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- W2018957046 abstract "The effect of the fracture distribution on CO2 injection into coal seams was studied with a heterogeneous model having dual porosity to represent both the primary medium (the coal matrix) and the secondary medium (the fractures) under variable stress conditions. A numerical generation method and a digital image processing method were used to model the heterogeneous fracture distribution in the coal. The model solutions demonstrate that: (1) the fractures are the main channel for gas flow and their distribution has an important impact on the gas injection rate; (2) the fractures only affect the injection rate of CO2 into the coal but not the final storage amount; (3) when gas is injected into coal the fractures will first expand and then close due to the changing effective stresses and the adsorption induced swelling of coal grains. This fully coupled dual-porosity model with a heterogeneous fracture distribution provides a way to predict the CO2 injection into a coal seam." @default.
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- W2018957046 date "2012-01-01" @default.
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- W2018957046 title "The effect of the fracture distribution on CO2 injection into a coal seam" @default.
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- W2018957046 doi "https://doi.org/10.1016/j.ijmst.2011.06.012" @default.
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