Effects of carbonated water injection on the pore system of a carbonate rock (coquina)

Author:

Silveira Thaís M.1,Hoerlle Fernanda1,Rocha Adriano S.1,Lima Maira C.O1,Ramirez Mateus G.2,Pontedeiro Elizabeth M.13,van Genuchten Martinus Th.34,Cruz Daniel O.A.2,Couto Paulo1

Affiliation:

1. Department of Civil Engineering , COPPE, Federal University of Rio de Janeiro , RJ, Brazil .

2. Department of Mechanical Engineering , COPPE, Federal University of Rio de Janeiro , RJ, Brazil .

3. Department of Earth Sciences , Utrecht University , Utrecht , Netherlands .

4. Center for Environmental Studies , CEA, São Paulo State University , Rio Claro , SP, Brazil .

Abstract

Abstract CO2 injection is a well-known Enhanced Oil Recovery (EOR) technique that has been used for years to improve oil extraction from carbonate rock and other oil reservoirs. Optimal functioning of CO2 injection requires a thorough understanding of how this method affects the petrophysical properties of the rocks. We evaluated pore-scale changes in these properties, notably porosity and absolute permeability, following injection of CO2-saturated water in two coquina outcrop samples from the Morro do Chaves Formation in Brazil. The coquinas are close analogues of Pre-salt oil reservoirs off the coast of southern Brazil. The effects of carbonated water injection were evaluated using a series of experimental and numerical steps before and after coreflooding: cleaning, basic petrophysics, microtomography (microCT) imaging, nuclear magnetic resonance (NMR) analyses, and pore network modeling (PNM). Our study was motivated by an earlier experiment which did not show the development of a wormhole in the center of the sample, with a concomitant increase in permeability of the coquina as often noted in the literature. We instead observed a substantial decrease in the absolute permeability (between 71 and 77%), but with little effect on the porosity and no wormhole formation. While all tests were carried out on both samples, here we present a comprehensive analysis for one of the samples to illustrate changes at the pore network level. Different techniques were used for the pore-scale analyses, including pore network modeling using PoreStudio, and software developed by the authors to enable a statistical analysis of the pore network. Results provided much insight in how injected carbonated water affects the pore network of carbonate rocks.

Publisher

Walter de Gruyter GmbH

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