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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Dynamic behaviours of horizontal gas-liquid pipes subjected to hydrodynamic slug flow: Modelling and experiments
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Dynamic behaviours of horizontal gas-liquid pipes subjected to hydrodynamic slug flow: Modelling and experiments

机译:水平气体管经受流体动力学液体流动的动态行为:建模与实验

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摘要

The dynamic behaviours of gas-liquid pipes are difficult to predict because of the complex flow characteristics of gas-liquid two-phase flow and fluid-structure interactions. In this paper, a dynamics model capable of describing the characteristics of hydrodynamic slug flow and fluid-structure interactions involving centrifugal force and Coriolis force is presented to investigate the dynamic behaviours of horizontal pipes subjected to hydrodynamic slug flow. The motion equation is solved using the finite element method. Experiments are performed to measure the characteristics of slug flow and dynamic behaviours of horizontal pipes and to validate the theoretical results. The motion of pipes under different two-phase flow parameters are simulated, and some interesting and unexpected results are presented. Finally, the cumulative effect of fluid-structure interactions and slug characteristics on the dynamics of the system is discussed. This study is helpful for understanding the complicated dynamic behaviours of gas-liquid pipes and promoting pipeline safety.
机译:由于气液两相流动和流体结构相互作用的复杂流动特性,难以预测气液管的动态行为。在本文中,提出了一种能够描述涉及离心力和科里奥利力的流体动力学级流量和流体结构相互作用的动力学模型,以研究经受流体动力学块流的水平管的动态行为。使用有限元方法解决运动方程。进行实验以测量水平管道的三个流动和动态行为的特性,并验证理论结果。模拟了不同两相流参数下管道的运动,并呈现了一些有趣和意外的结果。最后,讨论了流体结构相互作用和SLUG特性对系统动力学的累积效应。本研究有助于了解气液管道的复杂动态行为和促进管道安全性。

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