In this paper, we present a new method to determine the pore-size distribution (PSD) in a porous medium. This innovative technique uses the rheological properties of non-Newtonian yield stress fluids flowing through the porous sample. In a first approach, the capillary bundle model will be used. The PSD is obtained from the measurement of the total flow rate of fluid as a function of the imposed pressure gradient magnitude. The mathematical processing of the experimental data, which depends on the type of yield stress fluid, provides an overview of the pore size distribution of the porous material. The technique proposed here was successfully tested analytically and numerically for usual pore size distributions such as the Gaussian mono and...
Deux approches pour caractériser les milieux poreux en terme de distribution de taille de pores (DTP...
Current methods used to determine pore size distribution of porous media (as mercury porosimetry) pr...
Deux approches pour caractériser les milieux poreux en terme de distribution de taille de pores (DTP...
In this paper, we present a new method to determine the pore-size distribution (PSD) in a porous med...
In this paper, we present a new method to determine the pore-size distribution (PSD) in a porous med...
In this paper a new method is presented in order to determine the pore size distribution in a porous...
Current methods employed to determine pore size distributions in porous media present several drawba...
Current methods employed to determine pore size distributions in porous media present several drawba...
Current methods used to determine pore size distribution of porous media (as mercury porosimetry) pr...
Current methods used to determine pore size distribution of porous media (as mercury porosimetry) pr...
Current methods employed to determine pore size distributions in porous media present several drawba...
International audienceCurrent methods used to determine pore size distribution of porous media (as m...
Current methods employed to determine pore size distributions in porous media present several drawba...
A new data analyzing method to characterize pore size distribution (PSD) of porous media was recentl...
A new data analyzing method to characterize pore size distribution (PSD) of porous media was recentl...
Deux approches pour caractériser les milieux poreux en terme de distribution de taille de pores (DTP...
Current methods used to determine pore size distribution of porous media (as mercury porosimetry) pr...
Deux approches pour caractériser les milieux poreux en terme de distribution de taille de pores (DTP...
In this paper, we present a new method to determine the pore-size distribution (PSD) in a porous med...
In this paper, we present a new method to determine the pore-size distribution (PSD) in a porous med...
In this paper a new method is presented in order to determine the pore size distribution in a porous...
Current methods employed to determine pore size distributions in porous media present several drawba...
Current methods employed to determine pore size distributions in porous media present several drawba...
Current methods used to determine pore size distribution of porous media (as mercury porosimetry) pr...
Current methods used to determine pore size distribution of porous media (as mercury porosimetry) pr...
Current methods employed to determine pore size distributions in porous media present several drawba...
International audienceCurrent methods used to determine pore size distribution of porous media (as m...
Current methods employed to determine pore size distributions in porous media present several drawba...
A new data analyzing method to characterize pore size distribution (PSD) of porous media was recentl...
A new data analyzing method to characterize pore size distribution (PSD) of porous media was recentl...
Deux approches pour caractériser les milieux poreux en terme de distribution de taille de pores (DTP...
Current methods used to determine pore size distribution of porous media (as mercury porosimetry) pr...
Deux approches pour caractériser les milieux poreux en terme de distribution de taille de pores (DTP...