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-
- 1
-
Dullien, F.A.L., `Porous Media: Fluid Transport and Pore Structure',
(Academic Press, San Diego, CA, 1992).
- 2
- Martys, N.S. and Chen, H., `Simulation of multicomponent fluids in complex
three-dimensional geometries by the lattice Boltzmann method',Phys. Rev. E, 53
(1)(1996) 743-750.
- 3
- Schwartz L.M., Martys, N., Bentz, D.P., Garboczi, E.J. and Torquato, S.,
`Cross-property relations and permeability estimation in model porous
media',Phys. Rev. E 48 (6) (1993) 4584-4591.
- 4
- Rothman D.H. and Zaleski, S., `Lattice-gas model of phase separation:
interfaces, phase transitions, and multiphase flow', Rev. Mod.
Phys., 66 (4) (1994) 1417-1479.
- 5
- Qian, Y.H., d'Humières, D., and Lallemand, P.,
`Lattice BGK models for Navier-Stokes equation', Europhys. Lett.
17 (1992) 479-484.
- 6
- Chen, H., Chen, S.Y. and Matthaeus, W.H.,`Recovery of the Navier-Stokes equations using a lattice-gas Boltzmann method', Phys. Rev. A, 45 (1992),R5339-R5342.
- 7
- Vicsek, T., `Fractal Growth Phenomena' (Worlds Scientific, Singapore, 1989).
- 8
- Archie, G.E., `The Electrical Resistivity Log as an Aid in Determining
Some Reservoir Characteristics' Trans. AIME, 146 (1942) 54-62.
- 9
- Press, W.H., Flannery, B.P., Teukolsky, S.A. and
Vettering W.T, `Numerical Recipes: The
Art of Scientific Programing', (Cambridge University Press, New York, 1988).
- 10
- Feng, S., Halperin, H.I. and Sen, P.N., `Transport properties of continuum
systems near the percolation threshold', Phys. Rev. B 35 (1987) 197-214.
- 11
- Roberts, J. N. and Schwartz, L.W., `Grain consolidation and electrical
conductivity in porous media', Phys. Rev. B, 31 (9) (1985) 5990-5997.
- 12
- Shan X., and Chen, H., `Simulation of nonideal gases and liquid-gas
phase transitions by the lattice Boltzmann equation', Phys. Rev. E 49 (4) (1994)
2941-2948.
- 13
- Auzerais, F.M., Dunsmuir, J., Ferrèol, B.B., Martys, N.,
Olson, J., Ramakrishnan, T.S., Rothman, D.H., and Schwartz, L.M., `Transport
in sandstone: A study based on three dimensional microtomography',
Geophysical Review Letters, 23 (7) (1996) 705-708.
- 14
- Bentz, D.P., Garboczi E.J., and Martys, N.S., `Application of
Digital-Image-Based Models to Microstructure, Transport Properties, and Degradation of
Cement-Based Materials, in `The Modelling
of Microstructure and Its Potential for Studying Transport Properties and
Durability', (Kluwer Academic Publishers, Netherlands, 1996) 167-185.
- 15
- Bender, C.M. and Orszag, S.A., `Advanced Mathematical Methods
for Scientists and Engineers', (McGraw-Hill, New York, 1978).
- 16
- Halamickova, P., Detwiler, R.J., Bentz, D.P., and Garboczi, E.J.,
`Water Permeability and Chloride Ion Diffusion in Portland Cement Mortars:
Relationship to Sand Content and Critical Pore Diameter',
Cement and Concrete Research, 25 (4)(1995) 790-802.
- 17
- Martys, N., Robbins, M.O., and Cieplak, M., `Scaling relations for interface
motion through disordered media: Application to two-dimensional fluid
invasion', Phys. Rev. B., 44 (22) (1991) 12294-12306.
- 18
- Jeffery, D.J., `Conduction through a random suspension of spheres', Proc. Roy. Soc. London A, 335 (1973) 355-367.
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