The hybrid Molecular Dynamics - Fluctuating Hydrodynamics model is extended for multi-resolution simulations of molecular diffusion in water under a steady shear flow. Cases of water self-diffusion and a small protein diffusion in water are considered. For the switched-off flow effect, the model is validated in comparison with the reference all-atom equilibrium molecular dynamics solution. With the flow effect included, the multiscale model correctly captures the mean flow velocity distribution as well as the difference between mean square deviations in different directions with respect to the flow in accordance with the diffusion theory. Results of the simulations are analysed in the context of using hydrodynamic flow gradients for molecul...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
We present a hybrid molecular-continuum simulation method for modelling nano- and micro-flows in net...
We present an internal-flow multiscale method (‘unsteady-IMM’) for compressible, time-varying/unstea...
The hybrid Molecular Dynamics - Fluctuating Hydrodynamics model is extended for multi-resolution sim...
For atomistic scale-resolving simulations of peptide diffusion, which are representative of molecula...
A new 3D implementation of a hybrid model based on the analogy with two-phase hydrodynamics has been...
A hybrid Molecular Dynamics/Fluctuating Hydrodynamics framework based on the analogy with two-phase ...
A hybrid multiscale method is developed for simulating micro- and nano-scale fluid flows. The contin...
This thesis presents a two-dimensional water model investigation and development of a multiscale met...
In soft matter physics there is a variety of systems where phenomena occur on different time- and le...
We present a new hybrid method for simulating dense fluid systems that exhibit multiscale behaviour,...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
One of the most important developments in the last centuries is the process of miniaturisation and u...
AbstractWe present a new hybrid method for simulating dense fluid systems that exhibit multiscale be...
We develop a new multiscale scheme for simulating micro/nano flows of high aspect ratio in the flow ...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
We present a hybrid molecular-continuum simulation method for modelling nano- and micro-flows in net...
We present an internal-flow multiscale method (‘unsteady-IMM’) for compressible, time-varying/unstea...
The hybrid Molecular Dynamics - Fluctuating Hydrodynamics model is extended for multi-resolution sim...
For atomistic scale-resolving simulations of peptide diffusion, which are representative of molecula...
A new 3D implementation of a hybrid model based on the analogy with two-phase hydrodynamics has been...
A hybrid Molecular Dynamics/Fluctuating Hydrodynamics framework based on the analogy with two-phase ...
A hybrid multiscale method is developed for simulating micro- and nano-scale fluid flows. The contin...
This thesis presents a two-dimensional water model investigation and development of a multiscale met...
In soft matter physics there is a variety of systems where phenomena occur on different time- and le...
We present a new hybrid method for simulating dense fluid systems that exhibit multiscale behaviour,...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
One of the most important developments in the last centuries is the process of miniaturisation and u...
AbstractWe present a new hybrid method for simulating dense fluid systems that exhibit multiscale be...
We develop a new multiscale scheme for simulating micro/nano flows of high aspect ratio in the flow ...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
We present a hybrid molecular-continuum simulation method for modelling nano- and micro-flows in net...
We present an internal-flow multiscale method (‘unsteady-IMM’) for compressible, time-varying/unstea...