Open Access
Issue
MATEC Web Conf.
Volume 251, 2018
VI International Scientific Conference “Integration, Partnership and Innovation in Construction Science and Education” (IPICSE-2018)
Article Number 04016
Number of page(s) 7
Section Modelling and Mechanics of Building Structures
DOI https://doi.org/10.1051/matecconf/201825104016
Published online 14 December 2018
  1. M. Tsuji, S. Kobayashi, S. Mikake, T. Sato, H. Matsui, Post-Grouting Experiences for Reducing Groundwater Inflow at 500 m Depth of the Mizunami Underground Research Laboratory, Japan, Procedia Engineering, 191 (2017) p. 543–550. [Google Scholar]
  2. C. Noubactep, S. Care, Dimensioning metallic iron beds for efficient contaminant removal, Chemical Engineering Journal, 163 (2010), p. 454–460. [CrossRef] [Google Scholar]
  3. N. Tufenkji, D.R. Dixon, R. Considine, C.J. Drummond, Multi-scale Cryptosporidium /sand interactions in water treatment, Water Research, 40 (2006) p. 3315–3331. [CrossRef] [Google Scholar]
  4. P. Bedrikovetsky, Mathematical theory of oil and gas recovery: with applications to ex-USSR oil and gas fields (Kluwer Academic, Dordrecht, 1993). [CrossRef] [Google Scholar]
  5. T. Iwasaki, Some notes on sand filtration, Journal American Water Works Association, 29 (1937) p. 1591–1602. [Google Scholar]
  6. J.P. Herzig, D.M. Leclerc, P. Legoff, Flow of suspensions through porous media – application to deep filtration, Industrial and Engineering Chemistry, 62 (1970) p. 8–35. [Google Scholar]
  7. V. Jegatheesan, S. Vigneswaran, Deep bed filtration: mathematical models and observations, Critical Reviews in Environmental Science and Technology, 35, 6 (2005) p. 515–569. [CrossRef] [Google Scholar]
  8. C.V. Chrysikopoulos, V.I. Syngouna, Effect of gravity on colloid transport through water-saturated columns packed with glass beads: Modeling and experiments, Environmental Science and Technology, 48 (2014) p 6805–6813. [Google Scholar]
  9. A.C. Payatakes, R. Rajagopalan, C. Tien, Application of porous media models to the study of deep bed filtration, Canadian Journal of Chemical Engineering, 52 (1974) p. 722–731. [CrossRef] [Google Scholar]
  10. A.A. Shapiro, Elliptic equation for random walks. Application to transport in microporous media, Physica A, 375 (2007) p. 81–96. [Google Scholar]
  11. Z. You, P. Bedrikovetsky, L. Kuzmina, Exact solution for long-term size exclusion suspension-colloidal transport in porous media, Abstract and Applied Analysis, 2013 (2013) ID 680693. [Google Scholar]
  12. L.I. Kuzmina, Yu.V. Osipov, Asymptotics of the filtration problem for suspension in porous media, Vestnik MGSU, 1 (2015) p. 54–62. [Google Scholar]
  13. A. Santos, P. Bedrikovetsky, A stochastic model for particulate suspension flow in porous media, Transport in Porous Media, 62 (2006) p. 23–53. [CrossRef] [Google Scholar]
  14. B.L. Rozhdestvenskii, N.N. Yanenko, Systems of quasilinear equations and their applications to gas dynamics (American Mathematical Society, Providence, RI, 1983). [CrossRef] [Google Scholar]
  15. Yu.P. Galaguz, G.L. Safina, Modeling of particle filtration in a porous medium with changing flow direction, Procedia Engineering, 153 (2016) p.157–161. [CrossRef] [Google Scholar]
  16. P.G. Bedrikovetsky, D. Marchesin, F. Checaira, A.L. Serra, E. Resende, Characterization of deep bed filtration system from laboratory pressure drop measurements, Journal of Petroleum Science and Engineering, 32, 3 (2001) p. 167–177. [CrossRef] [Google Scholar]

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