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Understanding the formation process of the liquid slug in a hilly-terrain wet natural gas pipeline

机译:了解丘陵地形湿天然气管道中液体段塞的形成过程

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摘要

In the present work, the liquid slug formation in a hilly-terrain pipeline is simulated using the Volume of Fluid model and RNG k-ε turbulence model. The numerical model is validated by the experimental data of the horizontal slug flow. The influence of the pipe geometric structure and flow condition on the liquid slug formation is discussed including pipe diameter, inclination angle, gas superficial velocity and liquid holdup. The results show that the pipe is blocked by the liquid slug at the moment of slug formed. The pipe pressure suddenly increases, and then decreases gradually in the process of liquid slug formation and motion. The pipe pressure drop and liquid holdup decrease along with the increasing inclination angle of ascending pipe. On the contrary, they rise with the increase of the inclination angle of descending pipe. Higher gas superficial velocity and liquid holdup result in a larger pressure drop in the formation of a liquid slug, and correspondingly induces a slug flow more rapidly in the hilly-terrain pipelines.
机译:在目前的工作中,使用体积流体模型和RNGk-ε湍流模型模拟了丘陵地形管道中的液团形成。数值模型由水平段塞流实验数据验证。讨论了管道的几何结构和流动条件对液塞形成的影响,包括管道直径,倾角,气体表观速度和液体滞留率。结果表明,在形成团块的瞬间,管道被液体团块堵塞。在液团的形成和运动过程中,管道压力突然升高,然后逐渐降低。管道压力下降和液体滞留量随上升管道的倾斜角度的增加而减小。相反,它们随着下降管的倾斜角的增加而上升。较高的气体表观速度和液体滞留率会导致液团形成中的压降更大,并相应地在丘陵地带管道中更快地引发团流。

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