Numerical investigation of channel blockage by flowing microparticles
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Publication:1641306
DOI10.1016/j.compfluid.2014.01.018zbMath1391.76788OpenAlexW2042322554MaRDI QIDQ1641306
Patrice Bacchin, Eric Climent, Gbedo Constant Agbangla
Publication date: 19 June 2018
Published in: Computers and Fluids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.compfluid.2014.01.018
Cites Work
- Spectral distributed Lagrange multiplier method: algorithm and benchmark tests
- Incorporation of lubrication effects into the force-coupling method for particulate two-phase flow.
- Force-coupling method for particulate two-phase flow: Stokes flow.
- Simulation of concentrated suspensions using the force-coupling method
- Accelerated Stokesian Dynamics simulations
- Slow flow through a periodic array of spheres
- The effect of Brownian diffusion on shear-induced coagulation of colloidal dispersions
- Dynamics of bidisperse suspensions under Stokes flows: Linear shear flow and sedimentation
- Stokes flow through periodic arrays of spheres
- Modelling of porous media by renormalization of the Stokes equations
- A strong interaction theory for the creeping motion of a sphere between plane parallel boundaries. Part 2. Parallel motion
- Boundary Integral and Singularity Methods for Linearized Viscous Flow
- Plugging by hydrodynamic bridging during flow of stable colloidal particles within cylindrical pores
- Microstructure and velocity fluctuations in sheared suspensions
- Shear-induced dispersion in a dilute suspension of rough spheres
- Numerical simulations of random suspensions at finite Reynolds numbers
- Experimental verification of the force coupling method for particulate flows
- Localized force representations for particles sedimenting in Stokes flow
- Sedimentation in a dilute dispersion of spheres
- Hydrodynamic interactions of spherical particles in Poiseuille flow between two parallel walls