Dynamics and Geometry Effects on the Capillary Flows in Porous Media for Enhanced Oil Recovery

Author:

Soleimani Hassan1,Ali Hassan1,Yahya Noorhana1,Khodapanah Leila1,Sabet Maziyar2,Demira Birol M.R.3,Kozlowski Gregory4

Affiliation:

1. Universiti Teknologi PETRONAS

2. Institute Teknologi Brunei (ITB)

3. Schlumberger Company Convention Tower

4. College of Science & Mathematics

Abstract

The continuing depletion of light oil supplies and the rapidly growing demand for energy are forcing oil and gas companies to explore unconventional oil extraction techniques. The structure and flow rate implies an impact on the trapping and mobilization of oil in the reservoir. This article studies the effect of pore geometry and dynamics on water-oil displacement as a two-phase flow system. The pore geometries of sandstone were extracted using the non-destructive 3D micro computational tomography (micro-CT) technique. Two-phase flow simulations were performed using COMSOL Multiphysics on the micro-CT images to show the effect of the capillary number and the flow pattern. Velocity and relative permeability of the non-wetting phase at different points of the porous structure was computed. The effect of viscosity of wetting fluid on the pore structure was also studied to evaluate the parameters affecting enhanced oil recovery (EOR).

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Radiation

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