AbstractThis work proposes the application of a new simulation method based on fractal geometry for the calculation of the thermal conductivity for building materials. The results obtained are compared with the measurement, in a climatic chamber, of the heat flow through a material chosen as the sample. The test sample is made with “pietracantone”, a stone widely used as a building material and as an ornamental stone in the areas of Cagliari and Sassari in Sardinia. This material is characterized by a limestone matrix and a porosity which significantly influences the value of thermal conductivity. It is not known to the authors that this material had already been studied for its thermal properties
An approximate model, a fractal geometry model, for the effective thermal conductivity of three-phas...
Thermal conductivity of dry porous building materials is determined by configuration of their solid ...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
This work proposes the application of a new simulation method based on fractal geometry for the calc...
AbstractThis work proposes the application of a new simulation method based on fractal geometry for ...
This work proposes the application of a new simulation method based on fractal geometry for the calc...
Thermal conductivity is one of the most important parameters for construction and building materials...
The improvement in the insulation material performance is one of the recent crucial problems. The en...
AbstractSeveral studies have shown that fractal geometry is a tool that can replicate and investigat...
In this thesis, the correlation between microstructure and properties of porous materials is analyse...
Several studies have shown that fractal geometry is a tool that can replicate and investigate the na...
Heat transport in soils depends on the spatial arrangement of solids, ice, air and water. In this st...
This study presents an intermingled fractal model (IFU) capable of simulating the porous microstruct...
Stationary and dynamic heat and mass transfer analyses of building components are an essential part ...
The analysis of the porous microstructure can be addressed through the use of fractal geometry. The ...
An approximate model, a fractal geometry model, for the effective thermal conductivity of three-phas...
Thermal conductivity of dry porous building materials is determined by configuration of their solid ...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
This work proposes the application of a new simulation method based on fractal geometry for the calc...
AbstractThis work proposes the application of a new simulation method based on fractal geometry for ...
This work proposes the application of a new simulation method based on fractal geometry for the calc...
Thermal conductivity is one of the most important parameters for construction and building materials...
The improvement in the insulation material performance is one of the recent crucial problems. The en...
AbstractSeveral studies have shown that fractal geometry is a tool that can replicate and investigat...
In this thesis, the correlation between microstructure and properties of porous materials is analyse...
Several studies have shown that fractal geometry is a tool that can replicate and investigate the na...
Heat transport in soils depends on the spatial arrangement of solids, ice, air and water. In this st...
This study presents an intermingled fractal model (IFU) capable of simulating the porous microstruct...
Stationary and dynamic heat and mass transfer analyses of building components are an essential part ...
The analysis of the porous microstructure can be addressed through the use of fractal geometry. The ...
An approximate model, a fractal geometry model, for the effective thermal conductivity of three-phas...
Thermal conductivity of dry porous building materials is determined by configuration of their solid ...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe