DocumentCode
2665280
Title
Nonlinear Simulation of Thermo-viscous Fingering in Miscible Displacements in Porous Media
Author
Islam, M.N. ; Maini, B.B. ; Azaiez, J.
Author_Institution
Dept. of Chem. & Pet. Eng., Univ. of Calgary, Calgary, AB
fYear
2007
fDate
13-16 May 2007
Firstpage
6
Lastpage
6
Abstract
The nonlinear simulation of interfacial instabilities in miscible displacements in porous media often requires sophisticated numerical algorithms as well as very fine spatial and temporal resolutions. In this study, Hartley transform based pseudo-spectral method is used to simulate time evolution of thermoviscous fingers in rectilinear geometry. The problem is formulated using continuity equation, Darcy´s law, and volume-averaged forms of convection-diffusion equation for mass and energy balance. The numerical code is validated against established results for isothermal displacements. The effects of exponential dependence of viscosity on concentration and temperature, Lewis number, and porosity on the stability of the thermo-viscous flow are examined. It has been generally observed that at practical values of porosity and Lewis number, the thermal front always lags behind the fluid front and the instability is dominated by the viscosity variation due to concentration.
Keywords
Hartley transforms; convection; flow instability; flow simulation; flow through porous media; viscosity; Darcy law; Hartley transform; Lewis number; continuity equation; convection-diffusion equation; interfacial instabilities; miscible displacements; nonlinear simulation; porous media; pseudospectral method; thermoviscous fingering; viscosity; Energy resolution; Equations; Fingers; Geometry; Isothermal processes; Solid modeling; Spatial resolution; Temperature dependence; Transforms; Viscosity;
fLanguage
English
Publisher
ieee
Conference_Titel
High Performance Computing Systems and Applications, 2007. HPCS 2007. 21st International Symposium on
Conference_Location
Saskatoon, SK
Print_ISBN
0-7695-2813-9
Type
conf
DOI
10.1109/HPCS.2007.21
Filename
4215556
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