We investigate experimentally the pattern formation process during injection of air in a noncohesive granular material confined in a linear Hele-Shaw cell. We characterize the features and dynamics of this pattern formation on the basis of fast image analysis and sensitive pressure measurements. Behaviors are classified using two parameters-injection pressure and plate opening-and four hydrodynamic regimes are defined. For some regions of the parameter space, flows of air and grains are shown to be strongly coupled and instable, and lead to channelization within the granular material with obvious large-scale permeability variations. © 2008 The American Physical Society
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
International audienceWe investigate experimentally the pattern formation process during injection o...
We investigate the dynamics of granular materials confined in a radial Hele-Shaw cell, during centra...
We investigate the dynamics of granular materials confined in a radial Hele-Shaw cell, during centra...
International audienceA transition in hydraulically induced granular displacement patterns is studie...
We perform experiments where air is injected at a constant overpressure Pin , ranging from 5 to 250 ...
A transition in hydraulically induced granular displacement patterns is studied by means of discrete...
International audienceWe perform experiments where air is injected at a constant overpressure $P_{in...
International audienceBy means of digital image correlation, we experimentally characterize the defo...
In this Letter we report spontaneous pattern formation in dense granular assemblies confined to a He...
By means of digital image correlation, we experimentally characterize the deformation of a dry granu...
We introduce a modification to Hele-Shaw flows consisting of a rotating cell. A viscous fluid (oil) ...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
International audienceWe investigate experimentally the pattern formation process during injection o...
We investigate the dynamics of granular materials confined in a radial Hele-Shaw cell, during centra...
We investigate the dynamics of granular materials confined in a radial Hele-Shaw cell, during centra...
International audienceA transition in hydraulically induced granular displacement patterns is studie...
We perform experiments where air is injected at a constant overpressure Pin , ranging from 5 to 250 ...
A transition in hydraulically induced granular displacement patterns is studied by means of discrete...
International audienceWe perform experiments where air is injected at a constant overpressure $P_{in...
International audienceBy means of digital image correlation, we experimentally characterize the defo...
In this Letter we report spontaneous pattern formation in dense granular assemblies confined to a He...
By means of digital image correlation, we experimentally characterize the deformation of a dry granu...
We introduce a modification to Hele-Shaw flows consisting of a rotating cell. A viscous fluid (oil) ...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...
We have studied experimentally the dynamics of bubbles rising in complex fluids, from polymer soluti...