We present a new hybrid method for simulating dense fluid systems that exhibit multiscale behaviour, in particular, systems in which a Navier-Stokes model may not be valid in parts of the computational domain. We apply molecular dynamics as a local microscopic refinement for correcting the Navier-Stokes constitutive approximation in the bulk of the domain, as well as providing a direct measurement of velocity slip at bounding surfaces. Our hybrid approach differs from existing techniques, such as the heterogeneous multiscale method (HMM), in some fundamental respects. In our method, the individual molecular solvers, which provide information to the macro model, are not coupled with the continuum grid at nodes (i.e. point-wise coupling), ins...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
We develop an efficient parallel multiscale method that bridges the atomistic and mesoscale regimes,...
We present a new reduced-order hybrid multiscale method to simulate com- plex fluids. ...
We present a new hybrid method for simulating dense fluid systems that exhibit multiscale behaviour,...
AbstractWe present a new hybrid method for simulating dense fluid systems that exhibit multiscale be...
One of the most important developments in the last centuries is the process of miniaturisation and u...
A hybrid multiscale method is developed for simulating micro- and nano-scale fluid flows. The contin...
A multiscale framework for simulation of fluid flow is developed by using a hybrid atomistic-continu...
In soft matter physics there is a variety of systems where phenomena occur on different time- and le...
We present a hybrid molecular-continuum method for the simulation of general nano-fluidic networks, ...
This is an arXiv preprint which has not been certified by peer review. 21 pages, 8 figures perspecti...
We develop a method for multiscale hybrid simulations of molecular dynamics (MD) and computational f...
AbstractNano- and microscale flow phenomena turn out to be highly non-trivial for simulation and req...
We discuss hybrid atomistic-continuum methods for multiscale hydrodynamic applications. Both dense-f...
Simulation of nano-scale channel flows using a coupled Navier–Stokes/Molecular Dynamics (MD) method ...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
We develop an efficient parallel multiscale method that bridges the atomistic and mesoscale regimes,...
We present a new reduced-order hybrid multiscale method to simulate com- plex fluids. ...
We present a new hybrid method for simulating dense fluid systems that exhibit multiscale behaviour,...
AbstractWe present a new hybrid method for simulating dense fluid systems that exhibit multiscale be...
One of the most important developments in the last centuries is the process of miniaturisation and u...
A hybrid multiscale method is developed for simulating micro- and nano-scale fluid flows. The contin...
A multiscale framework for simulation of fluid flow is developed by using a hybrid atomistic-continu...
In soft matter physics there is a variety of systems where phenomena occur on different time- and le...
We present a hybrid molecular-continuum method for the simulation of general nano-fluidic networks, ...
This is an arXiv preprint which has not been certified by peer review. 21 pages, 8 figures perspecti...
We develop a method for multiscale hybrid simulations of molecular dynamics (MD) and computational f...
AbstractNano- and microscale flow phenomena turn out to be highly non-trivial for simulation and req...
We discuss hybrid atomistic-continuum methods for multiscale hydrodynamic applications. Both dense-f...
Simulation of nano-scale channel flows using a coupled Navier–Stokes/Molecular Dynamics (MD) method ...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
We develop an efficient parallel multiscale method that bridges the atomistic and mesoscale regimes,...
We present a new reduced-order hybrid multiscale method to simulate com- plex fluids. ...