Theoretical and Experimental Investigations of Miscible Displacement in Fractured Porous Media

In this paper a mathematical model for miscible displacement in fractured porous media is developed. The model takes into account mechanisms of mass transfer between fracture and matrix. The model is normalized by using the dimensionless parameters, which characterize the process, and the analytical...

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Published inTransport in porous media Vol. 57; no. 1; pp. 59 - 73
Main Authors Jamshidnezhad, M., Montazer-Rahmati, M., Sajjadian, V. A.
Format Journal Article
LanguageEnglish
Published Dordrecht Springer 01.10.2004
Springer Nature B.V
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Abstract In this paper a mathematical model for miscible displacement in fractured porous media is developed. The model takes into account mechanisms of mass transfer between fracture and matrix. The model is normalized by using the dimensionless parameters, which characterize the process, and the analytical solutions of the resulting system of equations are provided by utilizing the method of characteristics. For comparison the results of model with experimental results, laboratory displacement tests have been performed in fractured systems under miscible displacement. The porous media used were cylindrical Asmari cores from Iranian reservoirs containing an artificially vertical fracture. Normal heptane and kerosene were two miscible fluid used. There is very good agreement between experiments and model prediction.
AbstractList In this paper a mathematical model for miscible displacement in fractured porous media is developed. The model takes into account mechanisms of mass transfer between fracture and matrix. The model is normalized by using the dimensionless parameters, which characterize the process, and the analytical solutions of the resulting system of equations are provided by utilizing the method of characteristics. For comparison the results of model with experimental results, laboratory displacement tests have been performed in fractured systems under miscible displacement. The porous media used were cylindrical Asmari cores from Iranian reservoirs containing an artificially vertical fracture. Normal heptane and kerosene were two miscible fluid used. There is very good agreement between experiments and model prediction.
Author Jamshidnezhad, M.
Montazer-Rahmati, M.
Sajjadian, V. A.
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  surname: Sajjadian
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Cites_doi 10.2118/39702-MS
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Transport in Porous Media is a copyright of Springer, (2004). All Rights Reserved.
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Issue 1
Keywords miscible displacement
mathematical models
reservoirs
matrix-fracture mass transfer
drill cores
displacements
prediction
fractured porous media
method of characteristics
laboratory miscible displacement
porous media
Analytical solution
fractures
methodology
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References 5270276_CR7
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A. M. Saidi (5270276_CR8) 1987
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StartPage 59
SubjectTerms Displacement
Earth sciences
Earth, ocean, space
Engineering and environment geology. Geothermics
Exact sciences and technology
Exact solutions
Heptanes
Hydrocarbons
Hydrogeology
Hydrology. Hydrogeology
Kerosene
Mass transfer
Mathematical models
Matrix methods
Method of characteristics
Miscibility
Pollution, environment geology
Porous media
Process parameters
Sedimentary rocks
Title Theoretical and Experimental Investigations of Miscible Displacement in Fractured Porous Media
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