International audienceNumerical simulations are performed for transport and deposition of particles over a fixed obstacle in a fluid flow. The effect of particle size and Stokes number on the particle capture efficiency is investigated using two methods. The first one is one-way coupling combining Lattice Boltzmann (LB) method with Lagrangian point-like approach. The second one is two-way coupling based on the coupling between Lattice Boltzmann method and discrete element (DE) method, which consider the particle influence on the fluid. Then the single fiber collection efficiency characterized by Stokes number (St) are simulated by LB-DE methods. Results show that two-way coupling method is more appropriate in our case for particles larger t...
A personal computer program, FiFi, that makes a real-time two-dimensional simulation of the dynamic ...
We report on the development of a method to simulate from first principles the particle filtration e...
International audienceA two-dimensional mathematical model of the initial stage of depth filtration ...
International audienceNumerical simulations are performed for transport and deposition of particles ...
International audienceThe transport and deposition of particles over a fixed obstacle set in a fluid...
International audienceIn this work, a coupled lattice Boltzmann method (LBM) and discrete element me...
The objective of the present research was to numerically investigate the transport and deposition of...
Methods from stochastic geometry allow to construct models which are very good representations of th...
We have used commercially available fluid dynamics codes based on Navier-Stokes theory and the Lange...
A unique trajectory mapping approach to predicting particle capture in fibrous filters is presented ...
This work is a continuation of our recently published study (Rao and Faghri (1988). Aerosol Sci. Tec...
A simulation model for electret filter made of split type fibers has been developed to study the fil...
Diesel exhaust has a particle size less than 10 µm; for the visualisation of micron-particles’ motio...
ABSTRACT Aerosol filtration by fibrous filters is one of the most common methods of separating and r...
Discrete modeling of particle-fluid interaction was of great importance for its wide applications in...
A personal computer program, FiFi, that makes a real-time two-dimensional simulation of the dynamic ...
We report on the development of a method to simulate from first principles the particle filtration e...
International audienceA two-dimensional mathematical model of the initial stage of depth filtration ...
International audienceNumerical simulations are performed for transport and deposition of particles ...
International audienceThe transport and deposition of particles over a fixed obstacle set in a fluid...
International audienceIn this work, a coupled lattice Boltzmann method (LBM) and discrete element me...
The objective of the present research was to numerically investigate the transport and deposition of...
Methods from stochastic geometry allow to construct models which are very good representations of th...
We have used commercially available fluid dynamics codes based on Navier-Stokes theory and the Lange...
A unique trajectory mapping approach to predicting particle capture in fibrous filters is presented ...
This work is a continuation of our recently published study (Rao and Faghri (1988). Aerosol Sci. Tec...
A simulation model for electret filter made of split type fibers has been developed to study the fil...
Diesel exhaust has a particle size less than 10 µm; for the visualisation of micron-particles’ motio...
ABSTRACT Aerosol filtration by fibrous filters is one of the most common methods of separating and r...
Discrete modeling of particle-fluid interaction was of great importance for its wide applications in...
A personal computer program, FiFi, that makes a real-time two-dimensional simulation of the dynamic ...
We report on the development of a method to simulate from first principles the particle filtration e...
International audienceA two-dimensional mathematical model of the initial stage of depth filtration ...