We present a high-fidelity simulation model for dense suspensions of spherical and non-spherical particles suspended in a Lattice–Boltzmann Method (LBM) based fluid. The non-spherical particles are composed of an arbitrary number of overlapping spheres of different sizes and arbitrary relative positions in the particle reference frame which stay fixed during the simulation. This approach allows to approximate a wide range of rigid particle shapes. Fluid Structure Interactions (FSI) are realized using a hybrid of immersed-boundary methods and bounce-back schemes, that employs coupling coefficients dependent upon particle overlap with the fluid lattice, resulting in smooth hydrodynamic interactions when particles move over the lattice. Numeri...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
We present results of direct numerical simulations of travelling waves in dense assemblies of monodi...
peer-reviewedThis thesis aims to understand, via lattice Boltzmann simulations, the rheological beh...
We present a lattice Boltzmann model designed for the simulation of dilute and dense finite-sized ri...
AbstractThe following paper presents a way to simulate the behavior of particle agglomerates in a fl...
Using a coupled lattice Boltzmann and discrete element method, we have developed a new tool for the ...
Three-dimensional direct numerical simulations of dense suspensions of monodisperse spherical partic...
This paper presents a serial computational framework that hydrodynamically couples the lattice Boltz...
International audienceNumerical simulations of dense suspensions with a high resolution of ...
A numerical method for particle-laden fluids interacting with a deformable solid domain and mobile r...
This paper details the development of a computational model which is capable of direct numerical sim...
This paper details the development of a computational model which is capable of direct numerical sim...
This paper details the development of a computational model which is capable of direct numerical sim...
We define a lattice Boltzmann model of solid, deformable suspensions immersed in a fluid itself desc...
This paper introduces improvements to the simulation of particle suspensions using the lattice Boltz...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
We present results of direct numerical simulations of travelling waves in dense assemblies of monodi...
peer-reviewedThis thesis aims to understand, via lattice Boltzmann simulations, the rheological beh...
We present a lattice Boltzmann model designed for the simulation of dilute and dense finite-sized ri...
AbstractThe following paper presents a way to simulate the behavior of particle agglomerates in a fl...
Using a coupled lattice Boltzmann and discrete element method, we have developed a new tool for the ...
Three-dimensional direct numerical simulations of dense suspensions of monodisperse spherical partic...
This paper presents a serial computational framework that hydrodynamically couples the lattice Boltz...
International audienceNumerical simulations of dense suspensions with a high resolution of ...
A numerical method for particle-laden fluids interacting with a deformable solid domain and mobile r...
This paper details the development of a computational model which is capable of direct numerical sim...
This paper details the development of a computational model which is capable of direct numerical sim...
This paper details the development of a computational model which is capable of direct numerical sim...
We define a lattice Boltzmann model of solid, deformable suspensions immersed in a fluid itself desc...
This paper introduces improvements to the simulation of particle suspensions using the lattice Boltz...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
We present results of direct numerical simulations of travelling waves in dense assemblies of monodi...
peer-reviewedThis thesis aims to understand, via lattice Boltzmann simulations, the rheological beh...