3D simulations of gas injection on callovo-oxfordian claystone assuming spatial heterogeneity and anisotropy
Cita com:
hdl:2117/374585
Document typeArticle
Defense date2022-11
PublisherElsevier
Rights accessOpen Access
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Attribution-NonCommercial-NoDerivs 4.0 International
Abstract
A series of gas injection tests on Callovo-Oxfordian (COx) claystone from the Bure underground research laboratory (URL) in France were carried out at the British Geological Survey (BGS). The tests were performed using a triaxial apparatus specifically designed to capture small volumetric strains induced by the injected gas flow and consequent material dilatancy. The long-duration experiments were monitored throughout. Measurements also included pressure, stresses (axial and radial stresses prescribed for each test stage), rate of gas inflow, gas outflow volume as well as pore-pressures observed at various points of the sample. A coupled hydro-gas-mechanical 3D numerical model has been developed to simulate the tests. Initial permeability is assumed heterogeneous throughout the specimen and embedded fractures are incorporated in the formulation. Gas pressure-induced deformations during the test lead to variations of permeability due to changes in matrix porosity and, especially, fracture aperture as well as fracture orientation due to material anisotropy. A programme of sensitivity analyses involving the variation of different aspects and parameters of the model contributes to a better understanding of the phenomena and highlights its complexity. The model is able to reproduce the observed behaviour of the tests.
CitationDamians, I.P.; Olivella, S.; Gens, A. 3D simulations of gas injection on callovo-oxfordian claystone assuming spatial heterogeneity and anisotropy. "International journal of rock mechanics and mining sciences", Novembre 2022, vol. 159, p. 105232:1-105232:23.
ISSN1365-1609
Publisher versionhttps://www.sciencedirect.com/science/article/pii/S1365160922001988
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