TY - JOUR
T1 - Modelling water retention and volume change behaviours of unsaturated soils in non-isothermal conditions
AU - Zhou, An Nan
AU - Sheng, Daichao
AU - Li, Jie
PY - 2014/1
Y1 - 2014/1
N2 - This study presents a simple approach to modelling the effect of temperature on the soil-water retention curves (SWRCs) of deformable soils and takes into consideration the following two aspects: (1) the effect of temperature on the liquid-gas interfacial tension and (2) temperature-induced deformation of the soil skeleton. The first aspect, the temperature effect, can be modelled using an equation proposed by Grant and Salehzadeh [18], but the second aspect is generally neglected in the literature. To quantify the thermo-hydro-mechanical (THM) deformation of unsaturated soils (i.e., the second aspect mentioned above), a simple volume change equation, referred to as the non-isothermal SFG volumetric equation, is proposed on the basis of the original SFG framework [37]. A three-dimensional THM yield surface in the space of net mean stress, suction and temperature is presented here. The proposed volume change equation is integrated into the non-isothermal SWRC by means of a simple hydro-mechanical coupling law [38]. The performance of the non-isothermal SFG volumetric equation and the non-isothermal SWRC equation is investigated through several numerical examples. A number of experimental results reported in the literature are employed to confirm the validity of the proposed non-isothermal SFG volume change equation and the non-isothermal SWRC equation.
AB - This study presents a simple approach to modelling the effect of temperature on the soil-water retention curves (SWRCs) of deformable soils and takes into consideration the following two aspects: (1) the effect of temperature on the liquid-gas interfacial tension and (2) temperature-induced deformation of the soil skeleton. The first aspect, the temperature effect, can be modelled using an equation proposed by Grant and Salehzadeh [18], but the second aspect is generally neglected in the literature. To quantify the thermo-hydro-mechanical (THM) deformation of unsaturated soils (i.e., the second aspect mentioned above), a simple volume change equation, referred to as the non-isothermal SFG volumetric equation, is proposed on the basis of the original SFG framework [37]. A three-dimensional THM yield surface in the space of net mean stress, suction and temperature is presented here. The proposed volume change equation is integrated into the non-isothermal SWRC by means of a simple hydro-mechanical coupling law [38]. The performance of the non-isothermal SFG volumetric equation and the non-isothermal SWRC equation is investigated through several numerical examples. A number of experimental results reported in the literature are employed to confirm the validity of the proposed non-isothermal SFG volume change equation and the non-isothermal SWRC equation.
KW - Non-isothermal
KW - Soil-water retention curve (SWRC)
KW - Temperature
KW - Thermo-hydro-mechanical coupling
KW - Unsaturated soils
KW - Volume change
UR - https://www.scopus.com/pages/publications/84882940825
U2 - 10.1016/j.compgeo.2013.07.011
DO - 10.1016/j.compgeo.2013.07.011
M3 - 文章
AN - SCOPUS:84882940825
SN - 0266-352X
VL - 55
SP - 1
EP - 13
JO - Computers and Geotechnics
JF - Computers and Geotechnics
ER -