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Effect of soil textural characteristics on longitudinal dispersion in saturated porous media Cover

Effect of soil textural characteristics on longitudinal dispersion in saturated porous media

Open Access
|May 2021

References

  1. Bandai, T., Hamamoto, S., Rau, G.C., Komatsu, T., Nishimura, T., 2017. The effect of particle size on thermal and solute dispersion in saturated porous media. Int. J. Therm. Sci., 122, 74–84.10.1016/j.ijthermalsci.2017.08.003
  2. Bear, J., 1988. Dynamics of Fluids in Porous Media. Dover, New York.
  3. Bolt, G.H., 1979. Movement of solutes in soil: Principles of adsorption/exchange chromatography. Chapter 9. In: Developments in Soil Science, Vol. 5, Part B, pp. 285–348.10.1016/S0166-2481(08)70664-0
  4. Bromly, M., Hinz, C., Aylmore, L.A.G., 2007. Relation of dispersivity to properties of homogeneous saturated re-packed soil columns. Eur. J. Soil Sci., 58, 293–301.10.1111/j.1365-2389.2006.00839.x
  5. Bunsri, T., Sivakumar, M., Hagare, D., 2008a. Influence of dispersion on transport of tracer through unsaturated porous media. J. Appl. Fluid Mech., 1, 37–44.10.36884/jafm.1.02.11846
  6. Bunsri, T., Sivakumar, M., Hagare, D., 2008b. Numerical modelling of tracer transport in unsaturated porous media. J. Appl. Fluid Mech., 1, 1, 62–70.10.36884/jafm.1.01.11838
  7. Cui, X., Zhu, C., Hu, M., Wang, X., Liu, H., 2019. The hydrodynamic dispersion characteristics of coral sands. J. Mar. Sci. Eng., 7, 9, Article Number: 291.10.3390/jmse7090291
  8. d’Angelo, M.V., Auradou, H., Allain, C., Hulin, J.P., 2007. Pore scale mixing and macroscopic solute dispersion regimes in polymer flows inside two-dimensional model networks. Phys. Fluids, 19, 3, Article Number: 033103.10.1063/1.2714065
  9. Delgado, J.M.P.Q., 2006. A critical review of dispersion in packed beds. Heat and Mass Transfer, 42, 4, 279–310.10.1007/s00231-005-0019-0
  10. Delgado, J.M.P.Q., 2007. Longitudinal and transverse dispersion in porous media. Chem. Eng. Res. Des., 85, 9, 1245–1252.10.1205/cherd07017
  11. Dong, X., Liu, X., Woo, H., Park, J., 2014. A developed soil column test device for measuring the electrical conductivity breakthrough curves. Environ. Earth Sci., 72, 9, 3715–3722.10.1007/s12665-014-3514-0
  12. Evans, J.D., 1996. Straightforward Statistics for the Behavioral Sciences. Pacific Grove, CA: Brooks/Cole Pub. l.
  13. Fetter, C.W., 2008. Contaminant Hydrogeology. 2th Ed. Waveland Press, Inc.
  14. Freeze, R.A., Cherry, J.A., 1979. Groundwater. Prentice-Hall, Englewood Cliffs.
  15. Gaudet, J., Jegat, H., Vachaud, G., Wierenga, P., 1977. Solute transfer, with exchange between mobile and stagnant water, through unsaturated sand. Soil Sci. Soc. Am. J., 41, 4, 665–671.10.2136/sssaj1977.03615995004100040009x
  16. Godoy, V.A., Zuquette, L.V., Gómez-Hernández, J.J., 2019. Stochastic upscaling of hydrodynamic dispersion and retardation factor in a physically and chemically heterogeneous tropical soil. Stoch. Env. Res. Risk A, 33, 1, 201–216.10.1007/s00477-018-1624-z
  17. Goldobin, D.S., Maryshev, B.S., 2017. Hydrodynamic dispersion in porous media with macroscopic disorder of parameters. In: Journal of Physics Conference Series, 894, 1, Article Number: 012062.10.1088/1742-6596/894/1/012062
  18. Hilhorst, M.A., 2000. A pore water conductivity sensor. Soil Sci. Soc. Am. J., 64, 6, 1922–1925.10.2136/sssaj2000.6461922x
  19. Hunt, A.G., Skinner, T.E., Ewing, R.P., Ghanbarian-Alavijeh, B., 2011. Dispersion of solutes in porous media. Eur. Phys. J. B, 80, 411–43210.1140/epjb/e2011-10805-y
  20. Inoue, M., Šimůnek, J., Shiozawa, S., Hopmans, J.W., 2000. Simultaneous estimation of soil hydraulic and solute transport parameters from transient infiltration experiments. Adv. Water Resour., 23, 7, 677–688.10.1016/S0309-1708(00)00011-7
  21. Kantzas, A., Bryan, J., Taheri, S., 2012. Fundamentals of fluid flow in porous media. Pore size distribution. PERM Inc.
  22. Kanzari, S., Hachicha, M., Bouhlila, R., 2015. Laboratory method for estimating solute transport parameters of unsatu-rated soils, American Journal of Geophysics, Geochemistry and Geosystems, 1, 4, 149–154.
  23. Kutílek, M., Nielsen, D.R., 1994. Soil Hydrology. Catena Verlag, Cremlingen-Destedt, Germany.
  24. Lee, M.J., Hwang, S.I., Ro, H.M., 2014. Interpreting the effect of soil texture on transport and removal of nitrate-N in saline coastal tidal flats under steady-state flow condition. Cont. Shelf Res., 84, 35–42.10.1016/j.csr.2014.04.018
