References
- A.K. Biswas, History of Hydrology, Elsevier, New York, 1970,
p. 388.
- J. Chen, H. Wu, H. Qian, X.Y. Li, Challenges and prospects
of sustainable groundwater management in an agricultural
plain along the silk road economic belt, north-west China, Int.
J. Water Resour. Dev., 34 (2016) 354–368.
- A.K. Chaudhry, K. Kumar, M.A. Alam, Groundwater
contamination characterization using multivariate statistical
analysis and geostatistical method, Water Supply, 19 (2019)
2309–2322.
- C. Postigo, D.E. Martinez, S. Grondona, K.S.B. Miglioranza,
Groundwater pollution: sources, mechanisms, and prevention,
Encyclopedia of the Anthropocene, 5 (2018) 87–96.
- R.B. Banks, S. Jersate, Dispersion in unsteady porous-media
flow, J. Hydraulics Div.: Proc. Am. Soc. Civ. Eng., 88 (1962) 1–21.
- J.B. Bredehoeft, G.F. Pinder, Digital analysis of areal flow in
multiaquifer groundwater systems: a quasi three‐dimensional
model, Water Resour. Res., 6 (1970) 883–888.
- R.W. Gillham, J.A. Cherry, Contaminant migration in saturated
unconsolidated geologic deposits, Geol. Soc. Am., 189 (1982)
31–62.
- H.F. Wang, M.P. Anderson, Introduction to Groundwater
Modelling, W.H. Freeman and Company, San Francisco, CA,
1982.
- R.A. Greenkorn, Flow Phenomena in Porous Media, Marcell
Dekker, New York, 1983.
- L.M. Abriola, Modeling contaminant transport in the
subsurface: an interdisciplinary challenge, Rev. Geophys.,
25 (1987) 125–134.
- R. Mackay, Groundwater Quality Management, In:
Environmentally Sound Water Management, Oxford University
Press, U.K., 1990.
- A.G. Bobba, D.C.L. Lam, Hydrological modelling of
acidified Canadian watersheds, Ecol. Modell., 50 (1990) 5–32.
- A.G. Bobba, V.P. Singh, Groundwater Contamination Modelling,
V.P. Singh, Ed., Environmental Hydrology, Springer, Dordrecht,
1995.
- J. Tóth, A theory of groundwater motion in small drainage
basins in central Alberta, Canada, J. Geophys. Res., 67 (1962)
4375–4812.
- J. Tóth, A theoretical analysis of groundwater flow in small
drainage basins, J. Geophys. Res., 68 (1963) 4795–4812.
- E.O. Frind, G.B. Matanga, The dual formulation of flow for
contaminant transport modeling: 1. review of theory and
accuracy aspects, Water Resour. Res., 21 (1985) 159–169.
- C.S. Slichter, Field Measurements of the Rate of Movement
of Underground Waters, Report, USGS Water Supply Paper
No. 140, Govt. Print. Off., 1905.
- H. Kohnke, F.R. Dreirelbis, J.M. Davidson, A Survey and
Discussion of Lysimeters and a Bibliography on their
Construction and Performance, Miscellaneous Publication
No. 372, United States Department of Agriculture, Washington,
D.C., 1940.
- J. Dalton, Experiments and Observations to Determine Whether
the Quantity of Rain and Dew is Equal to the Quantity of
Water Carried Off by the Rivers and Raised by Evaporation,
Manchester Literary and Philosophical Society, Manchester,
1802, pp. 360–372.
- J.B. Lawes, J. Gilbert, R. Warrington, On the Amount and
Composition of the Rain and Drainage-Waters Collected at
Rothamsted, William Clowes and Sons Ltd., London, 1882.
- P.S. Burgess, The soil solution, extracted by Lipman’s directpressure
method, compared with 1:5 water extracts, Soil Sci.,
14 (1921) 191–216.
- F.W. Parker, Methods of Studying the Concentration and
Composition of the Soil Solution, Soil Sci., 12 (1921) 209–232.
- J.E. Christiansen, Effect of entrapped air upon the permeability
of soils, Soil Sci., 58 (1944) 355–365.
- D. Kirkham, C.L. Feng, Some tests of the diffusion theory,
and laws of capillary flow, in soils, Soil Sci., 67 (1948) 29–40.
- L. Lapidus, N.R. Amundson, Mathematics of adsorption in
beds. VI. The effect of longitudinal diffusion in ion exchange
and chromatographic columns, J. Phys. Chem., 56 (1952)
984–988.
- P. Reiniger, G.H. Bolt, Theory of chromatography and its
application to cation exchange in soils, Neth. J. Agric. Sci.,
20 (1972) 301–313.
- M.A. Mariño, Numerical and analytical solutions of dispersion
in a finite, adsorbing porous medium, Water Resour. Bull.,
10 (1974) 81–90.
- M.A. Mariño, Distribution of contaminants in porous media
flow, Water Resour. Res., 10 (1974b) 1013–1018.
- M.A. Mariño, Models of dispersion in a granular medium,
J. Hydrol., 23 (1974c) 313–318.
- J. Bear, Some experiments in dispersion, J. Geophys. Res.,
66 (1961) 2455.
- G. De Josselin de Jong, Longitudinal and transverse diffusion in
granular deposits, Eos, Trans. Am. Geophys. Union, 39 (1958) 67.
