International audienceTransport of fluids inside porous materials is relevant to many fields of application. Non-equilibrium molecular dynamics simulation is a powerful technique to explore fluid transport through porous media at the molecular scale. In this work, we compared two commonly used methods for studying pressure-driven transport. The first method was based on the application of an external force field on each fluid particle. The second method made use of two movable walls, acting as pistons, so as to generate transport. These two methods were used to study water transport inside a cylindrical hydrophilic silica nanopore. Several pressure differences were considered from 20 bar to 1000 bar. The results were compared to the theoret...
In the nanoscale, fluid motion is quite different from that in macroscale systems due to the high su...
The thermodynamic and transport properties of fluids confined to porous media are in this thesis inv...
The water transport through nanoporous multilayered graphene at 300k is investigated using molecular...
Molecular dynamics simulations are performed to study the transport and structural properties of wat...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
Simulation of the transport of methane in cylindrical silica mesopores have been performed using equ...
Molecular dynamics was adopted to simulate the flow behavior of water through nanopores at atomistic...
We experimentally explore pressure driven flow of water and n hexane across nanoporous silica Vycor...
International audienceThis paper reports on a molecular simulation study of the thermodynamics, stru...
Abstract. The work presents the results of the simulations of water flows through narrow channels (P...
Fluid transport in narrow pores is central to the design and optimization of nanoporous materials in...
ABSTRACT A method is proposed to measure the water permeability of membrane channels by means of mol...
La récupération d'hydrocarbures non conventionnels fait partie des enjeux énergétiques majeurs. Ils ...
International audienceThe processes associated with the hydrodynamics in calcium silicate hydrates n...
In the nanoscale, fluid motion is quite different from that in macroscale systems due to the high su...
The thermodynamic and transport properties of fluids confined to porous media are in this thesis inv...
The water transport through nanoporous multilayered graphene at 300k is investigated using molecular...
Molecular dynamics simulations are performed to study the transport and structural properties of wat...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
A theory is discussed of single-component transport in nanopores, recently developed by Bhatia and c...
Simulation of the transport of methane in cylindrical silica mesopores have been performed using equ...
Molecular dynamics was adopted to simulate the flow behavior of water through nanopores at atomistic...
We experimentally explore pressure driven flow of water and n hexane across nanoporous silica Vycor...
International audienceThis paper reports on a molecular simulation study of the thermodynamics, stru...
Abstract. The work presents the results of the simulations of water flows through narrow channels (P...
Fluid transport in narrow pores is central to the design and optimization of nanoporous materials in...
ABSTRACT A method is proposed to measure the water permeability of membrane channels by means of mol...
La récupération d'hydrocarbures non conventionnels fait partie des enjeux énergétiques majeurs. Ils ...
International audienceThe processes associated with the hydrodynamics in calcium silicate hydrates n...
In the nanoscale, fluid motion is quite different from that in macroscale systems due to the high su...
The thermodynamic and transport properties of fluids confined to porous media are in this thesis inv...
The water transport through nanoporous multilayered graphene at 300k is investigated using molecular...