An intermingled fractal units’ model is shown in order to simulate pore microstructures as pore fraction and pore size distribution. This model is aimed at predicting capillary water absorption coefficient and sorptivity values in cement pastes. The results obtained are in good agreement with the experimental ones. For validating this model, a comparison with other procedures has been shown. It is possible to establish that the newly proposed method matches better with the experimental results. That is probably due to the fact that pore size distribution has been considered as a whole. Moreover, even though the proposed model is based on fractal base units, it is able to simulate and predict different properties as well as nonfractal porous...
The Sorptivity is a coefficient very important to characterize porous materials. It is associated to...
The pores in cementitious materials, their sizes and connectivity have an important influence on the...
The Sorptivity is a coefficient very important to characterize porous materials. It is associated to...
An intermingled fractal units’ model is shown in order to simulate pore microstructures as pore frac...
An intermingled fractal units’ model is shown in order to simulate pore microstructures as pore frac...
In this study, two new approaches for pore structure assessment of cement paste are investigated and...
none4noThis study presents an intermingled fractal model capable of simulating the porous microstruc...
Sorptivity is broadly used for characterising the pore connectivity of cementitious materials, with ...
Cement-based materials, including cement and concrete, are the most widely used construction materia...
This study presents an intermingled fractal model capable of simulating the porous microstructure of...
This study presents an intermingled fractal model capable of simulating the porous microstructure of...
This study presents an intermingled fractal model capable of simulating the porous microstructure of...
This study presents an intermingled fractal model capable of simulating the porous microstructure of...
Sorptivity is broadly used for characterising the pore connectivity of cementitious materials, with ...
Sorptivity is broadly used for characterising the pore connectivity of cementitious materials, with ...
The Sorptivity is a coefficient very important to characterize porous materials. It is associated to...
The pores in cementitious materials, their sizes and connectivity have an important influence on the...
The Sorptivity is a coefficient very important to characterize porous materials. It is associated to...
An intermingled fractal units’ model is shown in order to simulate pore microstructures as pore frac...
An intermingled fractal units’ model is shown in order to simulate pore microstructures as pore frac...
In this study, two new approaches for pore structure assessment of cement paste are investigated and...
none4noThis study presents an intermingled fractal model capable of simulating the porous microstruc...
Sorptivity is broadly used for characterising the pore connectivity of cementitious materials, with ...
Cement-based materials, including cement and concrete, are the most widely used construction materia...
This study presents an intermingled fractal model capable of simulating the porous microstructure of...
This study presents an intermingled fractal model capable of simulating the porous microstructure of...
This study presents an intermingled fractal model capable of simulating the porous microstructure of...
This study presents an intermingled fractal model capable of simulating the porous microstructure of...
Sorptivity is broadly used for characterising the pore connectivity of cementitious materials, with ...
Sorptivity is broadly used for characterising the pore connectivity of cementitious materials, with ...
The Sorptivity is a coefficient very important to characterize porous materials. It is associated to...
The pores in cementitious materials, their sizes and connectivity have an important influence on the...
The Sorptivity is a coefficient very important to characterize porous materials. It is associated to...