  25. Lewis, J., Sjostrom, J., 2010. Optimizing the experimental design of soil columns in saturated and unsaturated transport experiments. J. Contam. Hydrol., 115, 1–13.10.1016/j.jconhyd.2010.04.00120452088
  26. Lindstrom, F.T., Haque, R., Freed, V.H., Boersma, L., 1967. The movement of some herbicides in soils: Linear diffusion and convection of chemicals in soils. Environmental Science and Technology, 1, 561–565.10.1021/es60007a00122148534
  27. Nimbi, I.M., Powers, S., 2003. Mass transfer correlations for nonaqueous phase liquid dissolution from region with high initial saturation. Water Resour. Res., 39, 2, Article Number: 1030. DOI: 10. 1029/2001WR00066710.1029/2001WR000667
  28. Nützmann, G., Maciejewski, S., Joswig, K., 2002. Estimation of water saturation dependence of dispersion in unsaturated porous media: experiments and modelling analysis. Advances in Water Resources, 25, 5, 565–576.10.1016/S0309-1708(02)00018-0
  29. Poulsen, T.G., Suwarnarat, W., Hostrup, M.K., Kalluri, P.N.V., 2008. Simple and rapid method for measuring gas dispersion in porous media: methodology and applications. Soil Sci., 173, 3, 169–174.10.1097/SS.0b013e31816408c9
  30. Pugliese, L., Poulsen, T.G., Straface, S., 2013. Gas-solute dispersivity ratio in granular porous media as related to particle size distribution and particle shape. Water Air Soil Pollut., 224, Article Number: 1691.10.1007/s11270-013-1691-1
  31. Raoof, A., Hassanizadeh, S.M., 2013. Saturation-dependent solute dispersivity in porous media: Pore-scale processes. Water Resour. Res., 49, 1943–1951.10.1002/wrcr.20152
  32. Saffman, P.G., 1959. A theory of dispersion in a porous medium. J. Fluid Mech., 6, 3, 321–349.10.1017/S0022112059000672
  33. Scheidegger, A.E., 1974. The Physics of Flow through Porous Media. University of Toronto Press, Toronto.
  34. Scudiero, E., Berti, A., Teatini, P., Morari, F., 2012. Simultaneous monitoring of soil water content and salinity with a low-cost capacitance-resistance probe. Sensors, 12, 12, 17588–17607.10.3390/s121217588357185523250279
  35. Sharma, P., Poulsen, T.G., 2010. Gas dispersion and immobile gas content in granular porous media: Effect of particle size nonuniformity. Soil Sci., 175, 9, 426–431.10.1097/SS.0b013e3181f0edaf
  36. Šimunek, J., van Genuchten, M.Th., Šejna, M., Toride, N., Leij, F.J., 2000. The STANMOD computer software for evaluating solute transport in porous media using analytical solutions of convection-dispersion equation. Version 2.0, IGWMC-TPS-71. Int. Ground Water Modeling Center (IGWMC), Colorado School of Mines, Golden, Colorado, 32 p.
  37. Toride, N., Leij, F.J., van Genuchten, M.T., 1999. The CXTFIT code for estimating transport parameters from laboratory or field tracer experiments. Version 2.1, Research Report 137. U.S. Salinity Laboratory, Riverside, CA.
  38. Toride, N., Inoue, M., Leij, F.J., 2003. Hydrodynamic dispersion in unsaturated dune sand. Soil Sci. Soc. Am. J., 67, 3, 703–712.10.2136/sssaj2003.0703
  39. van Genuchten, M.Th., Parker, J.C., 1984. Boundary conditions for displacement experiments through short laboratory soil columns. Soil Sci. Soc. Am. J., 48, 4, 703–708.10.2136/sssaj1984.03615995004800040002x
  40. van Genuchten, M.Th., Wierenga, P.J., 1976. Mass transfer studies in sorbing porous media I. Analytical solutions. Soil Sci. Soc. Am. J., 40, 4, 473–480. DOI: 10.2136/sssaj1976.03615995004000040011x10.2136/sssaj1976.03615995004000040011x
  41. van Genuchten, M.Th., Šimůnek, J., Leij, F.J., Toride, N., Šejna, M., 2012. STANMOD: Model use, calibration and validation. Transport, ASABE, 55, 4, 1353–1366.10.13031/2013.42247
  42. Vanderborght, J., Vereecken, H., 2007. Review of dispersivities for transport modeling in soils. Vadose Zone J., 6, 1, 29–52.10.2136/vzj2006.0096
DOI: https://doi.org/10.2478/johh-2021-0004 | Journal eISSN: 1338-4333 | Journal ISSN: 0042-790X
Language: English
Page range: 161 - 170
Submitted on: Dec 16, 2019
Accepted on: Jan 4, 2021
Published on: May 21, 2021
Published by: Slovak Academy of Sciences, Institute of Hydrology; Institute of Hydrodynamics, Czech Academy of Sciences, Prague
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2021 Mojtaba G. Mahmoodlu, Amir Raoof, Martinus Th. van Genuchten, published by Slovak Academy of Sciences, Institute of Hydrology; Institute of Hydrodynamics, Czech Academy of Sciences, Prague
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.