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Drag Reduction of Gas-Liquid Two-Phase Flow in Steel Pipes with Different Inclination Geometry

机译:用不同的倾斜几何形状减少钢管中的气液两相流量

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It is significant to make researches on drag reduction in two-phase transport pipeline because two-phase flow has high energy dissipation. API X 52 steel pipe with diameter of 40mm is used in this paper to simulate pipeline with different inclination geometry including horizontal, upinclined and vertical sections. The up-inclined section has an inclination angle of eight degree. Experiments and theoretical analysis are carried out to study the drag reduction characteristics of gas-liquid two-phase flow in these three sections. The drag reducing agents used here is polyacrylamide. It is found that two-phase drag reduction varies with pipe inclination geometry. The largest drag reduction efficiency occurs in horizontal pipes and which is up to seventy percent. Drag reduction efficiency in up-inclined section is up to sixty percent. Drag reduction in vertical section is the lowest and which can be up to about thirty percent. A mechanistic drag reduction model is proposed to predict drag reduction in gas-liquid two-phase flow. The results predicted are in good agreement with the experiment data.
机译:对两相输送管道的减阻进行研究很重要,因为两相流量具有高耗散量。本文使用直径为40mm的API X 52钢管,以模拟具有不同倾斜几何形状的管道,包括水平,挤压和垂直部分。上倾斜部分具有八度的倾斜角度。进行实验和理论分析,以研究这三个部分中气液两相流量的减阻特性。这里使用的阻力还原剂是聚丙烯酰胺。发现两相减阻随管倾斜几何形状而变化。在水平管中发生最大的阻力效率,其达到百分之七十。降低倾斜部分的降低效率高达六十百分点。垂直部分的减阻是最低的,最高可达大约30%。提出了一种机械阻力降低模型来预测气液两相流的减阻。预测的结果与实验数据吻合良好。

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