International audienceThis paper aims to model the thermo-mechanical behavior of saturated clays under undrained conditions. Classic thermo-hydro-mechanical formulations obtained using different approaches were compared and discussed, showing their compatibility and differences. A thermo-elasto-plastic model called TEAM, using a two-surface approach, was developed for saturated clays under undrained conditions in the framework of thermo-poro-mechanics. The aim of the model is to predict a smooth transition between the elastic and elastoplastic states. Two additional physical parameters, namely volumetric thermal expansion coefficient and pore water compressibility, were back analyzed from the results of the undrained heating tests. By simul...
The aim of this paper is numerical analysis of the consolidation processes in soils due to high temp...
This paper introduces an unconventional constitutive model for soils, which deals with a unified the...
The purpose of this paper is to present a new finite element formulation for the hydro-thermo-mechan...
International audienceThis paper aims to evaluate the performance of several recent constitutive mod...
AbstractA thermo-mechanical constitutive model for unsaturated clays is constructed based on the exi...
A thermo-mechanical constitutive model for unsaturated clays is constructed based on the existing mo...
International audienceThis paper presents an advanced thermomechanical model – TEAM in the framework...
A new thermo-elasto-plastic constitutive model of saturated clay is proposed here based on the doubl...
This paper focuses on the validation of a prediction model for the thermally induced excess pore wat...
Thermal pore pressurization in soil media has been investigated for the past few decades. It has bee...
A thermo-elastic-plastic model for unsaturated soils has been presented based on theeffective stress...
In this work, the general ACMEG-TS thermo-elasto-plastic constitutive model for saturat-ed/unsaturat...
The aim of this work is the numerical study of the thermal consolidation process in the framework of...
peer reviewedThe paper presents a comparison between the nonlinear elastic and elastoplastic models ...
The paper presents a mechanical model for non-isothermal behaviour of variably saturated soils. The ...
The aim of this paper is numerical analysis of the consolidation processes in soils due to high temp...
This paper introduces an unconventional constitutive model for soils, which deals with a unified the...
The purpose of this paper is to present a new finite element formulation for the hydro-thermo-mechan...
International audienceThis paper aims to evaluate the performance of several recent constitutive mod...
AbstractA thermo-mechanical constitutive model for unsaturated clays is constructed based on the exi...
A thermo-mechanical constitutive model for unsaturated clays is constructed based on the existing mo...
International audienceThis paper presents an advanced thermomechanical model – TEAM in the framework...
A new thermo-elasto-plastic constitutive model of saturated clay is proposed here based on the doubl...
This paper focuses on the validation of a prediction model for the thermally induced excess pore wat...
Thermal pore pressurization in soil media has been investigated for the past few decades. It has bee...
A thermo-elastic-plastic model for unsaturated soils has been presented based on theeffective stress...
In this work, the general ACMEG-TS thermo-elasto-plastic constitutive model for saturat-ed/unsaturat...
The aim of this work is the numerical study of the thermal consolidation process in the framework of...
peer reviewedThe paper presents a comparison between the nonlinear elastic and elastoplastic models ...
The paper presents a mechanical model for non-isothermal behaviour of variably saturated soils. The ...
The aim of this paper is numerical analysis of the consolidation processes in soils due to high temp...
This paper introduces an unconventional constitutive model for soils, which deals with a unified the...
The purpose of this paper is to present a new finite element formulation for the hydro-thermo-mechan...