International audienceThis work proposes a micro-mechanical model describing the interactions of a test particle immersed in a semi-concentrated suspension of rigid rods. For that purpose, after revisiting the main elements related to suspensions exhibiting second-order velocity gradient effects, a micro-mechanical model is proposed that allows us to define a sort of interaction field giving the force acting on a test particle due to the rod kinematics at any point of the flow domain. Finally, a macroscopic description is derived that only involves the second-order orientation tensor and its spatial gradient. The model presented in this work shows that migration in fibre suspensions depends on the fibre concentration and orientation distrib...
Simulations of flows containing non-spherical particles (fibres or ellipsoids) rely on the knowledge...
We address the extension of Jeffery’s model, governing the orientation of rods immersed in a Newtoni...
Particle migration is a relevant transport mechanism whenever suspensions flow in channels with gap ...
International audienceThis work proposes a micro-mechanical model describing the interactions of a t...
Suspensions involving nanoparticles are widely used in the develop- ment of engineered materials. Th...
ABSTRACT Shear-induced migration of particles is studied during the slow flow of suspensions of sphe...
International audienceRecently, Férec et al. (2009a) proposed a model for nondilute rod-like suspens...
Shear-induced migration of particles is studied during the slow flow of suspensions of spheres (part...
An expression for the divergence of the stress tensor is derived for inhomogeneous suspensions of ve...
A two-velocity biphasic model is presented to describe particle migration in mono-disperse suspensio...
Suspensions of fibres and non-spherical particles are encountered in many fields ranging from engine...
A model for the particle migration in a bidisperse flowing suspension is proposed and compared to ex...
We review existing mixture models for shear-induced migration (SIM) in flowing viscous, concentrated...
The properties of reinforced polymers strongly depend on the microstructural state, that is, the ori...
The mixture, or suspension balance, model is the most frequently used to describe shear-induced par...
Simulations of flows containing non-spherical particles (fibres or ellipsoids) rely on the knowledge...
We address the extension of Jeffery’s model, governing the orientation of rods immersed in a Newtoni...
Particle migration is a relevant transport mechanism whenever suspensions flow in channels with gap ...
International audienceThis work proposes a micro-mechanical model describing the interactions of a t...
Suspensions involving nanoparticles are widely used in the develop- ment of engineered materials. Th...
ABSTRACT Shear-induced migration of particles is studied during the slow flow of suspensions of sphe...
International audienceRecently, Férec et al. (2009a) proposed a model for nondilute rod-like suspens...
Shear-induced migration of particles is studied during the slow flow of suspensions of spheres (part...
An expression for the divergence of the stress tensor is derived for inhomogeneous suspensions of ve...
A two-velocity biphasic model is presented to describe particle migration in mono-disperse suspensio...
Suspensions of fibres and non-spherical particles are encountered in many fields ranging from engine...
A model for the particle migration in a bidisperse flowing suspension is proposed and compared to ex...
We review existing mixture models for shear-induced migration (SIM) in flowing viscous, concentrated...
The properties of reinforced polymers strongly depend on the microstructural state, that is, the ori...
The mixture, or suspension balance, model is the most frequently used to describe shear-induced par...
Simulations of flows containing non-spherical particles (fibres or ellipsoids) rely on the knowledge...
We address the extension of Jeffery’s model, governing the orientation of rods immersed in a Newtoni...
Particle migration is a relevant transport mechanism whenever suspensions flow in channels with gap ...