- P.G. Saffman, A theory of dispersion in a porous medium,
J. Fluid Mech., 6 (1959) 321–349.
- A.E. Scheidegger, General theory of dispersion in porous
media, J. Geophys. Res., 66 (1961) 3273–3278.
- A.E. Scheidegger, The Physics of Flow through Porous Media,
University of Toronto Press, Toronto, 1963.
- R.C. Goodknight, I. Fatt, Surface concentration build-up during
diffusion in porous media with dead-end pore volume, J. Phys.
Chem., 67 (1963) 949–951.
- K.H. Coats, B.D. Smith, Dead-end pore volume and dispersion
in porous media, Soc. Pet. Eng. J., 4 (1964) 73–84.
- H.A. Deans, A mathematical model for dispersion in the
direction
of flow in porous media, Soc. Pet. Eng. J., 3 (1963)
49–52.
- Y. Bachmat, J. Bear, The general equations of hydrodynamic
dispersion in homogeneous, isotropie, porous mediums,
J. Geophys. Res., 69 (1964) 2561–2567.
- U.Y. Shamir, D.R.F. Harleman, Numerical and Analytical
Solutions of Dispersion Problems in Homogeneous and
Layered Aquifers, Technical Report No. 89, Hydrodynamics
Lab., Massachusetts Institute of Technology, Cambridge, 1966,
p. 206.
- U.Y. Shamir, D.R. Harleman, Dispersion in layered porous
media, J. Hydraulics Div.: Proc. Am. Soc. Civ. Eng., 93 (1967)
237–260.
- J.A. Hoopes, D.R.F. Harleman, Dispersion in radial flow from
a recharge well, J. Geophys. Res., 72 (1967) 3595–3607.
- A. Ogata, Theory of Dispersion in a Granular Medium, Report,
USGS Numbered Series, Professional Paper, 1970.
- J.B. Bredehoeft, G.F. Pinder, Mass transport in flowing
groundwater, Water Resour. Res., 9 (1973) 194–210.
- J.H. Knight, J.R. Philip, Exact solutions in nonlinear diffusion,
J. Eng. Math, 8 (1974) 219–227.
- S.-H. Chang, J.C. Slattery, A linear stability analysis for miscible
displacements, Transp. Porous Media, 1 (1986) 179–199.
- J.J. Fried, M.A. Combarnous, Dispersion in Porous Media,
V.T. Chow, Ed., Advances in Hydroscience, Academic Press,
New York, 1971, pp. 169–282.
- D. Raimondi, G.H.F. Gardner, C.B. Petrick, Effect of Pore
Structure and Molecular Diffusion on the Mixing of Miscible
Liquids Flowing in Porous Media, AIChE-SPE Joint Symposium,
San Francisco, 1959.
- M.W. Legatski, D.L. Katz, Dispersion coefficients for gases
flowing in consolidated porous media, Soc. Pet. Eng. J., 7 (1967)
43–53.
- D. Klotz, H. Moser, Hydrodynamic Dispersion as Aquifer
Characteristic: Model Experiments with Radioactive Tracers,
Report No. IAEA-SM-182/42, Symposium on Isotope
Techniques in Groundwater Hydrology, Vienna (Austria), 1974,
pp. 355–369.
- E.S. Simpson, Transverse dispersion in liquid flow through
porous media, Geological Survey Professional Paper 411-C,
United States Government Printing Office, Washington, 1962.
- J. Bear, Hydraulics of groundwater, McGraw-Hill International
Book Company, New York, 1979.
- S. Whitaker, The transport equations for multi-phase systems,
Chem. Eng. Sci., 28 (1973) 139–147.
- W.G. Gray, A derivation of the equations for multi-phase
transport, Chem. Eng. Sci., 30 (1975) 229–233.
- L.F. Konikow, D.B. Grove, Derivation of Equations Describing
Solute Transport in Groundwater, Report, Water-Resources
Investigations Report, U.S. Geological Survey, Water Resources
Division, 1977.
- L.F. Konikow, J.D. Bredehoeft, Computer Model of Two-
Dimensional Solute Transport and Dispersion in Groundwater,
U.S. Geological Survey, Techniques of Water-Resources
Investigations, Book 7, Chapter C2, 1978.
- G.F. Pinder, Groundwater contaminant transport modeling,
Environ. Sci. Technol., 4 (1984) 108A–114A.
- S.M. Hassanizadeh, Derivation of basic equations of mass
transport in porous media, Part 1. Macroscopic balance laws,
Adv. Water Resour., 9 (1986) 196–206.
- S.M. Hassanizadeh, Derivation of basic equations of mass
transport in porous media, Part 2. Generalized Darcy’s and
Fick’s laws, Adv. Water Resour., 9 (1986a) 207–222.
- G. Dagan, Theory of solute transport by groundwater, Annu.
Rev. Fluid Mech., 19 (1987) 183–213.
- L.F. Konikow, J.W. Mercer, Groundwater flow and transport
modeling, J. Hydrol., 100 (1988) 379.
- C.R. Faust, J.W. Mercer, Ground-water modelling: numerical
models, Groundwater, 18 (1980) 115–125.
- G.F. Pinder, W.G. Gray, Finite Element Simulation in Surface
and Subsurface Hydrology, Academic Press, New York, 1977.
- L.F. Konikow, Numerical Models of Groundwater Flow
and Transport, USGS Water Resources Investigations, 1978,
pp. 59–112.
