Fluid Vesicles in Flow
arXiv:1311.7341 · doi:10.1016/j.cis.2014.02.004
Abstract
We review the dynamical behavior of giant fluid vesicles in various types of external hydrodynamic flow. The interplay between stresses arising from membrane elasticity, hydrodynamic flows, and the ever present thermal fluctuations leads to a rich phenomenology. In linear flows with both rotational and elongational components, the properties of the tank-treading and tumbling motions are now well described by theoretical and numerical models. At the transition between these two regimes, strong shape deformations and amplification of thermal fluctuations generate a new regime called trembling. In this regime, the vesicle orientation oscillates quasi-periodically around the flow direction while asymmetric deformations occur. For strong enough flows, small-wavelength deformations like wrinkles are observed, similar to what happens in a suddenly reversed elongational flow. In steady elongational flow, vesicles with large excess areas deform into dumbbells at large flow rates and pearling occurs for even stronger flows. In capillary flows with parabolic flow profile, single vesicles migrate towards the center of the channel, where they adopt symmetric shapes, for two reasons. First, walls exert a hydrodynamic lift force which pushes them away. Second, shear stresses are minimal at the tip of the flow. However, symmetry is broken for vesicles with large excess areas, which flow off-center and deform asymmetrically. In suspensions, hydrodynamic interactions between vesicles add up to these two effects, making it challenging to deduce rheological properties from the dynamics of individual vesicles. Further investigations of vesicles and similar objects and their suspensions in steady or time-dependent flow will shed light on phenomena such as blood flow.
13 pages, 13 figures. Adv. Colloid Interface Sci., 2014
References in corpus (19)
- Swinging of red blood cells under shear flow
- Mechanism of margination in confined flows of blood and other multicomponent suspensions
- Non-inertial lateral migration of vesicles in bounded Poiseuille flow
- Dynamics of a viscous vesicle in linear flows
- Dynamics of nearly spherical vesicles in an external flow
- Swinging and tumbling of elastic capsules in shear flow
- Membrane Viscosity Determined from Shear-Driven Flow in Giant Vesicles
- Dynamics and rheology of a dilute suspension of vesicles: higher order theory
- Shape diagram of vesicles in Poiseuille flow
- Hydrodynamic lift of vesicles under shear flow in microgravity
- How does confinement affect the dynamics of viscous vesicles and red blood cells?
- Wrinkling of microcapsules in shear flow
- Two-Dimensional Fluctuating Vesicles in Linear Shear Flow
- Micro-Capsules in Shear Flow
- Shear-Driven Circulation Patterns in Lipid Membrane Vesicles
- Elastic capsules in shear flow: Analytical solutions for constant and time-dependent shear rates
- Slow sedimentation and deformability of charged lipid vesicles
- Effect of thermal noise on vesicles and capsules in shear flow
- Force dipoles and stable local defects on fluid vesicles
Cited by in corpus (22)
- The vortex-driven dynamics of droplets within droplets
- Numerical computations of the dynamics of fluidic membranes and vesicles
- The divergence-conforming immersed boundary method: Application to vesicle and capsule dynamics
- Spatio-temporal dynamics of dilute red blood cell suspensions in a microchannel flow at low Reynolds number
- A numerical method for the simulation of viscoelastic fluid surfaces
- Hydrodynamic coupling and rotational mobilities near planar elastic membranes
- Steady state sedimentation of ultrasoft colloids
- Predicting optimal hematocrit in silico
- Optimal cell transport in straight channels and networks
- Simple production of cellulose nanofibril microcapsules and the rheology of their suspensions
- Shapes of sedimenting soft elastic capsules in a viscous fluid
- Dynamic behaviour of Multilamellar Vesicles under Poiseuille flow
- Vesicle dynamics in large amplitude oscillatory extensional flow
- Swinging and tumbling of multicomponent vesicles in flow
- An isogeometric boundary element method for soft particles flowing in microfluidic channels
- Shape transition and hydrodynamics of vesicles in tube flow
- Wrinkling instability of vesicles in steady linear flow
- Numerical study of a confined vesicle in shear flow at finite temperature
- Dynamics of polydisperse multiple emulsions in microfluidic channels
- Rheological properties of sheared vesicle and cell suspensions
- Stationary shapes of deformable particles moving at low Reynolds numbers
- Dynamical behavior of compound vesicles in wall-bounded shear flow