Constitutive Relations for Partially Saturated Soils Containing Gas Inclusions
- 1 January 1996
- journal article
- Published by American Society of Civil Engineers (ASCE) in Journal of Geotechnical Engineering
- Vol. 122 (1) , 50-59
- https://doi.org/10.1061/(asce)0733-9410(1996)122:1(50)
Abstract
This paper is concerned with a mathematical description of the undrained response of partially saturated soils having a continuous liquid phase (water) and a gas in the form of discrete bubbles. Two types of soil structures are considered. First is the case in which the gas inclusions, of size much smaller than the average particle size, are entrapped in the water phase. Second is the case in which the comparatively larger gas bubbles are embedded in the saturated soil skeleton. The fluid phases are assumed to be separated by boundaries across which discontinuities in pressure exist due to surface tension. The soil is treated as a three-phase composite medium and the mechanical properties are described in terms of average stress/strain measures in all constituents. The mathematical formulation incorporates the average pore/bubble size as an independent material parameter governing the mechanical response.Keywords
This publication has 16 references indexed in Scilit:
- A continuum theory of granular media partially saturated with a viscous fluidInternational Journal for Numerical and Analytical Methods in Geomechanics, 1994
- A constitutive model for partially saturated soilsGéotechnique, 1990
- Micromechanics of defects in solidsPublished by Springer Nature ,1987
- Wave-induced stresses in unsaturated submarine sedimentsGéotechnique, 1985
- Consolidation analysis for partly saturated clay by using an elastic–plastic effective stress–strain modelInternational Journal for Numerical and Analytical Methods in Geomechanics, 1983
- Pore pressure parameters for unsaturated soilsCanadian Geotechnical Journal, 1980
- Wave-induced pore pressures and effective stresses in a porous bedGéotechnique, 1978
- Density and compressibility characteristics of air–water mixturesCanadian Geotechnical Journal, 1976
- SURFACE AREA OF SOILS AND CLAYS BY AN EQUILIBRIUM ETHYLENE GLYCOL METHODSoil Science, 1959
- Chemical engineers' handbookJournal of Chemical Education, 1950