- Y. Bachmat, B. Andrews, D. Holtz, S. Sebastian, Utilization
of Numerical Groundwater Models for Water Resources
Management, Report No. EPA-600/8–78–012, U.S. Environmental
Protection Agency: ADA, Oklahoma, 1978.
- D.L. Reddell, D.K. Sunada, Numerical simulation of dispersion
in groundwater aquifers, Hydrol. Papers 41, 41 (1970) 89.
- O.K. Kimbler, R.G. Kazmann, W.R. Whitehead, Cyclic
storage of freshwater in saline aquifer, Water Resour. Res. Bull.,
10 (1975) 75–78.
- M.A. Marino, Mass Transport of Solutes in Saturated Porous
Media, U.S. Dep. Int., Water Resour. Eng., California, 1975,
p. 36.
- S.K. Gupta, S.R. Singh, Analytical solutions for predicting solute
movement and their interpretation in reclamation, J. Hydrol.,
45 (1980) 133–148.
- J.C. Heinrich, Y. Chung-Chi, On the solution of the timedependent
C-D equation by the FEM, Adv. Water Resour.,
10 (1987) 220.
- T.E. Reilly, O.L. Franke, H.T. Buxton, G.D. Bennett, A Conceptual
Framework for Ground-Water Solute-Transport Studies with
Emphasis on Physical Mechanisms of Solute Movement,
U.S. Geological Survey, Water-Resources Investigation Report
87-4191, 1987.
- P.F. Andersen, J.W. Mercer, H.O. White, Numerical modeling
of salt-water intrusion at Hallandale, Florida, Groundwater,
26 (1988) 619–630.
- S.M. Hassanizadeh, T. Leijnse, On the modeling of brine
transport in porous media, Water Resour. Res., 24 (1988)
321–330.
- W.J. Weber, C.J. Miller, Modeling the sorption of hydrophobic
contaminants by aquifer materials—I. Rates and equilibria,
Water Resour. Res., 24 (1988) 457–464.
- T.G. Naymik, Mathematical modeling of solute transport in
the subsurface, Crit. Rev. Env. Control, 17 (1987) 229.
- P.R. Day, J.N. Luthin, A numerical solution of the differential
equation of flow for a vertical drainage problem, Soil Sci. Soc.
Am. J., 45 (1956) 443–447.
- J. Rubin, Theoretical analysis of two-dimensional, transient
flow of water in unsaturated and partly unsaturated soils,
Soil Sci. Soc. Am. J., 32 (1968) 607–615.
- G.M. Hornberger, I. Remson, A.A. Fungaroli, Numeric studies
of a composite soil moisture ground-water system, Water
Resour. Res., 5 (1969) 797–802.
- R.W. Jeppson, Numerical Solution of the Steady State Two-
Dimensional Flow System Resulting from Infiltration on a
Watershed, Water Res. Lab. Rep. PRWG-59c-1, Utah State
University, Logan, 1969.
- R.D. Verma, W. Brutsaert, Unconfined aquifer seepage by
capillary flow theory, J. Hydraulics Div.: Proc. Am. Soc.
Civ. Eng., 96 (1970) 1331–1344.
- R.A. Freeze, Modeling groundwater flow and pollution,
Can. Geotech. J., 25 (1988) 851.
- R.L. Cooley, Some new procedures for numerical solution of
variably saturated flow problems, Water Resour. Res., 19 (1983)
1271–1285.
- C.T. Kincaid, J.R. Morrey, J.E. Rogers, Geohydro-Chemical
Models of Solute Transport, 2, Process Description and
Computer Code Selection, Report EA-3417, Vol. 1, Elec.
Pow. Res. Institute, Palo Alto, California, 1984.
- C.T. Kincaid, J.R. Morrey, Geohydro-Chemical Models of Solute
Transport, 2, Preliminary Evaluation of Selected Computer
Codes, Report EA-3417, Vol. 2, Elec. Pow. Res. Institute,
Palo Alto, California, 1984.
- P. van der Heijde, Y. Bachmat, J. Bredehoeft, B. Andrews,
D. Holtz, S. Sabastian, Groundwater Management: The Use
of Numerical Models, Geophys. Monogr. Ser., Vol. 5, AGU,
Washington, 1985.
- D.R. Nielsen, M.T. van Genuchten, J.W. Biggar, Water flow
and solute transport processes in the unsaturated zone, Water
Resour. Res., 22 (1986) 89S–108S.
- H.D. Schulz, E.J. Reardon, A combined mixing cell/analytical
model to describe two-dimensional reactive solute transport for
unidirectional groundwater flow, Water Resour. Res., 19 (1983)
492–502.
- C.W. Miller, L.V. Benson, Simulation of solute transport in a
chemically reactive heterogeneous system: model development
and application, Water Resour. Res., 19 (1983) 381–391.
- P.S. Huyakorn, S.D. Thomas, B.M. Thompson, Techniques
for making finite elements competitive in modeling flow
in variably saturated porous media, Water Resour. Res.,
20 (1984) 1099–1115.
- P.S. Huyakorn, E.P. Springer, V. Guvanasen, T.D. Wadsworth,
A three-dimensional finite-element model for simulating
water flow in variably saturated porous media, Water Resour.
Res., 22 (1986) 1790–1808.
