International audienceThe aim of this work is to describe a method based on a simple representation of the pore size distribution, which is able to predict hysteresis phenomena encountered in water sorption–desorption isotherms, particularly for cementitious materials. The hysteresis effect due to network constrictivity is taken into account in order to extend models of transfer in porous media to situations involving wetting–drying cycles. This is not achieved in earlier models and their performance in terms of prediction in such conditions is thus limited. The present modeling is based on an idealized pore size distribution. This has three modes, associated with C–S–H pores, medium capillary pores, and large capillary pores including cons...
A numerical approach for moisture transport in porous materials like concrete is presented. The mode...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
An intermingled fractal units’ model is shown in order to simulate pore microstructures as pore frac...
International audienceThe aim of this work is to describe a method based on a simple representation ...
The durability of reinforced concrete structures and their service life are closely related to the s...
International audienceHysteretic behavior of water vapour sorption isotherms (WVSIs) has been widely...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
This paper reports on the recent development of a physico-chemical model for the water retention cha...
Shrinkage can be critical for the strength and durability of drying cement pastes. Shrinkage becomes...
The rate and extent of uptake and release of moisture are critical in controlling the behavior of ce...
The rate and extent of uptake and release of moisture are critical in controlling the behavior of ce...
Sorptivity is broadly used for characterising the pore connectivity of cementitious materials, with ...
International audienceIn this paper, the porosity of cementitious materials is described in terms of...
A numerical model for the thermo-hygral (TH) behaviour of cementitious materials is presented. The m...
A numerical approach for moisture transport in porous materials like concrete is presented. The mode...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
An intermingled fractal units’ model is shown in order to simulate pore microstructures as pore frac...
International audienceThe aim of this work is to describe a method based on a simple representation ...
The durability of reinforced concrete structures and their service life are closely related to the s...
International audienceHysteretic behavior of water vapour sorption isotherms (WVSIs) has been widely...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
This paper reports on the recent development of a physico-chemical model for the water retention cha...
Shrinkage can be critical for the strength and durability of drying cement pastes. Shrinkage becomes...
The rate and extent of uptake and release of moisture are critical in controlling the behavior of ce...
The rate and extent of uptake and release of moisture are critical in controlling the behavior of ce...
Sorptivity is broadly used for characterising the pore connectivity of cementitious materials, with ...
International audienceIn this paper, the porosity of cementitious materials is described in terms of...
A numerical model for the thermo-hygral (TH) behaviour of cementitious materials is presented. The m...
A numerical approach for moisture transport in porous materials like concrete is presented. The mode...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
An intermingled fractal units’ model is shown in order to simulate pore microstructures as pore frac...