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润湿性对牛顿流体和非牛顿流体两相流特性影响的孔隙尺度建模

Pore-Scale Modeling of the Effect of Wettability on Two-Phase Flow Properties for Newtonian and Non-Newtonian Fluids.

作者信息

Tembely Moussa, Alameri Waleed S, AlSumaiti Ali M, Jouini Mohamed S

机构信息

The Petroleum Institute, Khalifa University, Abu Dhabi P.O. Box 2533, UAE.

出版信息

Polymers (Basel). 2020 Nov 28;12(12):2832. doi: 10.3390/polym12122832.

Abstract

The Darcy-scale properties of reservoir rocks, such as capillary pressure and relative permeability, are controlled by multiphase flow properties at the pore scale. In the present paper, we implement a volume of fluid (VOF) method coupled with a physically based dynamic contact angle to perform pore-scale simulation of two-phase flow within a porous medium. The numerical model is based on the resolution of the Navier-Stokes equations as well as a phase fraction equation incorporating a dynamic contact angle model with wetting hysteresis effect. After the model is validated for a single phase, a two-phase flow simulation is performed on both a Newtonian and a non-Newtonian fluid; the latter consists of a polymer solution displaying a shear-thinning power law viscosity. To investigate the effects of contact angle hysteresis and the non-Newtonian nature of the fluid, simulations of both drainage and imbibition are carried out in order to analyze water and oil saturation-particularly critical parameters such as initial water saturation (Swi) and residual oil saturation (Sor) are assessed in terms of wettability. Additionally, the model sensitivities to the consistency factor (χ), the flow behavior index (), and the advancing and receding contact angles are tested. Interestingly, the model correctly retrieves the variation in Sor and wettability and predicts behavior over a wide range of contact angles that are difficult to probe experimentally.

摘要

储层岩石的达西尺度特性,如毛管压力和相对渗透率,受孔隙尺度下的多相流特性控制。在本文中,我们采用流体体积(VOF)方法并结合基于物理的动态接触角,对多孔介质内的两相流进行孔隙尺度模拟。该数值模型基于纳维-斯托克斯方程的求解以及一个包含具有润湿滞后效应的动态接触角模型的相分数方程。在对单相模型进行验证后,对牛顿流体和非牛顿流体都进行了两相流模拟;后者由表现出剪切变稀幂律粘度的聚合物溶液组成。为了研究接触角滞后和流体的非牛顿性质的影响,进行了排水和吸水模拟,以分析水和油的饱和度——特别是根据润湿性评估诸如初始含水饱和度(Swi)和残余油饱和度(Sor)等关键参数。此外,还测试了模型对稠度系数(χ)、流动行为指数()以及前进和后退接触角的敏感性。有趣的是,该模型正确地再现了Sor和润湿性的变化,并预测了在很宽的接触角范围内难以通过实验探测的行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d82/7761285/e04c8092dd9a/polymers-12-02832-g002.jpg

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