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Chapter 2: Gas Transport Mechanisms
Forchhemer, P., 1901, “Wasserbewegung durch Boden,” Z. Vereines Deutscher Ingenieure, 45:1736–1741
and 1781–1788. 25
Getachew, D., W.J. Minkowycz, and J.L. Lage, 2000, “A modified form of the κ − ε model for turbulent
flows of an incompressible fluid in porous media,” Int. J. Heat Mass Transfer, 43:2909–2915.
Graham, T., 1833, “On the law of diffusion of gases,” Phil. Mag., 2:175, 269, 351; reprinted in Chemical
and Physical Researches, pp. 44–70, Edinburgh Univ. Press, Edinburgh, Scotland, UK, 1876.
Graham, T., 1846, “On the motion of gases,” Phil. Trans. Roy. Soc., 136:573; reprinted in Chemical and
Physical Researches, pp. 88–161, Edinburgh Univ. Press, Edinburgh, Scotland, UK, 1876.
Heid, J.G., J.J. McMahon, R.F. Nielson, and S.T. Yuster, 1950, “Study of the Permeability of Rocks to
Homogeneous Fluids,” API Drilling and Production Practice, pp. 230–244.
Jackson, R., 1977, Transport in Porous Catalysts, Chem Eng. Monograph 4, Elsevier, New York.
Jones, F.O., and W.W. Owens, 1980, “A Laboratory Study of Low-Permeability Gas Sands,” J. Petroleum
Techology (September 1980), pp. 1631–1640.
Joseph, D.D., D.A. Nield, and Papanicolaou, 1982, “Nonlinear equation governing flow in a saturated
porous media,” Water Resources Res., 18:1049–1052 and 19:591.
Kaviany, M., 1995, Principles of Heat Transfer in Porous Media, Second Edition, Springer-Verlag New
York, Inc., New York. Check 1995 second edition.
Klinkenberg, L.J., 1941, “The Permeability of Porous Media to Liquids and Gases,” API Drilling and
Production Practice, pp. 200–213.
Lage, J.L., 1998, “The fundamental theory of flow through permeable media: From Darcy to turbulence,”
Transport Phenomena in Porous Media, D.B. Ingham and I. Pop, eds., Elsevier, Amsterdam, pp. 1–30.
Mason, E.A., R.B. Evans, III, and G.M. Watson, 1963, “Gaseous diffusion in porous media. III. Thermal
transpiration,” J. Chem. Phys., 38:1808–1826.
Mason, E.A., and A.P. Malinauskas, 1964, “Gaseous diffusion in porous media. IV. Thermal diffusion,” J.
Chem. Phys., 41:3815–3819.
Mason, E.A., and A.P. Malinauskas, 1983, Gas Transport in Porous Media: The Dusty-Gas Model, Chem
Eng. Monograph 17, Elsevier, New York.
Masuoka, T., and Y. Takatsu, 1996, “Turbulence model for flow through porous media,” Int. J. Heat Mass
Transfer, 39:2803–2809.
Millington, R.J., and J.M. Quirk, 1961, “Permeability of porous solids,” Trans. Faraday Soc.,
57:1200–1207.
Nield, D.A., andA. Bejan, 1999, Convection in Porous Media, Second Edition, Springer-Verlag NewYork,
Inc., New York.
Oldenburg, C.M., S.W. Webb, K. Pruess, and G.J. Moridis, 2004, “Mixing of Stably Stratified Gases
in Subsurface Reservoirs: A Comparison of Diffusion Models,” Transport in Porous Media, 54:
323–334.
Pruess, K., 1991, TOUGH2 – A General-Purpose Numerical Simulator for Multiphase Fluid and Heat
Flow, LBL-29400, Lawrence Berkeley Laboratory.
Reda, D.C., 1987, “Slip-Flow Experiments in Welded Tuff: The Knudsen Diffusion Problem,” Coupled
Processes Associated with Nuclear Waste Repositories, C.-F. Tsang, ed., pg. 485–493, Academic Press,
Inc., Orlando, 1987.
Reid, R.C., J.M. Prausnitz, and B.E. Poling, 1987, The Properties of Gases & Liquids, Fourth Edition,
McGraw-Hill, Inc.
Shapiro, A.A., 1993, “A kinetic theory of the filtration of rarefied gas in an anisotropic porous medium,”
Theoretical Foundations of Chemical Engineering, 27:140–148.
Sleep, B.E., 1998, “Modeling transient organic vapor transport in porous media with the dusty gas model,”
Advances in Water Resources, 22:247–256.
Thorstenson, D.C., and D.W. Pollock, 1989a, “Gas Transport in Unsaturated Zones: Multicomponent
Systems and the Adequacy of Fick’s Laws,” Water Resourc. Res., 25:477–507.
Thorstenson, D.C., and D.W. Pollock, 1989b, “Gas Transport in Unsaturated Porous Media: TheAdequacy
of Fick’s Law,” Reviews of Geophysics, 27:61–78.
Vafai, K., and C.L. Tien, 1981, “Boundary and inertia effects on flow and heat transfer in porous media,”
Int. J. Heat Mass Trans., 24:195–203.