The observed flow enhancement in highly confining geometries is believed to be caused by fluid velocity slip at the solid wall surface. Here we present a simple and highly accurate method to predict this slip using equilibrium molecular dynamics. Unlike previous equilibrium molecular dynamics methods, it allows us to directly compute the intrinsic wall-fluid friction coefficient rather than an empirical friction coefficient that includes all sources of friction for planar shear flow. The slip length predicted by our method is in excellent agreement with the slip length obtained from direct nonequilibrium molecular dynamics simulations
This study demonstrates that even when the no-slip condition is satisfied on the surface of a solid ...
The molecular mechanism of slip at the interface between polymer melts and weakly attractive smooth ...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...
The observed flow enhancement in highly confining geometries is believed to be caused by fluid veloc...
Molecular dynamics (MD) and continuum simulations are carried out to investigate the influence of sh...
The dynamic behavior of the slip length in a fluid flow confined between atomically smooth surfaces ...
International audienceWe present Molecular Dynamics (MD) simulations of liquid water confined within...
It is now well established that for fluid flow at the micro- and nano-scales the standard no-slip bo...
The influence of surface roughness on the slip behavior of a Newtonian liquid in steady planar shear...
It is now well established that for fluid flow at the micro- and nano-scales the standard no-slip bo...
The slip behavior of simple fluids over atomically smooth surfaces was investigated in a wide range ...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
This study demonstrates that even when the no-slip condition is satisfied on the surface of a solid ...
The molecular mechanism of slip at the interface between polymer melts and weakly attractive smooth ...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...
The observed flow enhancement in highly confining geometries is believed to be caused by fluid veloc...
Molecular dynamics (MD) and continuum simulations are carried out to investigate the influence of sh...
The dynamic behavior of the slip length in a fluid flow confined between atomically smooth surfaces ...
International audienceWe present Molecular Dynamics (MD) simulations of liquid water confined within...
It is now well established that for fluid flow at the micro- and nano-scales the standard no-slip bo...
The influence of surface roughness on the slip behavior of a Newtonian liquid in steady planar shear...
It is now well established that for fluid flow at the micro- and nano-scales the standard no-slip bo...
The slip behavior of simple fluids over atomically smooth surfaces was investigated in a wide range ...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
This study demonstrates that even when the no-slip condition is satisfied on the surface of a solid ...
The molecular mechanism of slip at the interface between polymer melts and weakly attractive smooth ...
We introduce an analytical method to predict the slip length (L s) in cylindrical nanopores using eq...