We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s thermodynamics of small systems, also known as nanothermodynamics. This way of defining small system thermodynamics, with a separate set of control variables, may be useful for the study of transport in non-deformable porous media, where presently no consensus exists on pressure computations. For a confined fluid, we observe that there are two pressures, the integral and the differential pressures. We use molecular simulations to investigate and confirm the nanothermodynamic relations for a representative elementary volume (REV). For a model system of a single-phase fluid in a face-centered cubic lattice of solid spheres of varying porosity, ...
The boundary-driven molecular modeling strategy to evaluate mass transport coefficients of fluids in...
To gain a deeper understanding and to master the mechanical properties of classical fluids confined ...
Le comportement d’un fluide confiné dans un milieu poreux peu perméable (micro- and méso-pores) a ét...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
The thermodynamic and transport properties of fluids confined to porous media are in this thesis inv...
We define the pressure of a porous medium in terms of the grand potential and compute its value in a...
We define the pressure of a porous medium in terms of the grand potential, and compute its value in ...
It is known that thermodynamic properties of a system change upon confinement. To know how, is impor...
We have described for the first time the thermodynamic state of a highly confined single-phase and s...
The accurate description of the behavior of fluids in nanoporous materials is of great importance fo...
The accurate description of the behavior of fluids in nanoporous materials is of great importance fo...
Darcy's law for porous media transport is given a new local thermodynamic basis in terms of the gran...
Confined fluids in nano-mineral pores show notably different thermodynamic behavior compared with th...
In this paper, thermodynamic phase behaviour and miscibility of confined pure and mixing fluids in n...
The boundary-driven molecular modeling strategy to evaluate mass transport coefficients of fluids in...
To gain a deeper understanding and to master the mechanical properties of classical fluids confined ...
Le comportement d’un fluide confiné dans un milieu poreux peu perméable (micro- and méso-pores) a ét...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill’s ...
The thermodynamic and transport properties of fluids confined to porous media are in this thesis inv...
We define the pressure of a porous medium in terms of the grand potential and compute its value in a...
We define the pressure of a porous medium in terms of the grand potential, and compute its value in ...
It is known that thermodynamic properties of a system change upon confinement. To know how, is impor...
We have described for the first time the thermodynamic state of a highly confined single-phase and s...
The accurate description of the behavior of fluids in nanoporous materials is of great importance fo...
The accurate description of the behavior of fluids in nanoporous materials is of great importance fo...
Darcy's law for porous media transport is given a new local thermodynamic basis in terms of the gran...
Confined fluids in nano-mineral pores show notably different thermodynamic behavior compared with th...
In this paper, thermodynamic phase behaviour and miscibility of confined pure and mixing fluids in n...
The boundary-driven molecular modeling strategy to evaluate mass transport coefficients of fluids in...
To gain a deeper understanding and to master the mechanical properties of classical fluids confined ...
Le comportement d’un fluide confiné dans un milieu poreux peu perméable (micro- and méso-pores) a ét...