The purpose of this article is to study the statics and dynamics of nanotubes by using the methods of continuum mechanics. The nanotube can be filled with only a liquid or a vapour phase according to the physicochemical characteristics of the wall and to the disjoining pressure associated with the liquid and vapour mother bulks of the fluid, regardless of the nature of the external mother bulk. In dynamics, flows through nanotubes can be much more important than classical Poiseuille flows. When the external mother bulk is of vapour, the flow can be a million times larger than the classical flows when slippage on wall does not exist
Within the scope of this thesis, a theoretical study of liquid flow in graphitic nanopores was perfo...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
Experimental and simulation measurements of water flow through carbon nanotubes have shown orders of...
The purpose of this article is to study the statics and dynamics of nanotubes by using the methods o...
27 pagesInternational audienceOn one hand, classical Monte Carlo and molecular dynamics (MD) simulat...
International audienceThe aim of the paper is the study of fluid mixtures in nanotubes by the method...
In the present article, an effort is made to analyse the coupled global dynamics of nanoscale fluid-...
The high water flow rates observed in carbon nanotubes (CNTs) have previously been attributed to the...
Understanding nanofluidic behavior is of fundamental value to the development of many potential nano...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
This article aims to analyse the global nonlocal dynamics of imperfect nanoscale fluid-conveying nan...
Flow enhancement in nanotubes is of great potential to achieve ultra-fast fluidic transport. However...
Carbon nanotubes make ideal nanopumps for the transport of fluid. To analyze the vibration and stabi...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
Carbon nanotubes make ideal nanopumps for the transport of fluid. To analyze the vibration and stabi...
Within the scope of this thesis, a theoretical study of liquid flow in graphitic nanopores was perfo...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
Experimental and simulation measurements of water flow through carbon nanotubes have shown orders of...
The purpose of this article is to study the statics and dynamics of nanotubes by using the methods o...
27 pagesInternational audienceOn one hand, classical Monte Carlo and molecular dynamics (MD) simulat...
International audienceThe aim of the paper is the study of fluid mixtures in nanotubes by the method...
In the present article, an effort is made to analyse the coupled global dynamics of nanoscale fluid-...
The high water flow rates observed in carbon nanotubes (CNTs) have previously been attributed to the...
Understanding nanofluidic behavior is of fundamental value to the development of many potential nano...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
This article aims to analyse the global nonlocal dynamics of imperfect nanoscale fluid-conveying nan...
Flow enhancement in nanotubes is of great potential to achieve ultra-fast fluidic transport. However...
Carbon nanotubes make ideal nanopumps for the transport of fluid. To analyze the vibration and stabi...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
Carbon nanotubes make ideal nanopumps for the transport of fluid. To analyze the vibration and stabi...
Within the scope of this thesis, a theoretical study of liquid flow in graphitic nanopores was perfo...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
Experimental and simulation measurements of water flow through carbon nanotubes have shown orders of...