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Two-dimensional lattice Boltzmann simulations of vesicles with viscosity contrast
RHEOLOGICA ACTA
55
, 465–475 (
2015
)
Authors
Badr Kaoui
Jens Harting
BibTeΧ
@Article{Kaoui2016, author="Kaoui, Badr and Harting, Jens", title="Two-dimensional lattice Boltzmann simulations of vesicles with viscosity contrast", journal="Rheologica Acta", year="2016", volume="55", number="6", pages="465--475", abstract="We present a numerical approach to simulate the dynamics of viscous vesicles (their internal and external fluids have different viscosities). The flow is computed using the lattice Boltzmann method and the fluid-vesicle two-way coupling is achieved using the immersed boundary method. The viscosity contrast (defined as the ratio of the internal to the external viscosities) is included using a geometrical algorithm that detects if a fluid node is either located inside or outside a vesicle. Our two-dimensional simulations successfully reproduce the tank-treading and tumbling dynamical states known for a viscous vesicle when it is subjected to simple shear flow. A good qualitative agreement between our simulation results and literature data is obtained. Moreover, we quantitatively analyze how inertia influences the dynamics of a vesicle and as an outlook we present an application of our method to the flow of multiple viscous vesicles in a microfluidic constriction.", issn="1435-1528", doi="10.1007/s00397-015-0867-6", url="http://dx.doi.org/10.1007/s00397-015-0867-6" }
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