Mesoscale modelling of soft flowing crystals
arXiv:1807.05415 · doi:10.1098/rsta.2018.0149
Abstract
We outline the main ideas behind the numerical modelling of soft-flowing crystals, with special attention to their application to microfluidic devices for the design of novel mesoscale porous materials.
13 pages, 6 figures
References in corpus (2)
Cited by in corpus (12)
- Mesoscale modeling of near-contact interactions for complex flowing interfaces
- Towards Exascale Lattice Boltzmann computing
- Jetting to dripping transition: critical aspect ratio in step emulsifiers
- Modeling pattern formation in soft flowing crystals
- Lattice Boltzmann simulation of deformable fluid-filled bodies: progress and perspectives
- Lattice Boltzmann simulations capture the multiscale physics of soft flowing crystals
- Lightweight Lattice Boltzmann
- Wet to dry self-transitions in dense emulsions: from order to disorder and back
- Multiparticle collision dynamics for fluid interfaces with near-contact interactions
- Regularized Fluctuating Lattice Boltzmann Model
- Dynamic symmetry-breaking in mutually annihilating fluids with selective interfaces
- Microscale modelling of dielectrophoresis assembly processes