CFD Modeling and Simulation of Oil-Water Flows in Oil Reservoir

Rachida Chemini, M. Aksouh, Bassim Lemouari, Soumana Abubacar Djibo
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Abstract

Understanding fluid flow in porous media is of tremendous importance for many industrial and environmental applications at various spatial and temporal scales. The present study consequently focuses on CFD 2D modeling of single-phase flow in steady mode, and unsteady mode oil-water flows by the Volume-of-Fluid method (VOF) in oil reservoir using ANSYS Fluent while meshing has been done on Gambit. The effects of temperature and permeability on water flow in porous medium, which was considered as a reservoir have been studied in this work, velocity and pressure distributions, also have been presented. In oil-water flow simulation, total pressure and oil volume fraction distributions have been visualized. Besides, the study of pressure gradient and permeability effects on the breakthrough time and on the recoverable oil has been carried out.
油层油水流动的CFD建模与模拟
了解多孔介质中的流体流动对于许多工业和环境应用在不同的空间和时间尺度上是非常重要的。因此,本文的研究重点是在Gambit上进行网格划分的同时,利用ANSYS Fluent对稳态模式下的单相流动和非稳态模式下的油水流动进行CFD二维建模。本文研究了温度和渗透率对多孔介质中水流的影响,并给出了速度和压力的分布。在油水流动模拟中,总压和油体积分数的分布已经可视化。此外,还研究了压力梯度和渗透率对突破时间和可采原油的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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