When studying fluids with molecular dynamics simulations, periodic boundaries are usually used to model the infinite bulk fluid surrounding the primary cell. For homogeneous systems this is, as a rule, the most appropriate way. For inhomogeneous systems, e.g. systems with a fluid-vapour interface, periodic boundaries have some disadvantages. Therefore, an alternative for periodic boundaries, called the shifted reflective boundary, is proposed for modelling such systems. From a computational point of view, this type of boundary is no more difficult to implement than periodic boundaries. It is shown that the shifted reflective boundary results in a stable spatial fluid-vapour configuration with one fluid-vapour interface, while retrieving the...
In this paper a new particle wall boundary condition to replace explicit solid walls in molecular dy...
Thin film and nano-tube manufacturing, micro-channel cooling, and many other similar interesting tec...
Thin film and nano-tube manufacturing, micro-channel cooling, and many other similar interesting tec...
This thesis aims to complete our understanding of the interface of a liquid-vapour system. While the...
The imposition of non-periodic boundary conditions is a challenging issue in molecular dynamics (MD)...
A simple model for the treatment of boundaries in molecular dynamics simulations is presented. The m...
A simple model for the treatment of boundaries in molecular dynamics simulations is presented. The m...
International audienceWe study how surface phenomena can change the interface geometry in liquid–liq...
International audienceWe study how surface phenomena can change the interface geometry in liquid–liq...
A simple model for the treatment of boundaries in molecular dynamics simulations is presented. The m...
A hybrid Molecular Dynamics/Fluctuating Hydrodynamics framework based on the analogy with two-phase ...
A nonequilibrium molecular dynamics algorithm is employed to study a fluid confined between two immo...
In this paper a new particle wall boundary condition to replace explicit solid walls in molecular dy...
In this paper a new particle wall boundary condition to replace explicit solid walls in molecular dy...
We develop a new class of accurate and efficient absorbing boundary conditions,named as matching bou...
In this paper a new particle wall boundary condition to replace explicit solid walls in molecular dy...
Thin film and nano-tube manufacturing, micro-channel cooling, and many other similar interesting tec...
Thin film and nano-tube manufacturing, micro-channel cooling, and many other similar interesting tec...
This thesis aims to complete our understanding of the interface of a liquid-vapour system. While the...
The imposition of non-periodic boundary conditions is a challenging issue in molecular dynamics (MD)...
A simple model for the treatment of boundaries in molecular dynamics simulations is presented. The m...
A simple model for the treatment of boundaries in molecular dynamics simulations is presented. The m...
International audienceWe study how surface phenomena can change the interface geometry in liquid–liq...
International audienceWe study how surface phenomena can change the interface geometry in liquid–liq...
A simple model for the treatment of boundaries in molecular dynamics simulations is presented. The m...
A hybrid Molecular Dynamics/Fluctuating Hydrodynamics framework based on the analogy with two-phase ...
A nonequilibrium molecular dynamics algorithm is employed to study a fluid confined between two immo...
In this paper a new particle wall boundary condition to replace explicit solid walls in molecular dy...
In this paper a new particle wall boundary condition to replace explicit solid walls in molecular dy...
We develop a new class of accurate and efficient absorbing boundary conditions,named as matching bou...
In this paper a new particle wall boundary condition to replace explicit solid walls in molecular dy...
Thin film and nano-tube manufacturing, micro-channel cooling, and many other similar interesting tec...
Thin film and nano-tube manufacturing, micro-channel cooling, and many other similar interesting tec...