A new 3D implementation of a hybrid model based on the analogy with two-phase hydrodynamics has been developed for the simulation of liquids at microscale. The idea of the method is to smoothly combine the atomistic description in the molecular dynamics zone with the Landau-Lifshitz fluctuating hydrodynamics representation in the rest of the system in the framework of macroscopic conservation laws through the use of a single "zoom-in" user-defined function s that has the meaning of a partial concentration in the two-phase analogy model. In comparison with our previous works, the implementation has been extended to full 3D simulations for a range of atomistic models in GROMACS from argon to water in equilibrium conditions with a constant or ...
For atomistic scale-resolving simulations of peptide diffusion, which are representative of molecula...
Macroscopic phenomena can couple together with microscopic events creating complex feedback dynamics...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
A new 3D implementation of a hybrid model based on the analogy with two-phase hydrodynamics has been...
This thesis presents a two-dimensional water model investigation and development of a multiscale met...
A hybrid Molecular Dynamics/Fluctuating Hydrodynamics framework based on the analogy with two-phase ...
The hybrid Molecular Dynamics - Fluctuating Hydrodynamics model is extended for multi-resolution sim...
A triple-scale model of a molecular liquid, where atomistic, coarse-grained, and hydrodynamic descri...
A new hybrid molecular dynamics-hydrodynamics method based on the analogy with two-phase flows is im...
A novel framework for modelling biomolecular systems at multiple scales in space and time simultaneo...
The separation between molecular and mesoscopic length and time scales poses a severe limit to molec...
A multiscale Molecular Dynamics/Hydrodynamics implementation of the 2D Mercedes Benz (MB or BN2D) [1...
Abstract: Owing to the interplay between molecular and mesoscopic processes, the modelling and simul...
In soft matter physics there is a variety of systems where phenomena occur on different time- and le...
One of the most important developments in the last centuries is the process of miniaturisation and u...
For atomistic scale-resolving simulations of peptide diffusion, which are representative of molecula...
Macroscopic phenomena can couple together with microscopic events creating complex feedback dynamics...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
A new 3D implementation of a hybrid model based on the analogy with two-phase hydrodynamics has been...
This thesis presents a two-dimensional water model investigation and development of a multiscale met...
A hybrid Molecular Dynamics/Fluctuating Hydrodynamics framework based on the analogy with two-phase ...
The hybrid Molecular Dynamics - Fluctuating Hydrodynamics model is extended for multi-resolution sim...
A triple-scale model of a molecular liquid, where atomistic, coarse-grained, and hydrodynamic descri...
A new hybrid molecular dynamics-hydrodynamics method based on the analogy with two-phase flows is im...
A novel framework for modelling biomolecular systems at multiple scales in space and time simultaneo...
The separation between molecular and mesoscopic length and time scales poses a severe limit to molec...
A multiscale Molecular Dynamics/Hydrodynamics implementation of the 2D Mercedes Benz (MB or BN2D) [1...
Abstract: Owing to the interplay between molecular and mesoscopic processes, the modelling and simul...
In soft matter physics there is a variety of systems where phenomena occur on different time- and le...
One of the most important developments in the last centuries is the process of miniaturisation and u...
For atomistic scale-resolving simulations of peptide diffusion, which are representative of molecula...
Macroscopic phenomena can couple together with microscopic events creating complex feedback dynamics...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...