Prediction of water and salt movement and salt crystallization in porous materials can be done effectively by means of mathematical and computational modeling. In this way, the time development of water and salt concentration fields can be obtained which is crucial for a proper assessment of possible future damage of materials. In this paper, computational simulation of water and salt movement and salt crystallization in envelope parts of historical buildings is presented. The diffusion-advection model is used for basic description of coupled water and salt transport, taking into account both water movement due to the moisture gradient and diffusion and dispersion effects within the liquid phase due to the concentration gradient. Salt crys...
Heat, moisture and salt transport combined with salt crystallization strongly influence the durabili...
Salt ions may penetrate into building materials due to diffusive and convective transport processes ...
To conserve historic masonry structures there is an increasing need to understand the deterioration ...
Damp rising and salt crystallization are important factors affecting degradation of porous materials...
Salt crystallization is one of the major factors of degradation of porous materials such as masonry....
In this paper, a finite element model is presented, describing moisture and salt transport combined ...
In this research work a model was developed that describes the combined heat, air, moisture and salt...
COMInternational audienceEnvironmental conditions are one of the most important factors that lead to...
A new fully coupled multiphase model for hygrothermal analysis and prediction of salt diffusion and ...
The conservation of historical masonry structures is a problem of great importance in Europe and esp...
Salt crystallization is recognized as a major cause of damage to porous building materials, threaten...
Ancient cultural buildings are often exposed to the risk of being damaged by soluble salt crystalliz...
International audienceReactive transport is a critical issue in building materials because it is clo...
Over the last few decades, brick masonry buildings in the UK, the Netherlands and Belgium have start...
Heat, moisture and salt transport combined with salt crystallization strongly influence the durabili...
Salt ions may penetrate into building materials due to diffusive and convective transport processes ...
To conserve historic masonry structures there is an increasing need to understand the deterioration ...
Damp rising and salt crystallization are important factors affecting degradation of porous materials...
Salt crystallization is one of the major factors of degradation of porous materials such as masonry....
In this paper, a finite element model is presented, describing moisture and salt transport combined ...
In this research work a model was developed that describes the combined heat, air, moisture and salt...
COMInternational audienceEnvironmental conditions are one of the most important factors that lead to...
A new fully coupled multiphase model for hygrothermal analysis and prediction of salt diffusion and ...
The conservation of historical masonry structures is a problem of great importance in Europe and esp...
Salt crystallization is recognized as a major cause of damage to porous building materials, threaten...
Ancient cultural buildings are often exposed to the risk of being damaged by soluble salt crystalliz...
International audienceReactive transport is a critical issue in building materials because it is clo...
Over the last few decades, brick masonry buildings in the UK, the Netherlands and Belgium have start...
Heat, moisture and salt transport combined with salt crystallization strongly influence the durabili...
Salt ions may penetrate into building materials due to diffusive and convective transport processes ...
To conserve historic masonry structures there is an increasing need to understand the deterioration ...