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Mechanisms and critical properties in drying shrinkage of soils: Experimental and numerical parametric studies

Publication ,  Journal Article
Hu, LB; Péron, H; Hueckel, T; Laloui, L
Published in: Canadian Geotechnical Journal
May 1, 2013

Mechanisms of free-shrinkage strains of desiccating deformable initially saturated soils are studied. The role of the surface evaporation rate, surface tension and viscosity of pore fluid, and soil compressibility and permeability is investigated in experimental and numerical parametric studies. Two different geomaterials with three different pore fluids are tested and numerically simulated using a macroscale Biot theory model and a mesoscale vessel model. Evolution of shrinkage strain and fluid content is reported and evaluated. The total amount of shrinkage and shrinkage limit are found to correlate with both solid fraction compressibility and surface tension of the fluid fraction. Most of the strain occurs in the saturated stage of drying concomitant with a build-up of fluid suction. The macroscopic Biot model yields good results in the saturated stage of drying. However, the air-entry criteria are all formulated at meso- or microscale. Hence, a mesoscale deformable pore vessel model is adopted, with pore fluid suction limited by a fluid tensile stress threshold identified with fluid cavitation. Beyond cavitation, air entry occurs. Subsequently, partially fluid-filled pore vessels are considered with fluid evaporation across a migrating fluid-gas interface within the vessel. A mesoscale model parametric study confirms that the total drying shrinkage strain and the shrinkage limit depend on the solids' compressibility, as well as on the fluid surface tension.

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Published In

Canadian Geotechnical Journal

DOI

EISSN

1208-6010

ISSN

0008-3674

Publication Date

May 1, 2013

Volume

50

Issue

5

Start / End Page

536 / 549

Related Subject Headings

  • Geological & Geomatics Engineering
  • 4019 Resources engineering and extractive metallurgy
  • 4005 Civil engineering
  • 0907 Environmental Engineering
  • 0905 Civil Engineering
 

Citation

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Hu, L. B., Péron, H., Hueckel, T., & Laloui, L. (2013). Mechanisms and critical properties in drying shrinkage of soils: Experimental and numerical parametric studies. Canadian Geotechnical Journal, 50(5), 536–549. https://doi.org/10.1139/cgj-2012-0065
Hu, L. B., H. Péron, T. Hueckel, and L. Laloui. “Mechanisms and critical properties in drying shrinkage of soils: Experimental and numerical parametric studies.” Canadian Geotechnical Journal 50, no. 5 (May 1, 2013): 536–49. https://doi.org/10.1139/cgj-2012-0065.
Hu LB, Péron H, Hueckel T, Laloui L. Mechanisms and critical properties in drying shrinkage of soils: Experimental and numerical parametric studies. Canadian Geotechnical Journal. 2013 May 1;50(5):536–49.
Hu, L. B., et al. “Mechanisms and critical properties in drying shrinkage of soils: Experimental and numerical parametric studies.” Canadian Geotechnical Journal, vol. 50, no. 5, May 2013, pp. 536–49. Scopus, doi:10.1139/cgj-2012-0065.
Hu LB, Péron H, Hueckel T, Laloui L. Mechanisms and critical properties in drying shrinkage of soils: Experimental and numerical parametric studies. Canadian Geotechnical Journal. 2013 May 1;50(5):536–549.

Published In

Canadian Geotechnical Journal

DOI

EISSN

1208-6010

ISSN

0008-3674

Publication Date

May 1, 2013

Volume

50

Issue

5

Start / End Page

536 / 549

Related Subject Headings

  • Geological & Geomatics Engineering
  • 4019 Resources engineering and extractive metallurgy
  • 4005 Civil engineering
  • 0907 Environmental Engineering
  • 0905 Civil Engineering