Title of article :
Development of a multi-mechanistic, dual-porosity, dual-permeability, numerical flow model for coalbed methane reservoirs
Author/Authors :
Thararoop، نويسنده , , Prob and Karpyn، نويسنده , , Zuleima T. and Ertekin، نويسنده , , Turgay، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
11
From page :
121
To page :
131
Abstract :
Most existing coalbed methane (CBM) simulators usually treat coal seams as dual-porosity, single-permeability systems ignoring the effects of water presence in the coal matrix. In this study, a compositional dual-porosity, dual-permeability CBM simulator has been developed. The CBM reservoir is treated as a dual-porosity, dual-permeability system consisting of coal matrix and fracture network. The development of the proposed numerical model incorporates the effects of water presence in the coal matrix and the phenomena of coal shrinkage and swelling. The transport of gas follows a multi-mechanistic flow mechanism triggered by pressure and concentration gradients. In addition, the proposed simulator is able to collapse to simpler coal seam representations and was successfully tested against the existing commercial and research CBM simulators for CO2-enhanced CBM recovery process. Successful history matching exercises were performed on pure CO2 injection and flue gas injection tests using the actual field data.
Keywords :
Enhanced coalbed methane recovery , Coal shrinkage and swelling , Coalbed methane simulation , Dual-porosity dual-permeability model , Multi-mechanistic gas flow , Water in the coal matrix
Journal title :
Journal of Natural Gas Science and Engineering
Serial Year :
2012
Journal title :
Journal of Natural Gas Science and Engineering
Record number :
2233578
Link To Document :
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