AbstractNumerical simulations of vesicle suspensions are performed in two dimensions to study their dynamical and rheological properties. An hybrid method is adopted, which combines a mesoscopic approach for the solvent with a curvature-elasticity model for the membrane. Shear flow is induced by two counter-sliding parallel walls, which generate a linear flow profile. The flow behavior is studied for various vesicle concentrations and viscosity ratios between the internal and the external fluid. Both the intrinsic viscosity and the thickness of depletion layers near the walls are found to increase with increasing viscosity ratio
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The dynamical behavior of vesicles is investigated in simple shear flow. A simulation technique is p...
AbstractNumerical simulations of vesicle suspensions are performed in two dimensions to study their ...
Numerical simulations of vesicle suspensions are performed in two dimensions to study their dynamica...
We study the dynamics and rheology of a single two-dimensional vesicle embedded in a linear shear fl...
Widely regarded as an interesting model system for studying flow properties of blood, vesicles are c...
Abstract. We study the dynamics and rheology of a single two-dimensional vesicle embedded in a linea...
The dynamics and rheology of suspensions of fluid vesicles or red blood cells is investigated by a c...
International audienceA vesicle is a common model used to represent red blood cell (RBC) in silico a...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
International audienceThe behaviour of a vesicle suspension in a simple shear flow between plates (C...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The dynamical behavior of vesicles is investigated in simple shear flow. A simulation technique is p...
AbstractNumerical simulations of vesicle suspensions are performed in two dimensions to study their ...
Numerical simulations of vesicle suspensions are performed in two dimensions to study their dynamica...
We study the dynamics and rheology of a single two-dimensional vesicle embedded in a linear shear fl...
Widely regarded as an interesting model system for studying flow properties of blood, vesicles are c...
Abstract. We study the dynamics and rheology of a single two-dimensional vesicle embedded in a linea...
The dynamics and rheology of suspensions of fluid vesicles or red blood cells is investigated by a c...
International audienceA vesicle is a common model used to represent red blood cell (RBC) in silico a...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
International audienceThe behaviour of a vesicle suspension in a simple shear flow between plates (C...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The microscopic dynamics of objects suspended in a fluid determines the macroscopic rheology of a su...
The dynamical behavior of vesicles is investigated in simple shear flow. A simulation technique is p...