Dynamic rheology of a dilute suspension of elastic capsules: effect of capsule tank-treading, swinging and tumbling
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Publication:3097723
DOI10.1017/S0022112010005161zbMath1225.76287OpenAlexW2077683984MaRDI QIDQ3097723
R. Murthy Kalluri, Prosenjit Bagchi
Publication date: 10 November 2011
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/s0022112010005161
Suspensions (76T20) Foundations, constitutive equations, rheology, hydrodynamical models of non-fluid phenomena (76A99)
Related Items (9)
Boundary integral method for the flow of vesicles with viscosity contrast in three dimensions ⋮ Rheology of vesicle suspensions under combined steady and oscillating shear flows ⋮ Dynamics of a nonspherical capsule in general flow ⋮ An unstructured solver for simulations of deformable particles in flows at arbitrary Reynolds numbers ⋮ Suspensions of viscoelastic capsules: effect of membrane viscosity on transient dynamics ⋮ Dynamics and rheology of elastic particles in an extensional flow ⋮ Validation of an immersed thick boundary method for simulating fluid-structure interactions of deformable membranes ⋮ Rheology of a dense suspension of spherical capsules under simple shear flow ⋮ Structure and rheology of suspensions of spherical strain-hardening capsules
Cites Work
- Rheology and dynamics of vesicle suspension in comparison with droplet emulsion
- A front-tracking method for viscous, incompressible multi-fluid flows
- Numerical analysis of blood flow in the heart
- Hydrodynamic interaction between two identical capsules in simple shear flow
- Swinging and tumbling of elastic capsules in shear flow
- Rheology of a dilute two-dimensional suspension of vesicles
- Motion of a tank-treading ellipsoidal particle in a shear flow
- Deformation of liquid capsules enclosed by elastic membranes in simple shear flow: large deformations and the effect of fluid viscosities
- Dynamic motion of red blood cells in simple shear flow
- The stress system in a suspension of force-free particles
- A front-tracking method for the computations of multiphase flow.
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