We present numerical simulations of post-Darcy flow in thin porous medium: one consisting of staggered arrangements of circular cylinders and one random distribution of cylinders bounded between walls. The simulations span a range of Reynolds numbers, 40 to 4000, where the pressure drop varies nonlinearly with the average velocity, covering nonlinear laminar flow to the fully turbulent regime. The results are compared to those obtained by replacing the bounding walls with symmetric boundaries with the aim to reveal the effect of bounding walls on microscopic characteristics and macroscopic measures, i.e., pressure drop, hydrodynamic dispersion and Reynolds stresses. We use large eddy simulation to directly calculate the Reynolds stresses an...
The aim of this work is to study the correction to Darcy's law for inertial flow in porous media. In...
This study investigates the critical agents that cause non-Darrian flow in porous media. Four porous...
International audienceWe study the non-turbulent pipe flow of a Newtonian fluid through a confined p...
We present numerical simulations of post-Darcy flow in thin porous medium: one consisting of stagger...
Effects of the bounding solid walls are examined numerically for slow flow overregular, square array...
Inlet and outlet pressure drop effects can contribute significantly to the total pressure drop in po...
Researchers using Darcy's law to model flow in porous media must satisfy the requirement for suffici...
Researchers using Darcy's law to model flow in porous media must satisfy the requirement for suffici...
Following the development of an immersed boundary method for the study of flow through porous media ...
This paper presents direct numerical simulations for the flow through regular porous media composed ...
Flow of non-Newtonian fluids through porous media at high Reynolds numbers is often encountered in c...
The ghost cell immersed boundary method coupled with a finite difference based Navier-Stokes solver ...
Many important natural processes involving flow through porous media are characterized by large filt...
Flow of non-Newtonian fluids through porous media at high Reynolds numbers is often encountered in c...
Flow of non-Newtonian fluids through porous media at high Reynolds numbers is often encountered in c...
The aim of this work is to study the correction to Darcy's law for inertial flow in porous media. In...
This study investigates the critical agents that cause non-Darrian flow in porous media. Four porous...
International audienceWe study the non-turbulent pipe flow of a Newtonian fluid through a confined p...
We present numerical simulations of post-Darcy flow in thin porous medium: one consisting of stagger...
Effects of the bounding solid walls are examined numerically for slow flow overregular, square array...
Inlet and outlet pressure drop effects can contribute significantly to the total pressure drop in po...
Researchers using Darcy's law to model flow in porous media must satisfy the requirement for suffici...
Researchers using Darcy's law to model flow in porous media must satisfy the requirement for suffici...
Following the development of an immersed boundary method for the study of flow through porous media ...
This paper presents direct numerical simulations for the flow through regular porous media composed ...
Flow of non-Newtonian fluids through porous media at high Reynolds numbers is often encountered in c...
The ghost cell immersed boundary method coupled with a finite difference based Navier-Stokes solver ...
Many important natural processes involving flow through porous media are characterized by large filt...
Flow of non-Newtonian fluids through porous media at high Reynolds numbers is often encountered in c...
Flow of non-Newtonian fluids through porous media at high Reynolds numbers is often encountered in c...
The aim of this work is to study the correction to Darcy's law for inertial flow in porous media. In...
This study investigates the critical agents that cause non-Darrian flow in porous media. Four porous...
International audienceWe study the non-turbulent pipe flow of a Newtonian fluid through a confined p...