Page 31 - gas transport in porous media
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Superscript
D ordinary diffusion Webb
K Knudsen diffusion
T total
∗ effective porous media value
REFERENCES
Abriola, L.M., C.-S. Fen, and H.W. Reeves, 1992, “Numerical simulation of unsteady organic vapor
transport in porous media using the dusty gas model,” Subsurface Contamination by Immiscible Fluids,
Wyre, ed., Balkema, Rotterdam, pp. 195–202.
Abriola, L.M., and G.F. Pinder, 1985, “A multiphase approach to the modeling of porous media
contamination by organic compounds, 1. Equation development,” Water Resourc. Res., 21:11–18.
Abu-El-Sha’r, W., and L.M. Abriola, 1997, “Experimental assessment of gas transport mechanisms in
natural porous media: Parameter evaluation,” Water Resourc. Res., 33:505–516.
Altevogt, A.S., D.E. Rolston, and S. Whitaker, 2003a, “New equations for binary gas transport in porous
media, Part 1: equation development,” Adv. Water Resources, 26:695–715.
Altevogt, A.S., D.E. Rolston, and S. Whitaker, 2003b, “New equations for binary gas transport in porous
media, Part 1: experimental validation,” Adv. Water Resources, 26:695–715.
Antohe, B.V., and J.L. Lage, 1997, “A general two-equation macroscopic turbulence model for
incompressible flow in porous media,” Int. J. Heat Mass Transfer, 40:3013–3024.
Arnost, D. and P. Schneider, 1995, “Dynamic transport of multicomponent mixtures of gases in porous
solids,” Chem. Eng. J., 55:91–99.
Bear, J., 1979, Hydraulics of Groundwater, McGraw-Hill Book Company, New York.
Beavers, G.S., E.M. Sparrow, and D.E. Rodenz, 1973, “Influence of bed size on the flow characteristics
and porosity of randomly packed beds of spheres,” J. Appl. Mech., 40:655–660.
Bird, R.B., W.E. Stewart, and E.N. Lightfoot, 1960, Transport Phenomena, John Wiley & Sons, New York.
Carslaw, H.S., and J.C. Jaeger, 1959, Conduction of Heat in Solids, Second Edition, Oxford University
Press, London.
Chen, O.T., and R.G. Rinker, 1979, “Modification of the Dusty-Gas Equation to predict Mass Transfer in
General Porous Media,” Chemical Engineering Science, 34:51–61.
Cunningham, R.E., and R.J.J. Williams, 1980, Diffusion in Gases and Porous Media, Plenum Press,
New York.
Darcy, H.P.G., 1856, “Les Fontaines Publiques de la Ville de Dijon,” Victor Dalmont, Paris.
Dullien, F.A.L., 1992, Porous Media: Fluid Transport and Pore Structure, Second Edition,Academic Press,
Inc., San Diego.
Dupuit, A.J.E.J., 1863, “Etudes Theoriques et Pratiques sur le Mouvement des aux dans les Canaux
Decouverts et a Travers les Terrain Permeables,” Victor Dalmont, Paris.
Evans, III, R.B., G.M. Watson, and E.A. Mason, 1961, “Gas Diffusion in Porous Media at Uniform
Pressure,” J. Chem. Physics, 35:2076–2083.
Evans, III, R.B., G.M. Watson, and E.A. Mason, 1962a, “Gas Diffusion in Porous Media. II Effect of
Pressure Gradients,” J. Chem. Physics, 36:1894–1902.
Evans, III, R.B., G.M. Watson, and J. Truitt, 1962b, “Interdiffusion of gases in a low permeability graphite
at uniform pressure,” J. Applied Physics, 33:2682.
Evans, III, R.B., G.M. Watson, and J. Truitt, 1963, “Interdiffusion of gases in a low permeability graphite.
II. Influence of pressure gradients,” J. Applied Physics, 34:2020.
Fen, C.-S., and L.M. Abriola, 2004, “A comparison of mathematical model formulations for organic vapor
transport in porous media,” Adv. Water Reources, 27:1005–1016.
Feng, C., and W.E. Stewart, 1973, “Practical models for isothermal diffusion and flow of gases in porous
solids,” Ind. Eng. Chem. Fundam., 12:143–147.