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New insights on the complex dynamics of two-phase flow in porous media under intermediate-wet conditions

机译:中湿条件下多孔介质中两相流复杂动力学的新见解

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摘要

Multiphase flow in porous media is important in a number of environmental and industrial applications such as soil remediation, CO2 sequestration, and enhanced oil recovery. Wetting properties control flow of immiscible fluids in porous media and fluids distribution in the pore space. In contrast to the strong and weak wet conditions, pore-scale physics of immiscible displacement under intermediate-wet conditions is less understood. This study reports the results of a series of two-dimensional high-resolution direct numerical simulations with the aim of understanding the pore-scale dynamics of two-phase immiscible fluid flow under intermediate-wet conditions. Our results show that for intermediate-wet porous media, pore geometry has a strong influence on interface dynamics, leading to co-existence of concave and convex interfaces. Intermediate wettability leads to various interfacial movements which are not identified under imbibition or drainage conditions. These pore-scale events significantly influence macro-scale flow behaviour causing the counter-intuitive decline in recovery of the defending fluid from weak imbibition to intermediate-wet conditions.
机译:多孔介质中的多相流在许多环境和工业应用中都很重要,例如土壤修复,CO 2固存和提高采油率。润湿特性控制了多孔介质中不混溶流体的流动以及孔隙空间中的流体分布。与强湿条件相比,人们对中湿条件下不混溶驱替的孔隙尺度物理学了解较少。这项研究报告了一系列的二维高分辨率直接数值模拟的结果,目的是了解在中湿条件下两相不混溶流体流动的孔隙尺度动力学。我们的结果表明,对于中湿多孔介质,孔的几何形状对界面动力学有很大的影响,导致凹凸界面的共存。中等润湿性导致各种界面运动,在吸水或排水条件下无法识别。这些孔垢事件显着影响宏观尺度的流动行为,导致防护流体从弱吸水状态恢复到中等湿润状态的反比下降。

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