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Non-Fickian dispersivity investigation from numerical simulations of tracer transport in a model double-porosity medium at different saturations

Article dans une revue avec comité de lecture
Auteur
TRAN NGOC, T.D.
302745 Vietnam National University [Hanoï] [VNU]
491086 Ho Chi Minh City University of Technology [Vietnam National University, HCM] [HCMUT]
ccAHMADI-SENICHAULT, Azita
1002421 Institut de Mécanique et d'Ingénierie de Bordeaux [I2M]
BERTIN, Henri

URI
http://hdl.handle.net/10985/20625
DOI
10.1016/j.jconhyd.2020.103678
Date
2020
Journal
Journal of Contaminant Hydrology

Résumé

It is generally admitted that dispersivity is an indicator of the heterogeneity scale of porous media. This parameter is assumed to be an intrinsic property which characterizes the dispersive behavior during the transport of a tracer in a porous medium. When the medium is saturated by two fluid phases (water and air), dispersivity depends strongly on saturation. “Double-porosity” medium concept can be attributed to a class of heterogeneous soils and rocks in which a strong contrast in local pore size characteristics is observed. In this work, we characterized non-Fickian dispersivities of a double-porosity medium at different saturations, by performing numerical simulations for a series of one-dimensional experiments of tracer dispersion under different initial and boundary conditions. The physical double-porosity model was composed of solidified clayey spheres, distributed periodically in a more permeable sandy matrix. Using a two-equation macroscopic model, numerical simulations reproduced very well the experimental data, thus allowing to determine the dispersivity for different transport scenarios. For the first time, the existence of a unique dispersivity of a double-porosity medium at a given saturation was demonstrated for different transport scenarios of initial and boundary conditions. The saturation dependence of the dispersivity in the double-porosity medium was established and compared with the trends obtained for the single-porosity soils in previous studies.

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Documents liés

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  • Homogenization of Solute Transport in Unsaturated Double-Porosity Media: Model and Numerical Validation 
    Article dans une revue avec comité de lecture
    TRAN NGOC, T. D.; LE, Nam H. N.; TRAN, Tieng V.; BERTIN, Henri; ccAHMADI-SENICHAULT, Azita (Springer Science and Business Media LLC, 2020)
    The development of a macroscopic model for solute transport coupled with unsaturated water flow in double-porosity media is presented in this work, by using the asymptotic homogenization method. The model was derived for ...
  • What can be learnt about dispersivity from transport experiments in unsaturated double-porosity soils? 
    Communication avec acte
    TRAN NGOC, T.D.; ccAHMADI-SENICHAULT, Azita; BERTIN, Henri (2017)
    Dispersivity is assumed to be an intrinsic property which characterizes the heterogeneity scale of porous media. When the medium is unsaturated by two fluid phases (water and air), dispersivity depends strongly on the ...
  • Direct numerical simulation of colloid transport at the microscopic scale: influence of ionic strength in the presence of a rough surface 
    Communication sans acte
    SEFRIOUI, Nisrine; ccAHMADI-SENICHAULT, Azita; BERTIN, Henri; OMARI, Aziz (2012)
    The way colloids are transported, deposited or detached in porous media is of great importance in many practical problems such as filtration, environmental issues, petroleum engineering, … In this work, direct numerical ...
  • Etude expérimentale et numérique de la dissolution d’un polluant hydrocarboné dans un milieu poreux hétérogène 
    Communication avec acte
    YRA, Adrienne; ccAHMADI-SENICHAULT, Azita; BERTIN, Henri (2007)
    Le travail présenté traite de la dissolution d'un solvant partiellement miscible dans l'eau en milieu poreux hétérogène saturé. Une étude expérimentale réalisée à la fois sur des milieux poreux microscopiquement et ...
  • On the influence of ionic strength on colloid transport in porous media in the presence of a rough surface : numerical simulation at the microscopic scale 
    Communication avec acte
    SEFRIOUI, Nisrine; ccAHMADI-SENICHAULT, Azita; BERTIN, Henri; OMARI, Aziz (IFP Energies nouvelles, 2012)
    The understanding of Colloids transport, deposit or detachment in porous media is of central importance in many practical problems such as filtration, environmental issues and petroleum engineering. In particular, the ...

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