The Multiparticle Collision Dynamics technique (MPC) for hydrodynamics simulations is generalized to binary-fluid mixtures and multiphase flows, by coupling the particle-based fluid dynamics to a Ginzburg-Landau free-energy functional for phase-separating binary fluids. To describe fluids with a non-ideal equation of state, an additional density-dependent term is introduced. The new approach is verified by applying it to thermodynamics near the critical demixing point, and interface fluctuations of droplets. The interfacial tension obtained from the analysis of the capillary-wave spectrum agrees well with the results based on the Laplace-Young equation. Phase separation dynamics follows the Lifshitz-Slyozov law
The hydrodynamic equations of a phase-separating fluid mixture are derived from the underlying micro...
The particle-based mesoscale simulation technique called Multi-Particle-Collision Dynamics (MPCD) (a...
We review the phase field (otherwise called diffuse interface) model for fluid flows, where all quan...
The Multiparticle Collision Dynamics technique (MPC) for hydrodynamics simulations is generalized to...
A recently introduced particle-based model for fluid dynamics with continuous velocities is general...
We present a multiparticle collision dynamics (MPC) implementation of layered immiscible fluids A an...
We present an extension of the multiparticle collision dynamics method for flows with complex interf...
A new adaptive resolution technique for particle-based multi-level simulations of fluids is presente...
Dissipative particle dynamics (DPD) and multi-particle collision (MPC) dynamics are powerful tools t...
The method of multi-particle collision dynamics (MPCD) and its different implementations are commonl...
We present a multiparticle collision dynamics (MPC) implementation of layered immiscible fluids A an...
Dissipative particle dynamics (DPD) is an emerging mesoscopic computational method in which the inte...
We determine the viscosity parameters of the multiparticle collision dynamics (MPC) approach, a part...
In order to better understand and model the phase segregation of binary fluids we opted for a mesosc...
The emergent fluctuating hydrodynamics of the multiparticle collision dynamics (MPC) approach, a par...
The hydrodynamic equations of a phase-separating fluid mixture are derived from the underlying micro...
The particle-based mesoscale simulation technique called Multi-Particle-Collision Dynamics (MPCD) (a...
We review the phase field (otherwise called diffuse interface) model for fluid flows, where all quan...
The Multiparticle Collision Dynamics technique (MPC) for hydrodynamics simulations is generalized to...
A recently introduced particle-based model for fluid dynamics with continuous velocities is general...
We present a multiparticle collision dynamics (MPC) implementation of layered immiscible fluids A an...
We present an extension of the multiparticle collision dynamics method for flows with complex interf...
A new adaptive resolution technique for particle-based multi-level simulations of fluids is presente...
Dissipative particle dynamics (DPD) and multi-particle collision (MPC) dynamics are powerful tools t...
The method of multi-particle collision dynamics (MPCD) and its different implementations are commonl...
We present a multiparticle collision dynamics (MPC) implementation of layered immiscible fluids A an...
Dissipative particle dynamics (DPD) is an emerging mesoscopic computational method in which the inte...
We determine the viscosity parameters of the multiparticle collision dynamics (MPC) approach, a part...
In order to better understand and model the phase segregation of binary fluids we opted for a mesosc...
The emergent fluctuating hydrodynamics of the multiparticle collision dynamics (MPC) approach, a par...
The hydrodynamic equations of a phase-separating fluid mixture are derived from the underlying micro...
The particle-based mesoscale simulation technique called Multi-Particle-Collision Dynamics (MPCD) (a...
We review the phase field (otherwise called diffuse interface) model for fluid flows, where all quan...