4.7 Article

Non-monotonic permeability variation during colloidal transport: Governing equations and analytical model

Journal

JOURNAL OF HYDROLOGY
Volume 557, Issue -, Pages 547-560

Publisher

ELSEVIER
DOI: 10.1016/j.jhydrol.2017.12.049

Keywords

Fines migration; Particle detachment; Colloidal transport; Permeability decline; Mathematical modelling; Exact solution

Funding

  1. Brazilian Scientific Fund CNPq

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Permeability decline associated with the migration of natural reservoir fines impairs the well index of injection and production wells in aquifers and oilfields. In this study, we perform laboratory corefloods using aqueous solutions with different salinities in engineered rocks with different kaolinite content, yielding fines migration and permeability alteration. Unusual permeability growth has been observed at high salinities in rocks with low kaolinite concentrations. This has been attributed to permeability increase during particle detachment and re-attachment of already mobilised fines by electrostatic attraction to the rock in stagnant zones of the porous space. We refine the traditional model for fines migration by adding mathematical expressions for the particle re-attachment rate, particle detachment with delay relative to salinity decrease, and the attached-concentration-dependency of permeability. A one-dimensional flow problem that accounts for those three effects allows for an exact analytical solution. The modified model captures the observed effect of permeability increase at high water salinities in rocks with low kaolinite concentrations. The developed model matches the coreflooding data with high accuracy, and the obtained model coefficients vary within their usual intervals. (C) 2017 Elsevier B.V. All rights reserved.

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