- G.A. Cederberg, R.L. Street, J.O. Leckie, A groundwater
mass transport and equilibrium chemistry model for
multicomponent systems, Water Resour. Res., 21 (1985)
1095–1104.
- C.L. Murphy, M.B. Allen, A collocation model of twodimensional
unsaturated flow, Int. Conf. Finite Elements in
Water Resour., 6 (1986) 411–420.
- T.N. Narasimhan, S.J. Dreiss, A numerical technique for
modeling transient flow of water to a soil water sampler, Soil
Sci., 141 (1986) 230–236.
- P.S. Huyakorn, J.W. Mercer, D.S. Ward, Finite element matrix
and mass balance computational schemes for transport
in variably saturated porous media, Water Resour. Res.,
21 (1985) 346–358.
- C.I. Voss, A Finite-Element Simulation Model for Saturated-
Unsaturated Fluid-Density-Dependent Ground-Water Flow
with Energy Transport on Chemically-Reactive Single-
Species Solute Transport, Water-Resources Investigations
Report 84-4369, USGS, Washington, 1984, p. 409.
- H.J. Morel-Seytoux, J.A. Billica, A two-phase numerical model
for prediction of infiltration: applications to a semi-infinite
soil column, Water Resour. Res., 21 (1985) 607–615.
- H.J. Morel-Seytoux, J.A. Billica, A two-phase numerical
model for prediction of infiltration: case of an impervious
bottom, Water Resour. Res., 21 (1985a) 1389–1396.
- G. Dagan, E. Bresler, Solute dispersion in unsaturated
heterogeneous soil at field scale: theory, Soil Sci. Soc. Am. J.,
43 (1980) 461–467.
- G. Dagan, E. Bresler, Unsaturated flow in spatially
variable fields: 1. derivation of models of infiltration and
redistribution, Water Resour. Res., 19 (1983) 413–420.
- E. Bresler, G. Dagan, Convective and pore scale dispersive
solute transport in unsaturated heterogeneous fields, Water
Resour. Res., 17 (1981) 1683–1693.
- E. Bresler, G. Dagan, Unsaturated flow in spatially variable
fields: 3. solute transport models and their application to
two fields, Water Resour. Res., 19 (1983) 429–435.
- P.C.D. Milly, Moisture and Heat Fluxes Across the Land
Surface’ Parameterization for Atmospheric General
Circulation Models and the Effects of Spatial Variability,
Ph.D. Thesis, Mass. Inst. of Technol., Cambridge, 1982.
- A. Mantoglou, L.W. Gelhar, Large-scale Models and Effective
Parameters of Transient Unsaturated Flow and Contaminant
Transport Using Stochastic Methods, Rep. 299, Ralph
M. Parsons Lab., Mass. Inst. of Technol., Cambridge, 1985.
- M.Th. Van Genuchten, W.A. Jury, Progress in unsaturated
flow and transport modeling, Rev. Geophys., 25 (1987)
135–140.
- T.P. Clement, W.R. Wise, F.J. Molz, A physically based,
two-dimensional, finite-difference algorithm for modeling
variably saturated flow, J. Hydrol., 161 (1994) 71–90.
- M.A. Celia, E.T. Bouloutas, R.L. Zarba, A general massconservative
numerical solution of the unsaturated flow
equation, Water Resour. Res., 26 (1990) 1483–1496.
- M.R. Kirkland, Algorithms for Solving Richards’ Equation
for Variably Saturated Soils, Ph.D. Dissertation, New Mexico
State Univ., Las Cruces, N.M, 1991.
- J.J. Westrick, J.W. Mello, R.F. Thomas, The groundwater
supply survey, J. Am. Water Works Assn., 76 (1984) 52–59.
- W. Storck, Chlorinated solvent use hurt by federal rules,
Chem. Eng. News, 65 (1987) 11–12.
- T. Hirata, O. Nakasugi, M. Yoshioka, K. Sumi, Groundwater
pollution by volatile organochlorines in Japan and related
phenomena in the subsurface environment, Water Sci.
Technol., 25 (1992) 9–16.
- R. Trauth, C. Xanthopoulos, Non-point pollution of groundwater
in urban areas, Water Res., 31 (1997) 2711–2718.
- J. Knuutinen, H. Palm, H. Hakala, J. Haimi, V. Huhta,
J. Salminen, Polychlorinated phenols and their metabolites in
soil and earthworms of sawmill environment, Chemosphere,
20 (1990) 609–623.
- B. Ellis, P. Harold, H. Kronberg, Bioremediation of a creosote
contaminated site, Environ. Technol., 12 (1991) 447–459.
- J.T. Wilson, L.E. Leach, M. Hension, J.N. Jones, In-situ
biorestoration as a groundwater remediation technique,
Groundwater Monit. Rem., 6 (1986) 56–64.
- P. Srinivasan, J.W. Mercer, Simulation of biodegradation
and sorption processes in groundwater, Groundwater,
26 (1988) 475–487.
- S. Sorek, Two-dimensional adaptive Eulerian-Lagrangian
method for mass transport with spatial velocity distribution,
Transp. Porous Media, 3 (1988) 473–489.
- M.A. Widdowson, F.J. Moltz, L.D. Benefield, A numerical
transport model for oxygen- and nitrate-based respiration
linked to substrate and nutrient availability in porous media,
Water Resour. Res., 24 (1988) 1553–1565.
