The present work investigates the effect of both surface roughness and particle morphology on the retention behaviour of granular materials. To study this, X-ray micro-computed tomography tests were performed on two types of spherical glass beads (i.e. smooth and rough) and two different sands (i.e. natural and roughened). Each sample was subjected to either drainage or soaking paths consisting in a multiphase ‘static’ flow of potassium iodine (KI) brine (wetting phase) and dry air (non-wetting phase). Tomograms were taken at different saturation states ranging from fully brine saturated to air dry conditions
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Dry sand turns into a stiff and moldable material as soon as it is mixed with some liquid. This is a...
The present work investigates the effect of both surface roughness and particle morphology on the re...
The present work investigates the effect of both surface roughness and particle morphology on the re...
The present work investigates the effect of both surface roughness and particle morphology on the re...
Micro computed tomography is a powerful tool for the inspection of porous media since it essentially...
A comprehensive understanding of the combined effects of surface roughness and wettability on the dy...
International audienceThe behavior of model granular materials (glass beads) wetted by a small quant...
This paper reports progress in the 3D pore-scale micro-CT imaging of multiple fluid phases during dr...
In this paper, porous sintered glass bead packings are studied, using X-ray Computed Tomography (XRC...
We describe an approach for exploring microscopic properties of granular media that couples x-ray mi...
With continuing evolution of imaging techniques from medical applications and materials science, non...
Fluid invasion, displacement of one fluid by another in porous media, is important in a large number...
This paper studies the effect of interfacial areas (air-water interfaces and solid-water interfaces)...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Dry sand turns into a stiff and moldable material as soon as it is mixed with some liquid. This is a...
The present work investigates the effect of both surface roughness and particle morphology on the re...
The present work investigates the effect of both surface roughness and particle morphology on the re...
The present work investigates the effect of both surface roughness and particle morphology on the re...
Micro computed tomography is a powerful tool for the inspection of porous media since it essentially...
A comprehensive understanding of the combined effects of surface roughness and wettability on the dy...
International audienceThe behavior of model granular materials (glass beads) wetted by a small quant...
This paper reports progress in the 3D pore-scale micro-CT imaging of multiple fluid phases during dr...
In this paper, porous sintered glass bead packings are studied, using X-ray Computed Tomography (XRC...
We describe an approach for exploring microscopic properties of granular media that couples x-ray mi...
With continuing evolution of imaging techniques from medical applications and materials science, non...
Fluid invasion, displacement of one fluid by another in porous media, is important in a large number...
This paper studies the effect of interfacial areas (air-water interfaces and solid-water interfaces)...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Dry sand turns into a stiff and moldable material as soon as it is mixed with some liquid. This is a...