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Chapter 11: Scaling Issues in Porous and Fractured Media
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REFERENCES
Ababou, R., D. McLaughlin, L.W. Gelhar, and A.F.G. Thompson, Numerical simulation of three-
dimensional saturated flow in randomly heterogeneous porous media, Transport in Porous Media,
4, 549–565, 1989.
Bachu, S. and D. Cuthiell, Effects of core-scale heterogeneity on steady state and transient fluid flow in
porous media: Numerical analysis, Water Resour. Res., 26(5), 863–874, 1990.
Bakr, A.A., L.W. Gelhar, A.L. Gutjahr, and J.R. MacMillan, Stochastic analyses of spatial variability
in subsurface flows, 1, Comparison of one- and three-dimensional flows, Water Resour. Res.,14(2),
263–272, 1978.
Barton, C.C. and E. Larson, Fractal geometry of two-dimensional fracture networks at Yucca Moun-
tain, Southwest Nevada, paper presented at the International Symposium on Fundamentals of Rock
Joints, Swedish National Group of the International Society of Rock Mechanics, Bjorkliden, Sweden,
September, 1985.
Burrough, P.A., Multiscale sources of spatial variation in soil. I. The application of fractal concepts to
nested levels of soil variation, Journal of Soil Science, 34, 577–597, 1983.
Chao, H.C., H. Rajaram, and T. Illangasekare, Intermediate-scale experiments and numerical simulations
of transport under radial flow in a two-dimensional heterogeneous porous medium,Water Resour. Res.,
36(10), 2869–2884, 2000.
Dagan, G., Time-dependent macrodispersion of solute transport in anisotropic heterogeneous aquifers,
Water Resour. Res., 24(9), 1491–1500, 1988.
Dagan, G., Solute transport in heterogeneous porous formations, J. Fluid Mech., 145, 151–177, 1984.
Desbarats, A.J., Spatial averaging of transmissivity in heterogeneous fields with flow toward a well, Water
Resour. Res., 28(3), 757–767, 1992a.
Desbarats, A.J., Spatial averaging of hydraulic conductivity in three-dimensional heterogeneous porous
media, Math. Geol., 24(3), 249–267, 1992b.
Desbarats, A.J., Numerical estimation of effective permeability in sand-shale formations, Water Resour.
Res., 23(2), 273–286, 1987.
Deutsch, C.V., Calculating effective absolute permeability in sandstone/shale sequences, SPE Form.
Eval., 4(3), 343–348, 1989.
Eggleston, J. and S. Rojstaczer, Identification of large-scale hydraulic conductivity trends and the influence
of trends on contaminant transport, Water Resour. Res., 34(9), 2155–2168, 1998.
Fogg, G.E., Groundwater flow and sand body interconnectedness in a thick, multiple-aquifer system,
Water Resour. Res., 22(5), 679–694, 1986.
Freyberg, D.L., A natural gradient experiment on solute transport in a sand aquifer, 2, Spatial moments
and the advection and dispersion of nonreactive tracers, Water Resour. Res., 22(13), 2031–2046, 1986.
Garabedian, S.P., Large-scale dispersive transport in aquifers: Field experiments and reactive transport
theory, Ph.D. thesis, Dept. Civil Eng., Massachusetts Inst. Techn., Cambridge, Massachusetts, 290 pp.,
1987.
Gelhar, L.W., and C.L. Axness, Three-dimensional stochastic analysis of macrodispersion in aquifers,
Water Resour. Res., 19(1), 161–180, 1983.
Gelhar, L.W., C. Welty, and K.R. Rehfeldt, A critical review of data on field-scale dispersion in aquifers,
Water Resour. Res., 28(7), 1955–1974, 1992.
Gelhar, L.W., Stochastic Subsurface Hydrology, Prentice Hall, Englewood Cliffs, New Jersey, p. 390,
1993.
Gomez-Hernandez, J.J.andA.G.Journel, Stochasticcharacterizationofgrid-blockpermeabilities, Stanford
Center for Reservoir Forecasting, Reprt 7, Stanford, CA, p. 21 1994.
Gutjahr, A.L., L.W. Gelhar, A.A. Bakr, and J.R. Macmillan, Stochastic analysis of spatial variability in
subsurface flows, 2. Evaluation and application, Water Resour. Res., 14(5), 953–960, 1978.
Haggerty, R., S.W. Fleming, L.C. Meigs, and S.A. McKenna, Tracer tests in a fractured dolomite 2. Anal-
ysis of mass transfer in single-well injection-withdrawal tests, Water Resour. Res., 37(5), 1129–1143,
2001.