- J.F. Barker, G.C. Patrick, D. Major, Natural attenuation
of aromatic hydrocarbons in a shallow sand aquifer,
Groundwater Monit. Rem., 7 (1987) 64–71.
- J.F. Keely, M.D. Piwoni, J.T. Wilson, Evolving concepts of
subsurface contaminant transport, J. Water Pollut. Control
Fed., 58 (1986) 349–357.
- J.J. Pignatello, Sorption Dynamics of Organic Compounds in
Soils and Sediments, B.L. Sawhney, K. Brown, Eds., Reactions
and Movement of Organic Chemicals in Soils, Soil Science
Society of America, Inc. American Society of Agronomy, Inc.,
Madison, WI, 1989, pp. 45–80.
- J.G. Leahy, R.R. Colwell, Microbial degradation of hydrocarbons
in the environment, Microbiol. Rev., 54 (1990) 305–315.
- D.T. Gibson, V. Subramanian, Microbial Degradation of
Aromatic Hydrocarbons, D.T. Gibson, Ed., Microbial
Degradation of Organic Compounds, Marcel Dekker, New
York, 1984, pp. 181–252.
- M.P. Suarez, H.S. Rifai, Biodegradation rates for fuel
hydrocarbons and chlorinated solvents in groundwater,
Biorem. J., 3 (1999) 337–362.
- H.X. Corseuil, P.J.J. Alvarez, Natural bioremediation
perspective for BTX-contaminated groundwater in Brazil:
effect of ethanol, Water Sci. Technol., 34 (1996) 311–318.
- J.W. Davis, C.L. Carpenter, Aerobic biodegradation of vinyl
chloride in groundwater samples, Appl. Environ. Microbiol.,
56 (1990) 3878–3880.
- G.A. Barrio-Lage, F.Z. Parsons, R.M. Narbaitz, P.L. Lorenzo,
H.E. Archer, Enhanced anaerobic biodegradation of vinyl
chloride in groundwater, Environ. Toxicol. Chem., 9 (1990)
403–415.
- P.V. Roberts, L. Simprini, G. Hopkins, D. Grbic-Galic,
P.L. McCarty, M. Reinhard, In-situ Aquifer Restoration of
Chlorinated Aliphatics by Methanotrophic Bacteria, EPA/
600/2–89/033 (PB89–219992), U.S. Environnmental Protection
Agency, Washington, D.C, 1989.
- J.T. Wilson, C.H. Ward, Opportunities for bioreclamation
of aquifers contaminated with petroleum hydrocarbons,
Dev. Ind. Microbiol., 27 (1987) 109–116.
- P. Morgan, R.J. Watkinson, Hydrocarbon degradation in soils
and methods for soil biotreatment, Crit. Rev. Biotechnol.,
8 (1989) 305–333.
- J.L. Sims, R.C. Sims, J.E. Matthews, Approach to
bioremediation of contaminated soil, Hazard. Waste Hazard.
Mater., 7 (1990) 117–149.
- B.E. Rittmann, A.J. Valocchi, E. Seagren, C. Ray, B. Wrenn,
A Critical Review of in-situ Bioremediation, GRI-92/0322,
Gas Res. Inst., 1992.
- P.J. Sturman, P.S. Stewart, A.B. Cunningham, E.J. Bouwer,
J.H. Wolfram, Engineering scale-up of in-situ bioremediation
processes: a review, J. Contam. Hydrol., 19 (1995) 171–203.
- J.M. Davidson, G.H. Brusewitz, D.R. Baker, A.L. Wood, Use of
Soil Parameters for Describing Pesticide Movement Through
Soils, EPA 660/2–75–009, U.S. Environmental Protection
Agency, Athens, GA, 1975, p. 162.
- A.L. Wood, J.M. Davidson, Fluometuron and water content
distributions during infiltration: measured and calculated,
Soil Sci. Am. J., 39 (1975) 820–825.
- B.A. Stewart, D.A. Woolhiser, W.H. Wishmeier, J.H. Caro,
M.H. Fere, Control of Water Pollution from Cropland,
Vol. II, An Overview, EPA 660/2–75–026b, U.S. Environmental
Protection Agency, Athens, 1976, p. 187.
- C.G. Enfield, R.F. Carsel, S.Z. Cohen, T. Phan, D.M. Walters,
Methods for approximating pollutant transport to groundwater,
Groundwater, 20 (1983) 711–722.
- C.S. Helling, Pesticide mobility in soils III. Influence of
soil properties, Soil Sci. Soc. Am. J., 35 (1971) 743–748.
- E.E. Kenaga, Predicted bioconcentration factors and soil
sorption coefficients of pesticides and other chemicals,
Ecotoxicol. Environ. Saf., 4 (1980) 23–38.
- W.A. Jury, D.D. Focht, W.J. Farmer, Evaluation of pesticide
groundwater pollution potential from standard indices of
soil-chemical adsorption and biodegradation, J. Environ.
Qual., 16 (1987) 422–428.
- D.M. Hamby, Site remediation techniques supporting
environmental restoration activities—a review, Sci. Total
Environ., 191 (1996) 203–224.
- S.M. Lambert, Functional relation between sorption in soil and
chemical structures, J. Agric. Food Chem., 15 (1967) 572–576.
- J.W. Hamaker, J.M. Thompson, Adsorption, C.A.I. Goring,
J.W. Hamaker, Eds., Organic Chemicals in the Soil
Environment, Marcel Dekker Inc., New York, 1972, pp. 49–144.
