性的组合阻尼模型

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摘要

Vibration of a pipe conveying two-phase flow is a major concern in ocean engineering, and it is necessary to formulate a proper damping model to avoid excessive flow-induced vibration in pipes. While only a few studies have investigated the effects of damping model on dynamics of pipe conveying flow, in this work, we focus on the dynamic behavior of pipe induced by the gas-liquid two-phase flow using a combined damping model. The Generalized Integral Transform Technique (GITT) is employed to model the dynamic behavior of the pipe conveying two-phase flow, and the governing equation of vibration is transformed into a coupled system of second order ordinary differential equations in the time domain by GITT method. Parametric studies are performed to investigate the effects of damping ratios on the dynamic behavior of the pipe, and the results from this model have been verified against the existing experimental results. Besides, the dimensionless critical frequency of the pipe at which instability sets in has been predicted both in the real and imaginary part. Finally, a dimensionless structural parameter gamma(0) that can govern the normalized stability envelope of the pipe is obtained. The proposed model for the dynamics of the pipe conveying two-phase flow with combined damping can be an important reference for the design and analysis of deepwater risers.
机译:输送两相流的管道的振动是海洋工程中的主要问题,因此有必要制定适当的阻尼模型,以避免管道中过大的流动引起的振动。尽管只有很少的研究研究了阻尼模型对管道输送流动力学的影响,但在这项工作中,我们集中于使用组合阻尼模型的气液两相流诱发的管道动力学行为。采用广义积分变换技术(GITT)对输送两相流的管道的动力学行为进行建模,并通过GITT方法将振动的控制方程在时域转换为二阶常微分方程的耦合系统。进行了参数研究,以研究阻尼比对管道动态性能的影响,并且该模型的结果已经与现有的实验结果进行了验证。此外,已经在实部和虚部中预测了发生不稳定性的管道的无量纲临界频率。最后,获得了无量纲结构参数gamma(0),该参数可以控制管道的标准化稳定性包络线。所提出的组合阻尼管道输送两相流动力学模型可以为深水立管的设计和分析提供重要参考。

著录项

  • 来源
    《Ocean Engineering》 |2020年第1期|106683.1-106683.9|共9页
  • 作者

  • 作者单位

    China Univ Petr Coll Safety & Ocean Engn Beijing 102249 Peoples R China|Univ Fed Rio de Janeiro COPPE Nucl Engn Dept CP 68509 BR-21941972 Rio De Janeiro Brazil;

    China Univ Petr Coll Safety & Ocean Engn Beijing 102249 Peoples R China;

    Univ Fed Rio de Janeiro COPPE Nucl Engn Dept CP 68509 BR-21941972 Rio De Janeiro Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flow induced vibration; Two-phase flow; Instability; Integral transform; Combined damping;

    机译:流动引起的振动;两相流;不稳定积分变换组合阻尼;

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