The viscosity and self-diffusion constant of particle-based mesoscale hydrodynamic methods, multiparticle collision dynamics (MPC), and dissipative particle dynamics, are investigated, both with and without angular-momentum conservation. Analytical results are derived for fluids with an ideal-gas equation of state and a finite-time-step dynamics, and compared with simulation data. In particular, the viscosity is derived in a general form for all variants of the MPC method. In general, very good agreement between theory and simulations is obtained
In the field of molecular simulations, the long standing aim has been to study mechanisms that canno...
The method of multi-particle collision dynamics (MPCD) and its different implementations are commonl...
The hydrodynamic transport properties of hard-sphere dispersions are calculated for volume fractions...
We determine the viscosity parameters of the multiparticle collision dynamics (MPC) approach, a part...
The viscosity and self-diffusion constant of a mesoscale hydrodynamic method, dissipative particle d...
Dissipative particle dynamics (DPD) and multi-particle collision (MPC) dynamics are powerful tools t...
We investigate the hydrodynamic properties of a fluid simulated with a mesoscopic solvent model. Two...
Mesoscale simulations of hydrodynamic media have attracted great interest during the last years in o...
Hydrodynamic interactions in complex fluids are investigated by the multi-particle-collision-dynamic...
The particle-based mesoscale simulation technique called Multi-Particle-Collision Dynamics (MPCD) (a...
Abstract. Several aspects of modeling dynamics at the mesoscale level are discussed: (1) The constru...
I introduce two mesoscale algorithms, lattice Boltzmann and stochastic rotation dynamics, and show h...
Hydrodynamic interactions in complex fluids are investigated by the multi-particle-collision-dynamic...
A new adaptive resolution technique for particle-based multi-level simulations of fluids is presente...
The emergent fluctuating hydrodynamics of the multiparticle collision dynamics (MPC) approach, a par...
In the field of molecular simulations, the long standing aim has been to study mechanisms that canno...
The method of multi-particle collision dynamics (MPCD) and its different implementations are commonl...
The hydrodynamic transport properties of hard-sphere dispersions are calculated for volume fractions...
We determine the viscosity parameters of the multiparticle collision dynamics (MPC) approach, a part...
The viscosity and self-diffusion constant of a mesoscale hydrodynamic method, dissipative particle d...
Dissipative particle dynamics (DPD) and multi-particle collision (MPC) dynamics are powerful tools t...
We investigate the hydrodynamic properties of a fluid simulated with a mesoscopic solvent model. Two...
Mesoscale simulations of hydrodynamic media have attracted great interest during the last years in o...
Hydrodynamic interactions in complex fluids are investigated by the multi-particle-collision-dynamic...
The particle-based mesoscale simulation technique called Multi-Particle-Collision Dynamics (MPCD) (a...
Abstract. Several aspects of modeling dynamics at the mesoscale level are discussed: (1) The constru...
I introduce two mesoscale algorithms, lattice Boltzmann and stochastic rotation dynamics, and show h...
Hydrodynamic interactions in complex fluids are investigated by the multi-particle-collision-dynamic...
A new adaptive resolution technique for particle-based multi-level simulations of fluids is presente...
The emergent fluctuating hydrodynamics of the multiparticle collision dynamics (MPC) approach, a par...
In the field of molecular simulations, the long standing aim has been to study mechanisms that canno...
The method of multi-particle collision dynamics (MPCD) and its different implementations are commonl...
The hydrodynamic transport properties of hard-sphere dispersions are calculated for volume fractions...