In this paper, we present a new method for simulating the motion of a disperse particle phase in a carrier gas through porous media. We assume a sufficiently dilute particle-laden flow and compute, independently of the disperse phase, the steady laminar fluid velocity using the immersed boundary method. Given the velocity of the carrier gas, the equations of motion for the particles experiencing the Stokes drag force are solved to determine their trajectories. The no-slip consistent' particle tracking algorithm avoids possible numerical filtration of very small particles due to the nonzero velocity field at the solid-fluid interface introduced by the immersed boundary method. This physically consistent tracking allows a reliable estimation ...
A new attempt is made to study the mechanisms of particle invasions into porous media. The following...
Flow of suspensions in porous media with particle capture and detachment under alternate flow rates ...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
In this paper, we present a new method for simulating the motion of a disperse particle phase in a c...
We present a new numerical approach for estimating filtration through porous media from first princi...
A new numerical approach is presented for simulating the movement of test particles suspended in an ...
We report on the development of a method to simulate from first principles the particle filtration e...
In this thesis, a computational model was developed for the simulation of aerosol formation through ...
We simulate flows involving porous media and homogenous fluid using a single-domain finite-differenc...
In this paper we demonstrate the ability of a volume-penalizing immersed boundary method to predict ...
Filtration in general, and the dead end depth filtration of solid particles out of fluid in particul...
A computational platform for direct numerical simulation of fluid-particle two-phase flow in porous ...
A numerical investigation on the soot laden flow of gas in a partial diesel particulate filter (PDPF...
The results of studying a dispersed airflow around a single porous cylinder are presented. The flow ...
In the present paper we uncover through numerical simulation the velocity and pressure fields inside...
A new attempt is made to study the mechanisms of particle invasions into porous media. The following...
Flow of suspensions in porous media with particle capture and detachment under alternate flow rates ...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
In this paper, we present a new method for simulating the motion of a disperse particle phase in a c...
We present a new numerical approach for estimating filtration through porous media from first princi...
A new numerical approach is presented for simulating the movement of test particles suspended in an ...
We report on the development of a method to simulate from first principles the particle filtration e...
In this thesis, a computational model was developed for the simulation of aerosol formation through ...
We simulate flows involving porous media and homogenous fluid using a single-domain finite-differenc...
In this paper we demonstrate the ability of a volume-penalizing immersed boundary method to predict ...
Filtration in general, and the dead end depth filtration of solid particles out of fluid in particul...
A computational platform for direct numerical simulation of fluid-particle two-phase flow in porous ...
A numerical investigation on the soot laden flow of gas in a partial diesel particulate filter (PDPF...
The results of studying a dispersed airflow around a single porous cylinder are presented. The flow ...
In the present paper we uncover through numerical simulation the velocity and pressure fields inside...
A new attempt is made to study the mechanisms of particle invasions into porous media. The following...
Flow of suspensions in porous media with particle capture and detachment under alternate flow rates ...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...