International audienceWe investigate the transient dynamics of a sheared suspension of neutrally buoyant particles under pressure-imposed conditions, subject to a sudden change in shear rate or external pressure. Discrete Element Method simulations show that, depending on the flow parameters (particle and system size, initial volume fraction), the early stress response of the suspension may strongly differ from the prediction of the Suspension Balance Model based on the steady-state rheology. We show that a two-phase model incorporating the Reynolds-like dilatancy law of Pailha & Pouliquen (2009), which prescribes the dilation rate of the suspension over a strain scale γ 0 , quantitatively captures the suspension dilation/compaction over th...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
Flows of non-Brownian suspensions are present in different fields, and exhibitdifferent behavior in ...
The rheology of dense suspensions in the viscous regime can be characterized by the viscous number J...
International audienceWe investigate the transient dynamics of a sheared suspension of neutrally buo...
We investigate the transient dynamics of a sheared suspension of neutrally buoyant particles under p...
Granular materials whether dry or immersed in fluid show dilation or compaction depending upon the i...
In the first part of this talk we present a rheology law for granular suspensions based on the repre...
Dense suspensions of noncolloidal particles exhibit novel features. In a non-homogeneous shear flow,...
International audienceShear thickening in dense particulate suspensions was recently proposed to be ...
We study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
We have examined the transient stress response under shear flow of concentrated suspensions of non-B...
In this paper we report on a computational study for the plane Poiseuille flow of a dense non-colloi...
We investigate in detail the problem of confined pressure-driven laminar flow of neutrally buoyant n...
The mixture, or suspension balance, model is the most frequently used to describe shear-induced par...
Flowing granular materials often abruptly arrest if not driven by sufficient applied stresses. Such ...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
Flows of non-Brownian suspensions are present in different fields, and exhibitdifferent behavior in ...
The rheology of dense suspensions in the viscous regime can be characterized by the viscous number J...
International audienceWe investigate the transient dynamics of a sheared suspension of neutrally buo...
We investigate the transient dynamics of a sheared suspension of neutrally buoyant particles under p...
Granular materials whether dry or immersed in fluid show dilation or compaction depending upon the i...
In the first part of this talk we present a rheology law for granular suspensions based on the repre...
Dense suspensions of noncolloidal particles exhibit novel features. In a non-homogeneous shear flow,...
International audienceShear thickening in dense particulate suspensions was recently proposed to be ...
We study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
We have examined the transient stress response under shear flow of concentrated suspensions of non-B...
In this paper we report on a computational study for the plane Poiseuille flow of a dense non-colloi...
We investigate in detail the problem of confined pressure-driven laminar flow of neutrally buoyant n...
The mixture, or suspension balance, model is the most frequently used to describe shear-induced par...
Flowing granular materials often abruptly arrest if not driven by sufficient applied stresses. Such ...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
Flows of non-Brownian suspensions are present in different fields, and exhibitdifferent behavior in ...
The rheology of dense suspensions in the viscous regime can be characterized by the viscous number J...