We present a new numerical approach for estimating filtration through porous media from first principles. We numerically simulate particle motion as arises in a carrier gas flow. The filtration we look at occurs due to impaction of particles with obstructing surfaces that are contained in the solid filter. We consider the case when the motion of particles is governed by linear Stokes-drag, which is characterized by the particle relaxation time. The gas-particle interaction is modeled by using the Eulerian-Lagrangian approach and one-way coupling of the phases. In this case the carrier flow drags along the particles, without being affected by the motion of the particles. The gas flow is governed by Navier-Stokes equations for incompressible ...
Membrane fouling during particle filtration occurs through a variety of mechanisms, including intern...
Precise simulations of particulate flow through fibrous filters are essential in order to predict and e...
On the micro-scale, the detailed geometry of filter media can be considered. With such high resoluti...
We present a new numerical approach for estimating filtration through porous media from first princi...
We report on the development of a method to simulate from first principles the particle filtration e...
In this paper, we present a new method for simulating the motion of a disperse particle phase in a c...
In this thesis, a computational model was developed for the simulation of aerosol formation through ...
A new numerical approach is presented for simulating the movement of test particles suspended in an ...
Filtration in general, and the dead end depth filtration of solid particles out of fluid in particul...
Filtration of particulate-laden airstreams is an important industrial process, undertaken for a comb...
We simulate flows involving porous media and homogenous fluid using a single-domain finite-differenc...
Transient filtration of fine particles from an air stream is studied analytically. Transport of part...
A numerical investigation on the soot laden flow of gas in a partial diesel particulate filter (PDPF...
To achieve a better understanding of the bridging mechanism at the static surface filtration, simula...
Currently, the known simulation efforts with respect to fluid-structure interaction (FSI) are mainly...
Membrane fouling during particle filtration occurs through a variety of mechanisms, including intern...
Precise simulations of particulate flow through fibrous filters are essential in order to predict and e...
On the micro-scale, the detailed geometry of filter media can be considered. With such high resoluti...
We present a new numerical approach for estimating filtration through porous media from first princi...
We report on the development of a method to simulate from first principles the particle filtration e...
In this paper, we present a new method for simulating the motion of a disperse particle phase in a c...
In this thesis, a computational model was developed for the simulation of aerosol formation through ...
A new numerical approach is presented for simulating the movement of test particles suspended in an ...
Filtration in general, and the dead end depth filtration of solid particles out of fluid in particul...
Filtration of particulate-laden airstreams is an important industrial process, undertaken for a comb...
We simulate flows involving porous media and homogenous fluid using a single-domain finite-differenc...
Transient filtration of fine particles from an air stream is studied analytically. Transport of part...
A numerical investigation on the soot laden flow of gas in a partial diesel particulate filter (PDPF...
To achieve a better understanding of the bridging mechanism at the static surface filtration, simula...
Currently, the known simulation efforts with respect to fluid-structure interaction (FSI) are mainly...
Membrane fouling during particle filtration occurs through a variety of mechanisms, including intern...
Precise simulations of particulate flow through fibrous filters are essential in order to predict and e...
On the micro-scale, the detailed geometry of filter media can be considered. With such high resoluti...