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Effects of High Oil Viscosity on Slug Liquid Holdup in Horizontal Pipes

机译:高油粘度对水平管中的SLUP液体堆积的影响

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In the recent years,the increased consumption of hydrocarbon resources and the decline in discoveries of low viscosity oils increased the importance of high viscosity oils.Significant changes in flow behavior were observed with increasing oil viscosity.Determination of the liquid holdup in the slug body is essential to calculate pressure drop for multiphase flow systems.An experimental study was performed to investigate the effect of high oil viscosity on slug liquid holdup and liquid film height.144 tests were carried out in 50.8-mm ID horizontal pipe for different oil viscosities and superficial liquid and gas velocities.Tests were conducted at oil viscosities of 0.587,0.378,0.257 and 0.181 Pa·s.Superficial liquid and gas velocities varied from 0.1 to 0.8 m/s and 0.1 to 3.5 m/s,respectively.The experimental measurements were compared with the existing slug liquid holdup model predictions to investigate the performances of these models for high viscosity oil.The predictions of the Gregory et al.(1978),the Gomez et al.(2000),the Abdul-Majeed(2000),the Al-safran(2009)correlations and the Zhang et al.(2003)mechanistic model were compared with high viscosity data.It was concluded that the slug liquid holdup predictions of these empirical and mechanistic models disagree with measurements especially above a 2 m/s mixture velocity.New slug liquid holdup correlations were developed in this study.The new correlations are expected to improve predictions of slug liquid holdup for high viscosity oil especially at high mixture velocities.No significant effect of high oil viscosity on liquid film holdup was observed within the selected oil viscosity range of this study.
机译:近年来,碳氢化合物资源的消耗量增加和低粘度油的发现下降增加了高粘度油的重要性。随着油粘度的增加,观察到流动行为的变化。液体夹持的液体夹持是计算多相流动系统的压降是必要的。进行实验研究,研究了高油粘度对块液体保持的影响,液膜高度为50.8毫米ID水平管,用于不同的油粘度和浅表液体和气体速度。在0.587,0.378,0.257和0.181Pa·S. uPer液体和气体速度下进行液体和气体速度。分别从0.1〜0.8米/秒和0.1至3.5米/秒变化。实验测量值与现有的SLUI液体储存模型预测相比,研究了这些模型的高粘度油的性能。GRE的预测Gory等人。(1978),Gomez等人。(2000),Abdul-Majeed(2000),Al-Safran(2009)相关和张等人。(2003)力学模型与高粘度数据进行了比较得出结论是,这些实证和机械模型的SLUD液体持有预测不同意尤其是2m / s混合速度高于2m / s混合速度。在本研究中开发了新的SLUG液体储存相关性。预期新的相关性可以改善SLUG的预测高粘度油的液体保持尤其是在高混合速度下。在本研究的选定的油粘度范围内观察到高油粘度对液体膜堆叠的显着效果。

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