Lattice Boltzmann modelling of colloidal suspensions drying in porous media accounting for local nanoparticle effects
DOI10.1017/JFM.2023.344zbMath1527.76051OpenAlexW4377097105MaRDI QIDQ6043620
Qinjun Kang, Linlin Fei, Feifei Qin, Jianlin Zhao, Dominique Derome, Jan Carmeliet
Publication date: 23 May 2023
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/jfm.2023.344
evaporationnanoparticle transportdeposition configurationdouble-distribution lattice Boltzmann methodlocal drying rate reduction
Stefan problems, phase changes, etc. (80A22) Flows in porous media; filtration; seepage (76S05) Particle methods and lattice-gas methods (76M28) Suspensions (76T20) Liquid-gas two-phase flows, bubbly flows (76T10)
Related Items (2)
Cites Work
- Evaporation characteristics of fuel droplets with the addition of nanoparticles under natural and forced convections
- Evaporation-driven ring and film deposition from colloidal droplets
- A Mechanism for Non-Newtonian Flow in Suspensions of Rigid Spheres
- SIMULATIONS OF LIQUID BREAK UP WITH AN AXISYMMETRIC, MULTIPLE RELAXATION TIME, INDEX-FUNCTION LATTICE BOLTZMANN MODEL
- Study of non-isothermal liquid evaporation in synthetic micro-pore structures with hybrid lattice Boltzmann model
- Drying of salt solutions in porous materials: Intermediate-time dynamics and efflorescence
- Equations of state in a lattice Boltzmann model
- Lattice Boltzmann modelling of isothermal two-component evaporation in porous media
This page was built for publication: Lattice Boltzmann modelling of colloidal suspensions drying in porous media accounting for local nanoparticle effects