We investigate through non-equilibrium molecular dynamic simulations the flow of anomalous fluids inside rigid nanotubes. Our results reveal an anomalous increase of the overall mass flux for nanotubes with sufficiently smaller radii. This is explained in terms of a transition from a single-file type of flow to the movement of an ordered-like fluid as the nanotube radius increases. The occurrence of a global minimum in the mass flux at this transition reflects the competition between the two characteristic length scales of the core-softened potential. Moreover, by increasing further the radius, another substantial change in the flow behavior, which becomes more evident at low temperatures, leads to a local minimum in the overall mass flux. ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
27 pagesInternational audienceOn one hand, classical Monte Carlo and molecular dynamics (MD) simulat...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...
We investigate through non-equilibrium molecular dynamic simulations the flow of anomalous fluids in...
We study the effect of confinement in the dynamical behavior of a core-softened fluid. The fluid is ...
We explore by molecular dynamic simulations the thermodynamical behavior of an anomalous fluid confi...
Flow enhancement in nanotubes is of great potential to achieve ultra-fast fluidic transport. However...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
Understanding nanofluidic behavior is of fundamental value to the development of many potential nano...
Using a purpose built molecular dynamics (MD) code. we simulate a range of infinite and finite lengt...
International audienceThe remaining dynamical degrees of freedom of molecular fluids confined into c...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
The high water flow rates observed in carbon nanotubes (CNTs) have previously been attributed to the...
We use molecular dynamics simulations to study the diffusion of water inside deformed carbon nanotu...
The purpose of this article is to study the statics and dynamics of nanotubes by using the methods o...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
27 pagesInternational audienceOn one hand, classical Monte Carlo and molecular dynamics (MD) simulat...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...
We investigate through non-equilibrium molecular dynamic simulations the flow of anomalous fluids in...
We study the effect of confinement in the dynamical behavior of a core-softened fluid. The fluid is ...
We explore by molecular dynamic simulations the thermodynamical behavior of an anomalous fluid confi...
Flow enhancement in nanotubes is of great potential to achieve ultra-fast fluidic transport. However...
AbstractThe dynamics of fluid flow through nanochannels is different from those in macroscopic syste...
Understanding nanofluidic behavior is of fundamental value to the development of many potential nano...
Using a purpose built molecular dynamics (MD) code. we simulate a range of infinite and finite lengt...
International audienceThe remaining dynamical degrees of freedom of molecular fluids confined into c...
International audienceThis work revisits capillary filling dynamics in the regime of nanometric to s...
The high water flow rates observed in carbon nanotubes (CNTs) have previously been attributed to the...
We use molecular dynamics simulations to study the diffusion of water inside deformed carbon nanotu...
The purpose of this article is to study the statics and dynamics of nanotubes by using the methods o...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
27 pagesInternational audienceOn one hand, classical Monte Carlo and molecular dynamics (MD) simulat...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...