Pore-Scale Analysis of the Permeability Damage and Recovery during Cyclic Freshwater and Brine Injection in Porous Media Containing Non-Swelling Clays

Author:

Bhuvankar Pramod1ORCID,Cihan Abdullah1,Birkholzer Jen T.1ORCID

Affiliation:

1. Energy Geosciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94530, USA

Abstract

Permeability damage in subsurface porous media caused by clay mobilization is encountered in many engineering applications, such as geothermal energy, water disposal, oil recovery, and underground CO2 storage. During the freshwater injection into rocks containing brine, the sudden decrease in salinity causes native clay fines to detach and clog pore throats, leading to a significant decline in permeability. The clay fines detach due to weakened net-attractive forces binding them to each other and the grain. Past experiments link this permeability damage on the immediate history of the salinity and the direction of flow. To better understand this phenomenon, we conducted pore-scale simulations of cyclic injection of freshwater and brine into sandstone containing Kaolinite clay. Our simulations establish a link between the clay-fine trajectory and the permeability trend observed by Khilar and Fogler (1983). For a uniform clay size of 3 microns, we observe a permeability decline by two orders of magnitude during freshwater injection with respect to brine injection. Increasing salinity and simultaneously reversing flow direction restores the permeability. The permeability restoration upon reversing the brine flow direction is attributed to the unblocking of pore throats in the reverse direction by the movement of the clay particles along the grain surfaces by the hydrodynamic force and the strong net-attractive force under high salinity.

Funder

U.S. Department of Energy

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference41 articles.

1. Civan, F. (2015). Reservoir Formation Damage: Fundamentals, Modeling, Assessment, and Mitigation, Gulf Professional Publishing. [3rd ed.].

2. Corapcioglu, M., Abboud, N., and Haridas, A. (1987). Advances in Transport Phenomena in Porous Media, Springer.

3. An experimental evaluation of unique CO2 flow behaviour in loosely held fine particles rich sandstone under deep reservoir conditions and influencing factors;Ranjith;Energy,2017

4. Experimental investigation on irreversible changes of hydraulic conductivity on the seawater-freshwater interface in coastal aquifers;Goldenberg;Water Resour. Res.,1983

5. Khilar, K., and Fogler, H. (1998). Migrations of Fines in Porous Media, Springer.

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