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Details

Autor(en) / Beteiligte
Titel
Modeling the arrangement of particles in natural swelling-clay porous media using three-dimensional packing of elliptic disks
Ist Teil von
  • Physical review. E, 2015-06, Vol.91 (6), p.062210-062210, Article 062210
Ort / Verlag
United States: American Physical Society (APS)
Erscheinungsjahr
2015
Link zum Volltext
Quelle
PROLA - Physical Review Online Archive
Beschreibungen/Notizen
  • Swelling clay minerals play a key role in the control of water and pollutant migration in natural media such as soils. Moreover, swelling clay particles' orientational properties in porous media have significant implications for the directional dependence of fluid transfer. Herein we investigate the ability to mimic the organization of particles in natural swelling-clay porous media using a three-dimensional sequential particle deposition procedure [D. Coelho, J.-F. Thovert, and P. M. Adler, Phys. Rev. E 55, 1959 (1997)]. The algorithm considered is first used to simulate disk packings. Porosities of disk packings fall onto a single master curve when plotted against the orientational scalar order parameter value. This relation is used to validate the algorithm used in comparison with existing ones. The ellipticity degree of the particles is shown to have a negligible effect on the packing porosity for ratios ℓ(a)/ℓ(b) less than 1.5, whereas a significant increase in porosity is obtained for higher values. The effect of the distribution of the geometrical parameters (size, aspect ratio, and ellipticity degree) of particles on the final packing properties is also investigated. Finally, the algorithm is used to simulate particle packings for three size fractions of natural swelling-clay mineral powders. Calculated data regarding the distribution of the geometrical parameters and orientation of particles in porous media are successfully compared with experimental data obtained for the same samples. The results indicate that the obtained virtual porous media can be considered representative of natural samples and can be used to extract properties difficult to obtain experimentally, such as the anisotropic features of pore and solid phases in a system.
Sprache
Englisch
Identifikatoren
ISSN: 1539-3755, 2470-0045
eISSN: 1550-2376, 2470-0053
DOI: 10.1103/PhysRevE.91.062210
Titel-ID: cdi_hal_primary_oai_HAL_hal_01335839v1
Format
Schlagworte
Catalysis, Chemical Sciences

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