The cohesive solids in liquid flows are featured by the dynamic growth and breakage of agglomerates, and the difficulties in the development, design and optimization of these systems are related to this significant feature. In this paper, discrete particle method is used to simulate a solid-liquid flow system including millions of cohesive particles, the growth rate and breakage rate of agglomerates are then systematically investigated. It was found that the most probable size of the agglomerates is determined by the balance of growth and breakage of the agglomerates the cross point of the lines of growth rate and breakage rate as a function of the particle numbers in an agglomerate, marks the most stable agglomerate size. The finding here ...
International audienceWe use particle dynamics simulations to investigate the evolution of a wet agg...
The discrete element method is used to investigate adhesive particle mixing in a system that include...
Granular flows in the chemical industry often have problems because the observed particle-phase phen...
The cohesive solids in liquid flows are featured by the dynamic growth and breakage of agglomerates,...
To estimate the size of agglomerates formed in fluidized beds of cohesive particles, a model of forc...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
A comprehensive physical model describing the agglomeration behavior present during fluidization of ...
Particle agglomeration is observed in slurry loop reactors due to the presence of cohesive force bet...
Nanoparticles form multi-stage agglomerates when they are fluidized: simple agglomerates (a few doze...
Wet agglomeration processes have predominantly been investigated by changing operation variables of ...
The final product quality of crystallization and precipitation processes is often determined by the ...
Agglomeration occurs in fluidized beds in many industrial processes. It can be a desirable phenomeno...
The final product quality of crystallization and precipitation processes is often determined by the ...
In this work, a combined smoothed particle hydrodynamics and discrete element method (SPH-DEM) model...
We have developed and applied an Eulerian-Lagrangian model for the transport, formation, break-up, d...
International audienceWe use particle dynamics simulations to investigate the evolution of a wet agg...
The discrete element method is used to investigate adhesive particle mixing in a system that include...
Granular flows in the chemical industry often have problems because the observed particle-phase phen...
The cohesive solids in liquid flows are featured by the dynamic growth and breakage of agglomerates,...
To estimate the size of agglomerates formed in fluidized beds of cohesive particles, a model of forc...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
A comprehensive physical model describing the agglomeration behavior present during fluidization of ...
Particle agglomeration is observed in slurry loop reactors due to the presence of cohesive force bet...
Nanoparticles form multi-stage agglomerates when they are fluidized: simple agglomerates (a few doze...
Wet agglomeration processes have predominantly been investigated by changing operation variables of ...
The final product quality of crystallization and precipitation processes is often determined by the ...
Agglomeration occurs in fluidized beds in many industrial processes. It can be a desirable phenomeno...
The final product quality of crystallization and precipitation processes is often determined by the ...
In this work, a combined smoothed particle hydrodynamics and discrete element method (SPH-DEM) model...
We have developed and applied an Eulerian-Lagrangian model for the transport, formation, break-up, d...
International audienceWe use particle dynamics simulations to investigate the evolution of a wet agg...
The discrete element method is used to investigate adhesive particle mixing in a system that include...
Granular flows in the chemical industry often have problems because the observed particle-phase phen...