Spinodal decomposition of off-critical quenches with a viscous phase using dissipative particle dynamics in two and three spatial dimensions
arXiv:cond-mat/9911344 · doi:10.1103/PhysRevE.61.435
Abstract
We investigate the domain growth and phase separation of hydrodynamically-correct binary immiscible fluids of differing viscosity as a function of minority phase concentration in both two and three spatial dimensions using dissipative particle dynamics. We also examine the behavior of equal-viscosity fluids and compare our results to similar lattice-gas simulations in two dimensions.
34 pages (11 figures); accepted for publication in Phys. Rev. E
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Cited by in corpus (10)
- Perspective: Dissipative Particle Dynamics
- A continuum theory of phase separation kinetics for active Brownian particles
- Vapour-liquid coexistence in many-body dissipative particle dynamics
- Hydrodynamic bubble coarsening in off-critical vapour-liquid phase separation
- Three-dimensional lattice-Boltzmann simulations of critical spinodal decomposition in binary immiscible fluids
- Fragmentation and Limits to Dynamical Scaling in Viscous Coarsening: An Interrupted in situ X-Ray Tomographic Study
- Phase ordering of two-dimensional symmetric binary fluids: a droplet scaling state
- Three dimensional hydrodynamic lattice-gas simulations of domain growth and self-assembly in binary immiscible and ternary amphiphilic fluids
- Dynamical geometry for multiscale dissipative particle dynamics
- Hydrodynamic relaxations in dissipative particle dynamics