Study of two-phase flow friction factor in EOR injection wellbores

Kanagaswarran Citalingam Mudliar, M. A. Shoushtari, Abdelrahman S. Bishari
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Abstract

Two-phase flow is said as the flow of two phases simultaneously in a pipe. Two-phase flow occurs in both production and injection wellbores. In injection wellbores, the two-phase moves downward and so it is known as downward flow. The complexity of two-phase flow starts due to the present of flow patterns in the pipe. The flow patterns vary due to the density and viscosity differences between the phases which contribute to the difference in velocity of both phases. The geometry of the well is another factor which donates to the difference in flow pattern. The simultaneous flow of these two-phases creates a pressure drop which is caused by the loss due to friction, acceleration and elevation. The friction lose is due to the friction between both the phases besides the friction between the phase and the pipe wall. This study is aimed at calculating the friction factor of two-phase flow in injection wellbores based on different flow patterns. The calculation of two-phase flow has been developed by various scholars and a few mechanistic models been published. Based on the available mechanistic models, Hasan and Kabir model has been chosen with the reason of accuracy and continuity.
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提高采收率注水井两相流摩擦系数研究
两相流是指两相同时在管内流动。两相流在生产井和注入井中都存在。在注入井中,两相流体向下流动,因此称为向下流动。两相流的复杂性是由管内流动形态的存在引起的。由于两相之间的密度和粘度不同,流动模式也不同,这导致两相的速度不同。井的几何形状是造成流型差异的另一个因素。这两相同时流动会产生压降,这是由于摩擦、加速度和仰角造成的损失造成的。除了相与管壁之间的摩擦外,两相之间的摩擦也造成了摩擦损失。本研究旨在计算不同流动模式下注入井中两相流的摩擦系数。两相流的计算得到了许多学者的发展,并发表了一些力学模型。在已有的力学模型基础上,基于准确性和连续性的考虑,选择了Hasan和Kabir模型。
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