Particles’ transport in a single fracture under variable flow regimes

Advances in Engineering Software - Tập 30 - Trang 327-337 - 1999
C. Masciopinto1
1National Research Council, Water Research Institute, Via F. De Blasio 5, 70123 Bari, Italy

Tài liệu tham khảo

Abelin, 1994, Channelling experiments in crystalline fractured rocks, Journal of Contaminant Hydrology, 15, 129, 10.1016/0169-7722(94)90022-1 Abramovitz M, Stegun IA. In: Handbook of mathematical functions. New York: Dover, 1970 pp. 949–953. Bear J. Dynamics of fluids in porous media. New York: Elsevier, 1972 pp. 119–360. Bellin, 1992, Simulation of dispersion in heterogeneousporous formations: statistics first-order theories convergence of computations, Water Resources Research, 28, 2211, 10.1029/92WR00578 Benedini M, Giuliano G, Troisi S. Experimental study of water flow in ractured media by means of a hydraulic model.In: Ganoulis J, Ministry of Civ. and of the Sciences, editors. Proc. int. symposium on scale effects in porous media. Thessaloniki GR, 1978, pp. 2.41–2.55. Benedini M, Di Fazio A, Masciopinto, C, Vurro, M. Interpretazione delle curve di restituzione di prove in situ per lo studio della dispersione in un sistema fessurato. Proc. XXIII conv. di idraulica e costruzioni idrauliche, Florence (I), August, 31-September. 4(1), 1992 pp. B15–B26. Blumberg, 1974, Experimental and theoretical studies of dissolution roughness, J. Fluid Mech., 65, 735, 10.1017/S0022112074001625 Brown, 1987, Fluid flow trough rock joint: the effect of surface roughness, Journal of Geophysical Research, 92, 1337, 10.1029/JB092iB02p01337 Brusseau Mark, 1989, Sorption nonideaility during organic contaminant transport in porous media, Critical Reviews in Environmental Control, 19, 33, 10.1080/10643388909388358 Bursik, 1995, Theory of the sedimentation of suspended particles from fluvial plumes, Sedimentology, 42, 831, 10.1111/j.1365-3091.1995.tb00412.x Clifton, 1982, Effects of Kriging and inverse modelling on conditional simulation of the arva valley aquifer in Southern Arizona, Water Resources Research, 18, 1215, 10.1029/WR018i004p01215 Dagan, 1988, Time-dependent macrodispersion for solute transport in anisotropic heterogeneous aquifers, Water Resources Research, 24, 1491, 10.1029/WR024i009p01491 Dagan G. Flow and transport in porous formations. New York: Springer, 1989 pp. 157–350. Di Fazio, 1992, Caratterizzazione idrogeologica di una stazione di misura in ambiente carsico, Acque Sotterranee, 2, 17 Di Fazio A, Masciopinto C, Troisi S, Vurro M, Una interpretazione bidimensionale di prove di tracciamento in sistemi fratturati. Proc. XXIV conv. di idraulica e costruzioni idrauliche. Florence (I), September 20-22. vol. 1, 1993, pp. T1-167–T1-178. Di Fazio A, Masciopinto C, Troisi S. Tracer tests under non-linear laminar flow's regime in a karstified aquifer, Proceedings of first international conference on the the impact of industry on groundwater resources, May 22–24, Cernobbio, Como, Italy, 1996, pp. 399–410. Gale, 1984, The hydraulics of conduit flow in carbonate aquifer, J. Hydrol., 70, 309, 10.1016/0022-1694(84)90129-X Gelhar Lynn W. Stochastic subsurface hydrology, Englewood Cliffs, NJ: Prentice-Hall, 1993. Goode, 1990, Particle velocity interpolation in block-centered finite difference grounwater flow models, Water Resouces Research, 26, 925 Goode, 1991, Comment on flow and tracer transport in a single fracture: a stochastic model and its relations to some field observations, Water Resource Research, 27, 129, 10.1029/90WR02310 Gutfraind, 1995, Study of fracture permeability using lattice gas automata, Transport in Porous Media, 18, 131, 10.1007/BF01064675 Howard AD, Groves CG. Early development of karst systems 2. Turbulent flow, Water Resources Research, 