- P.S.C. Rao, J.M. Davidson, Estimation of Pesticide Retention
and Transformation Parameters Required in Nonpoint Source
Pollution Models, M.R. Overcash, J.M. Davidson, Eds.,
Environmental Impact of Nonpoint Source Pollution, Ann
Arbor Science Publ., MI, 1980, pp. 23–67.
- T.B. Moorman, S.S. Harper, Transformation and mineralization
of metribuzin in surface and subsurface horizons of a
Mississippi delta soil, J. Environ. Qual., 18 (1989) 302–306.
- M. Alexander, Aging, bioavailability, and overestimation of
risk from environmental pollutants, Environ. Sci. Technol.,
34 (2000) 4259–4265.
- J.Wang, D.Schlenk, J.Gan, A direct method for quantifying the
effects of aging on the bioavailability of legacy contaminants
in soil and sediment, Environ. Sci. Technol. Lett., 6 (2019)
148–152.
- D.L. Nofziger, A.G. Hornsby, Chemical Movement in Soil:
IBM PC User’s Guide, Inst. Food Agric. Sci., University of
Florida Circular, 654, 1985.
- D.L. Nofziger, A.G. Hornsby, A microcomputer-based
management tool for chemical movement in soil, Appl. Agric.
Res., 1 (1986) 50–56.
- S. Pacenka, T. Steenhuis, User’s Guide for the MOUSE
Computer Program, Cornell Univ., Ithaca, NY, 1984.
- W.A. Jury, W.F. Spencer, W.J. Farmer, Behavior assessment
model for trace organics in soil: I. Model description,
J. Environ. Qual., 12 (1983) 558–564.
- R.J. Wagenet, J.L. Hutson, Predicting the fate of nonvolatile
pesticides in the unsaturated zone, J. Environ. Qual., 15 (1986)
315–322.
- R.J. Wagenet, J.L. Hutson, LEACHM: A Finite Difference
Model for Simulating Water, Salt and Pesticide Movement
in the Plant Root Zone, Continuum, Vol. 2, Version 2.0, New
York State Water Resour. Inst., Cornell Univ., Ithaca, NY, 1989.
- R.F. Carsel, C.N. Smith, L.A. Mulkey, J.D. Dean, P.P. Jowise,
User’s Manual for the Pesticide Root Zone Model (PRZM):
Release I, USEPA EPA-600/3–84–109, U.S. Gov. Print. Office,
Washington, D.C., 1984.
- M. Bonazountas, J. Wagner, SESOIL: A Seasonal Soil
Compartment Model, A.D. Little and Co., Cambridge,
1984. C.C. Kisiel, Time Series Analysis of Hydrologic Data,
V.T. Chow, Ed., Advances in Hydroscience, Academic,
Orlando, 1969, pp. 1–119.
- L.W. Gelhar, Stochastic analysis of phreatic aquifers, Water
Resour. Res., 10 (1974) 539–545.
- R.A. Freeze, A stochastic-conceptual analysis of onedimensional
groundwater flow in non-uniform homogeneous
media, Water Resour. Res., 11 (1975) 725–741.
- G. Dagan, Stochastic modeling of groundwater flow by
unconditional and conditional probabilities: 1. Conditional
simulation and the direct problem, Water Resour. Res.,
18 (1982a) 813–833.
- G. Dagan, Stochastic modeling of groundwater flow by
unconditional and conditional probabilities: 2. The solute
transport, Water Resour. Res., 18 (1982b) 835–848.
- J. Andersson, A.M. Shapiro, Stochastic analysis of onedimensional
steady state unsaturated flow: a comparison of
Monte Carlo and perturbation methods, Water Resour. Res.,
19 (1983) 121–133.
- T.-C. Yeh, L.W. Gelhar, A.L. Gutjahr, Stochastic Analysis
of Effects of Spatial Variability on Unsaturated flow, Rep.
H-11, Hydrol. Res. Program, N.M. Inst. of Min. and Technol.,
Socorro, 1982.
- T.-C. Jim Yeh, L.W. Gelhar, A.L. Gutjahr, Stochastic analysis
of unsaturated flow in heterogeneous soils: 1. Statistically
isotropic media, Water Resour. Res., 21 (1985) 447–456.
- T.-C. Yeh, L.W. Gelhar, A.L. Gutjahr, Stochastic analysis
of unsaturated flow in heterogeneous soils: 2. Statistically
anisotropic media with variable α, Water Resour. Res.,
21 (1985a) 457–464.
- T.-C. Yeh, L.W. Gelhar, A.L. Gutjahr, Stochastic analysis of
unsaturated flow in heterogeneous soils: 3. Observations and
applications, Water Resour. Res., 21 (1985b) 465–471.
- C.J. Duffy, L.W. Gelhar, A frequency domain approach to
water quality modeling in groundwater: theory, Water Resour.
Res., 21 (1985) 1175–1184.
- A. Mantoglou, L.W. Gelhar, Stochastic modeling of largescale
transient unsaturated flow systems, Water Resour. Res.,
23 (1987) 37–46.
- S. Haykin, R. Lippmann, Neural networks: a comprehensive
foundation, Int. J. Neural Syst., 5 (1994) 363–364.
- L.L. Rogers, F.U. Dowla, Optimization of groundwater
remediation using artificial neural networks with parallel
solute transport modeling, Water Resour. Res., 30 (1994)
457–481.
