We investigate the nonlinear responses of effective properties of unsaturated porous materials using a numerical framework. The multiphase microstructure is reconstructed through a random generation-growth method, and the transport governing equations are solved efficiently by a lattice Boltzmann model. After validated by the experimental data, the present framework is used to study the nonlinear behavior of thermal conductivity and electrical permittivity caused by the saturation degree and the phase interaction for multiphase materials. The results show that the effective thermal conductivity of unsaturated porous materials increase and then decrease with the phase interaction ratio, while the effective permittivity decrease monotonously ...
A fundamental study on the effective conductivity in random porous media is presented in this paper....
This paper presents a numerical method to predict the effective transport properties of multiphase f...
Thermal conductivity of dry porous building materials is determined by configuration of their solid ...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
A fractal analysis of effective thermal conductivity for unsaturated fractal porous media is present...
A three- dimensional mesoscopic method is developed for predicting the effective thermal conduct...
A mesoscopic numerical tool has been developed in this study for predictions of the effective therma...
This paper provides a full numerical tool set for modeling and predicting an effective apparent diel...
In this Chapter we study a particular type of multiphase systems, namely two-phase materials in whic...
The irreversibility of heat conduction in porous media, its relation to effective thermal conductivi...
A fundamental study on the effective conductivity in random porous media is presented in this paper....
This paper presents a numerical method to predict the effective transport properties of multiphase f...
Thermal conductivity of dry porous building materials is determined by configuration of their solid ...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
This paper analyzes the phase distribution effects on the effective thermal conductivity (ETC) of mu...
A fractal analysis of effective thermal conductivity for unsaturated fractal porous media is present...
A three- dimensional mesoscopic method is developed for predicting the effective thermal conduct...
A mesoscopic numerical tool has been developed in this study for predictions of the effective therma...
This paper provides a full numerical tool set for modeling and predicting an effective apparent diel...
In this Chapter we study a particular type of multiphase systems, namely two-phase materials in whic...
The irreversibility of heat conduction in porous media, its relation to effective thermal conductivi...
A fundamental study on the effective conductivity in random porous media is presented in this paper....
This paper presents a numerical method to predict the effective transport properties of multiphase f...
Thermal conductivity of dry porous building materials is determined by configuration of their solid ...