We use a mesoscopic computer simulation method to study the interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of hard sphere particles for Peclet numbers (Pe) ranging from 0.1-15. Even when the hydrodynamic interactions are an order of magnitude weaker than Brownian forces, they still induce backflow effects that dominate the reduction of the average sedimentation velocity with increasing particle packing fraction. Velocity fluctuations, on the other hand, begin to show nonequilibrium hydrodynamic character for Pe>1
We use a mesoscopic simulation technique to study the effect of short-ranged interparticle attractio...
We use a mesoscopic simulation technique to study the effect of short-ranged interparticle attractio...
Microstructural changes, that is an important feature for the understanding of the velocity variance...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
We adapt stochastic rotation dynamics, a mesoscopic computer simulation method, to colloidal suspens...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian part...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian par...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian part...
We use a mesoscopic simulation technique to study the effect of short-ranged interparticle attractio...
We use a mesoscopic simulation technique to study the effect of short-ranged interparticle attractio...
Microstructural changes, that is an important feature for the understanding of the velocity variance...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
We adapt stochastic rotation dynamics, a mesoscopic computer simulation method, to colloidal suspens...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian part...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian par...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian part...
We use a mesoscopic simulation technique to study the effect of short-ranged interparticle attractio...
We use a mesoscopic simulation technique to study the effect of short-ranged interparticle attractio...
Microstructural changes, that is an important feature for the understanding of the velocity variance...