- L.L. Rogers, F.U. Dowla, V.M. Johnson, Optimal field-scale
groundwater remediation using neural networks and the
genetic algorithm, Environ. Sci. Technol., 29 (1995) 1145–1155.
- R. Beale, T. Jackson, Neural Computing: An Introduction,
CRC Press, Boca Raton, USA, 1991.
- R. Hecht-Nielsen, Kolmogorov’s Mapping Neural Network
Existence Theorem, 1st IEEE Int. Joint Conf. on Neural
Networks, Institute of Electrical and Electronic Engineering,
San Diego, 1987, pp. 11–14.
- S.J. Ranjithan, J.W. Eheart, J.H. Garrett Jr., Neural networkbased
screening for groundwater reclamation under uncertainty,
Water Resour. Res., 29 (1993) 563–574.
- D.E. Rumelhart, J.L. McClelland and the PDP Research Group,
Parallel Distributed Processing: Explorations in the Microstructure
of Cognition, Vol. 1, MIT Press, Cambridge, 1986.
- C.I. Voss, A Finite-Element Simulation Model for Saturated-
Unsaturated, Fluid-Density Dependent Groundwater Flow
with Energy Transport or Chemically Reactive Single-Species
Solute Transport, Water-Resources Investigations Report,
U.S. Geological Survey, 1984, pp. 84–4369.
- E.M. Johansson, F.U. Dowla, D.M. Goodman, Backpropagation
learning for multilayer feed-forward neural networks using
the conjugate gradient method, Int. J. Neural Syst., 2 (1992)
291–301.
- J.H. Holland, Adaptation in Natural and Artificial Systems,
University of Michigan Press, Ann Arbor, 1975, p. 21.
- D.E. Goldberg, Genetic Algorithms in Search, Optimization
and Machine Learning, Addison-Wesley-Longman: Reading,
MA, 1989.
- D.J. Montana, L. Davis, Training Feedforward Neural
Networks using Genetic Algorithms, Proc. 11th Int. Joint
Conf. on Artificial Intelligence, Vol. 1, Morgan Kaufmann, San
Mateo, CA, 1989, pp. 762–767.
- J. Morshed, J.J. Kaluarachchi, Application of artificial
neural network and genetic algorithm inflow and transport
simulations, Adv. Water Resour., 22 (1998) 145–158.
- J.W. Mercer, C.R. Faust, Ground-water modelling: an
overview, Groundwater, 18 (1980) 108–114.
- G. Chavent, Identification of Functional Parameters in
Partial Differential Equations, R.E. Goodson, M. Polis, Eds.,
Identification of Parameters in Distributed Systems, Am. Soc.
Mech. Eng., New York, 1974, pp. 31–48.
- G. Chavent, M. Dupuy, P. Lemmonier, History matching by
use of optimal theory, Soc. Pet. Eng. J., 15 (1975) 74–86.
- W.H. Chen, G.R. Gavalas, J.H. Seinfeld, M.L. Wasserman,
A new algorithm for automatic history matching, Soc. Pet.
Eng. J., 14 (1974) 593–608.
- D.B. McLaughlin, Investigation of Alternative Procedures for
Estimating Groundwater Basin Parameters, U.S. Dep. Int.,
Water Resour. Eng., Walnut Creek, 1975.
- J.T. Wilson, P. Kitanidis, M. Dettinger, State and Parameter
Estimation in Groundwater Models, Chapman Conf. on
Application of Kalman Filter to Hydrol., Hydraulics, and
Water Resour., 1978.
- R.E. Kalman, A new approach to linear filtering and prediction
problems, J. Basic Eng., 82 (1960) 35.
- C.C. Travis, Mathematical Description of Adsorption and
Transport
of Reactive Solutes in Soil: A Review of Selected
Literature, Oak Ridge National Laboratory, ORNL-5043, 1978,
pp. 14–22.
- M.J. Eppstein, D.E. Dougherty, Simultaneous estimation
of transmissivity values and zonation, Water Resour. Res.,
32 (1996) 3321–3336.
- G. Evensen, Sequential data assimilation with a nonlinear
quasi‐geostrophic model using Monte Carlo methods
in forecast error studies, J. Geophys. Res., 99 (1994)
10143–10162.
- G. Burgers, P.J. van Leeuwen, G. Evensen, Analysis scheme
in the ensemble Kalman filter, Mon. Weather Rev., 126 (1998)
1719–1724.
- R.J. Hoeksema, P.K. Kitanidis, An application of the
geostatistical approach to the inverse problem in twodimensional
groundwater modeling, Water Resour. Res.,
20 (1984) 1003–1020.
- P.K. Kitanidis, E.G. Vomvoris, A geostatistical approach to the
inverse problem in groundwater modeling (steady state) and
one-dimensional simulations, Water Resour. Res., 19 (1983)
677–690.
- J. Carrera, S.P. Neuman, Estimation of aquifer parameters
under transient and steady state conditions: 1. Maximum
likelihood method incorporating prior information, Water
Resour. Res., 22 (1986a) 199–210.
- J. Carrera, S.P. Neuman, Estimation of aquifer parameters
under transient and steady state conditions: 2. Uniqueness,
stability and solution algorithms, Water Resour. Res.,
22 (1986b) 211–227.
