The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a suspension. For example, as shown by Danker and Misbah [Phys. Rev. Lett., 2007, 98, 088104], the viscosity of a dilute suspension of fluid-filled vesicles is a non-monotonic function of the viscosity contrast (the ratio between the viscosities of the internal encapsulated and the external suspending fluids) and exhibits a minimum at the critical point of the tank-treading-to-tumbling transition. By performing numerical simulations, we recover this effect and demonstrate that it persists for a wide range of vesicle parameters such as the concentration, membrane deformability, or swelling degree. We also explain why other numerical and experiment...
We studied the dynamics of isolated vesicles as well as vesicle interactions in semi-dilute vesicle ...
We provide a rigorous derivation of an effective rheology for dilute viscous suspensions of self-pro...
We present a numerical approach to simulate the dynamics of viscous vesicles (their internal and ext...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
We study the dynamics and rheology of a single two-dimensional vesicle embedded in a linear shear fl...
AbstractWe report on the rheology of dilute suspensions of red blood cells (RBC) and vesicles. The v...
AbstractNumerical simulations of vesicle suspensions are performed in two dimensions to study their ...
International audienceWe report on the rheology of dilute suspensions of red blood cells (RBC) and v...
International audienceThe behaviour of a vesicle suspension in a simple shear flow between plates (C...
Despite its significance in microfluidics, the effect of confinement on the transition from the tank...
Widely regarded as an interesting model system for studying flow properties of blood, vesicles are c...
The dynamics and the rheology of a suspension of vesicles (a model for red blood cells) in the limit...
We develop a small--deformation theory for the dynamics of a quasi--spherical vesicle in viscous flo...
A theoretical investigation is presented for a linear viscoelastic flow induced by an oscillatory co...
A microrheological model is proposed to estimate the steady state shear viscosity of concentrated su...
We studied the dynamics of isolated vesicles as well as vesicle interactions in semi-dilute vesicle ...
We provide a rigorous derivation of an effective rheology for dilute viscous suspensions of self-pro...
We present a numerical approach to simulate the dynamics of viscous vesicles (their internal and ext...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
We study the dynamics and rheology of a single two-dimensional vesicle embedded in a linear shear fl...
AbstractWe report on the rheology of dilute suspensions of red blood cells (RBC) and vesicles. The v...
AbstractNumerical simulations of vesicle suspensions are performed in two dimensions to study their ...
International audienceWe report on the rheology of dilute suspensions of red blood cells (RBC) and v...
International audienceThe behaviour of a vesicle suspension in a simple shear flow between plates (C...
Despite its significance in microfluidics, the effect of confinement on the transition from the tank...
Widely regarded as an interesting model system for studying flow properties of blood, vesicles are c...
The dynamics and the rheology of a suspension of vesicles (a model for red blood cells) in the limit...
We develop a small--deformation theory for the dynamics of a quasi--spherical vesicle in viscous flo...
A theoretical investigation is presented for a linear viscoelastic flow induced by an oscillatory co...
A microrheological model is proposed to estimate the steady state shear viscosity of concentrated su...
We studied the dynamics of isolated vesicles as well as vesicle interactions in semi-dilute vesicle ...
We provide a rigorous derivation of an effective rheology for dilute viscous suspensions of self-pro...
We present a numerical approach to simulate the dynamics of viscous vesicles (their internal and ext...