31 (1995) 19–26. Larcombe MHE. In: Reid JK, editor. A list processing approach to the solution of large sparse sets of matrix equations and the factorisation of the overall matrix. Large sparse sets of linear equations. London: Academic Press, 1971 pp. 25–40. Marchi, 1981, Meccanica dei fluidi, UTET, Turin, I, 264 Masciopinto, 1994, Numerical simulations for the evaluation of the free surface history in porous media: comparison between two different approaches, Advances in Engineering Software, 21, 149, 10.1016/0965-9978(94)90017-5 Masciopinto, 1995, L'utilizzo del particle tracking nello studio della propagazione degli inquinanti in sistemi carsici, Idrotecnica, 4, 245 Moreno, 1988, Flow and tracer transport in a single fracture: a stochastic model and its relation to some field observations, Water Resources Research, 24, 2033, 10.1029/WR024i012p02033 Moreno, 1991, Reply, Water Resources Research, 27, 133, 10.1029/90WR02318 Moreno, 1993, Fluid flow and solute transport in a network of channels, Journal of Contaminant Hydrology, 14, 163, 10.1016/0169-7722(93)90023-L Nash JC. Compact numerical method for computers: linear algebra and function minimization. New York: Wiley, 1979. Neretnieks, 1983, A note on fracture flow dispersion mechanisms in the ground, Water Resources Research, 19, 364, 10.1029/WR019i002p00364 Rinaldo A, Bellin A. Il ruolo delle eterogeneità nell'analisi dei problemi di flusso e trasporto nei mezzi porosi. Proc. l'acqua nel sottosuolo: utilizzazione e salvaguardia. aspetti geologici, idraulici, geotecnici e ambientali. Taormina, May 11–13, vol. 4, 1995, pp. 37–46. Robinson, 1983, Connectivity of fracture systems-a percolation theory approach, J. Phys. A: Math. Gen., 16, 605, 10.1088/0305-4470/16/3/020 Rose HE. An investigation into the laws of flow of fluids through beds of granular material. Proc. Inst. Mech. Eng., vol. 153, 1945, pp. 141–148. Salandin, 1991, A note on transport in stratified formations by flow tilted with respect to the bedding, Water Resources Research, 27, 3009, 10.1029/91WR01937 Schwartz, 1983, A stochastic analysis of macroscopic dispersion in fractured media, Water Resources Research, 19, 1253, 10.1029/WR019i005p01253 Shapiro, 1989, Assessing the validity of the channel model of fracture aperture under field conditions, Water Resources Research, 25, 817, 10.1029/WR025i005p00817 Snow, 1970, The frequency of aperture of fracture in rock, Int. Journal of Rock Mechanics and Mineral Science, 7, 23, 10.1016/0148-9062(70)90025-2 Tsang, 1981, Hydromechanical behaviour of a deformable rock fracture subject to normal stress, Journal of Geophysical Research, 86, 9287, 10.1029/JB086iB10p09287 Tsang, 1987, Channel model of flow through fractured media, Water Resources Research, 23, 467, 10.1029/WR023i003p00467 Tsang, 1988, Flow and tracer transport in fractured media:a variable aperture channel model and its properties, Water Resources Research, 24, 2049, 10.1029/WR024i012p02049 Tsang, 1992, Usage of equivalent apertures for rock fractures as derived from hydraulic and tracer tests, Water Resources Research, 28, 1451, 10.1029/92WR00361 Vandergraaf TT, Park CK, Drew DJ. Migration of conservative and poorly sorbing tracers in granite fractures. Proc. Fifth Int. Conf. On High Level Waste Management, Las Vegas, NV, USA: American Nuclear Soc., 1994, pp. 2251–2256. Wille Nordqvist, 1992, A variable aperture fracture network model for flow and transport in fractured rocks, Water Resources Research, 28, 1703, 10.1029/92WR00216 Williams SA, El Kadi AI. COVAR- A computer program for generating two-dimensional fields of autocorrelated parameters by matrix decomposition. IGWMC -International groundwater modelling center, c/o tno Deft, Netherlands: Institute of Applied Geoscience, 1986.