- J. Carrera, S.P. Neuman, Estimation of aquifer parameters
under transient and steady state conditions: 3. Application
to synthetic and field data, Water Resour. Res., 22 (1986c)
228–242.
- D.A. Chin, Estimation of dispersion coefficients in porous
media, ASCE J. Hydraul. Eng., 112 (1986) 591.
- B.J. Wagner, S.M. Gorelick, A statistical methodology for
estimating transport parameters: theory and applications to
one-dimensional advective-dispersive systems, Water Resour.
Res., 22 (1986) 1303–1315.
- H.E. Jobson, Estimation of dispersion and first-order rate
coefficient by numerical routing, Water Resour. Res., 23 (1987)
169–180.
- G.L. Moltyaner, D.R. Champ, Mass Transport in Saturated
Porous Media: Estimation of Transport Parameters, Chalk
River Nuclear Laboratories, Chalk River, Ontario, 1987.
- S.R. Taylor, G.L. Moltyaner, K.W.F. Howard, R.W.D. Killey,
A comparison of field and laboratory methods of determining
contaminants flow parameters, Groundwater, 25 (1987)
321–330.
- W.W.-G. Yeh, Review of parameter identification procedures
in groundwater hydrology: the inverse problem, Water
Resour. Res., 22 (1986) 95–108.
- W.W.-G. Yeh, C. Wang, Identification of aquifer dispersivities:
methods of analysis and parameter uncertainty, J. Am. Water
Res. Assn., 23 (1987) 569–580.
- R.K. Rowe, C.J. Caers, F. Barone, Laboratory determination of
diffusion and distribution coefficients of contaminants using
undisturbed clayey soil, Can. Geotech. J., 25 (1988) 108.
- S. Schubert, M. Suarez, J.-K. Schemm, E. Epstein, Dynamically
stratified Monte Carlo forecasting, Mon. Weather Rev.,
120 (1992) 1077–1088.
- N.-Z. Sun, Inverse Problems in Groundwater Modeling,
Kluwer Acad., Norwell, 1994.
- N.-Z. Sun, Identification and Reduction of Model Structure
for Modeling Distributed Parameter Systems, J. Gottlieb,
P. DuChateau, Eds., Parameter Identification and Inverse
Problems in Hydrology, Geology and Ecology, Kluwer Acad.,
Norwell, 1996.
- D.W. Hyndman, S.M. Gorelick, Estimating lithologic and
transport properties in three dimensions using seismic
and tracer data: the Kesterson aquifer, Water Resour. Res.,
32 (1996) 2659–2670.
- C.E. Koltermann, S.M. Gorelick, Heterogeneity in sedimentary:
a review of structure imitating, process-imitating,
and descriptive approaches, Water Resour. Res., 32 (1996)
2617–2658.
- C. Zheng, P. Wang, Parameter structure identification using
tabu search and simulated annealing, Adv. Water Resour.,
19 (1996) 215–224.
- N.-Z. Sun, S.-L. Yang, W.W.-G. Yeh, A proposed stepwise
regression method for model structure identification, Water
Resour. Res., 34 (1998) 2561–2572.
- D.B. Fogel, Evolutionary Computation: Toward a New
Philosophy of Machine Intelligence, IEEE Press, New York,
USA, 2000.
- M. Dorigo, Optimization, Learning and Natural Algorithms,
Ph.D. Dissertation, Dipartimento di Elettronica, Politecnico
di Milano, Milan, 1992 (in Italian).
- M. Dorigo, L.M. Gambardella, Ant colonies for the traveling
salesman problem, BioSystems, 43 (1997a) 73–81.
- M. Dorigo, L.M. Gambardella, Ant Colony System: a
cooperative learning approach to the traveling salesman
problem, IEEE Trans. Evol. Comput., 6 (1997b) 317–365.
- J. Kennedy, R.C. Eberhart, Particle swarm optimization, Proc.
IEEE Int. Conf. Neural Networks, 4 (1995) 1942–1948.
- J. Kennedy, R.C. Eberhart, A discrete binary version of the
particle swarm algorithm, 1997 IEEE International Conference
on Systems, Man, and Cybernetics. Computational
Cybernetics and Simulation, Orlando, FL, USA, USA, 1997,
pp. 4104–4109.
- J.L. Gould, C.G. Gould, The Honey Bee, Sci. Am. Library,
New York, USA, 1988.
- D. Câmara, Evolution and Evolutionary Algorithms, In: Bio-
Inspired Networking, ISTE Press, Elsevier, 2015, pp. 1–30.
- M. Melanie, An Introduction to Genetic Algorithms, MIT
Press, Cambridge, MA, 1998.
- E. Alba, J.M. Troya, A survey of parallel distributed genetic
algorithms, Complex, 4 (1999) 31–52.
- A.E. Eiben, J.E. Smith, Introduction to Evolutionary
Computing, In: Natural Computing Series, Springer, 2008.
- R. Poli, W.B. Langdon, N. Freitag Mcphee, A Field Guide to
Genetic Programming, Lulu Enterprises, UK, 2008.
- A.E. Smith, B. Dengiz, Evolutionary Methods for Design of
Reliable Networks, In: Telecommunications Optimization:
Heuristic and Adaptive Techniques, Wiley, 2001, pp. 17–34.
- H. Rezazad, Computer network optimization, Wiley
Interdiscip. Rev. Comput. Stat., 3 (2011) 34–46.