Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent understanding of the results is still lacking. While Molecular Dynamics (MD) simulations cannot reach the low shear rates and large system sizes of the experiments, it is often impossible to resolve the needed details with macroscopic approaches. We model the interaction between hydrophobic channel walls and a fluid by means of a multi-phase lattice Boltzmann model. Our mesoscopic approach overcomes the limitations of MD simulations and can reach the small flow velocities of known experiments. We reproduce results from experiments at small Knudsen numbers and other simulations, namely an increase of slip with increasing liquid-solid interactio...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent u...
Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent u...
Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent u...
Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent u...
Fluid slip along hydrophobic microchannel walls has been observed experimentally by Tretheway and Me...
In this contribution we summarize our investigations of the effect of boundary slip by utilizing lat...
In this contribution we summarize our investigations of the effect of boundary slip by utilizing lat...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent u...
Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent u...
Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent u...
Various experiments have found a boundary slip in hydrophobic microchannel flows, but a consistent u...
Fluid slip along hydrophobic microchannel walls has been observed experimentally by Tretheway and Me...
In this contribution we summarize our investigations of the effect of boundary slip by utilizing lat...
In this contribution we summarize our investigations of the effect of boundary slip by utilizing lat...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid-wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...
We present a mesoscopic model of the fluid–wall interactions for flows in microchannel geometries. W...