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首页> 外文期刊>Journal Of Theoretical And Applied Mechanics >A Computation Fluid Dynamic Model for Gas Lift Process Simulation in a Vertical Oil Well
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A Computation Fluid Dynamic Model for Gas Lift Process Simulation in a Vertical Oil Well

机译:垂直油井气举过程模拟的计算流体动力学模型

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摘要

Continuous gas-lift in a typical oil well was simulated using computational fluid dynamic (CFD) technique. A multi fluid model based on the momentum transfer between liquid and gas bubbles was employed to simulate two-phase flow in a vertical pipe. The accuracy of the model was investigated through comparison of numerical predictions with experimental data. The model then was used to study the dynamic behaviour of the two-phase flow around injection point in details. The predictions by the model were compared with other empirical correlations, as well. To obtain an optimum condition of gas-lift, the influence of the effective parameters including the quantity of injected gas, tubing diameter and bubble size distribution were investigated. The results revealed that increasing tubing diameter, the injected gas rate and decreasing bubble diameter improve gas-lift performance.
机译:使用计算流体动力学(CFD)技术模拟了典型油井中的连续气举。基于液体和气泡之间动量传递的多流体模型被用来模拟垂直管道中的两相流。通过将数值预测与实验数据进行比较,研究了模型的准确性。然后使用该模型详细研究注入点附近的两相流动力学行为。该模型的预测也与其他经验相关性进行了比较。为了获得最佳的气举条件,研究了有效参数的影响,包括注入的气体量,油管直径和气泡尺寸分布。结果表明,增加油管直径,注入气体速率和减小气泡直径可改善气举性能。

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