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Study of Oil-Water Two-Phase Stratified Flow in Horizontal Fractures

机译:水平裂缝中油水两相分层流动研究

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The relative permeability of oil-water two-phase flow is an important parameter in fractured petroleum reservoirs. It is widely accepted that the sum of relative permeabilities is less than 1. In this study, a series of experiments have been conducted on six rectangular fractures for oil-water two-phase flows. Analytical investigations of the effects of flow rate, aspect ratio, and fracture size on the relative permeability of oil-water two-phase are analysed. Basic fluid flow equations are combined to develop a new analytical model for water-oil two-phase flow in a horizontal fracture. The simulation results predicted by this model are in good agreement with the experimental data. The relative permeability is a function of flow ratio, viscosity ratio, aspect ratio and saturation. It increases as aspect ratio increases if the fracture depths are the same, while it decreases as aspect ratio increases if the fracture widths are identical. Both experiment and model indicate that the sum of relative permeabilities of oil and water is greater than 1 in some cases, different from the accepted view.
机译:油水两相流的相对渗透性是裂缝石油储层中的重要参数。众所周度地接受了相对渗透性的总和小于1.在本研究中,已经在六个矩形骨折上进行了一系列实验,用于油水两相流动。分析了流速,纵横比和断裂尺寸对油水两相相对渗透性的分析研究。基本流体流动方程组合以开发水平裂缝中的水油两相流的新分析模型。该模型预测的仿真结果与实验数据吻合良好。相对渗透性是流动比,粘度比,纵横比和饱和的函数。如果断裂深度相同,它会增加纵横比增加,而当断裂宽度是相同的,它随着纵横比而降低。两种实验和模型都表明,在某些情况下,石油和水的相对渗透率的总和大于1,与可接受的视图不同。

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