Dynamics of Fluid Vesicles in Oscillatory Shear Flow
Abstract
The dynamics of fluid vesicles in oscillatory shear flow was studied using differential equations of two variables: the Taylor deformation parameter and inclination angle . In a steady shear flow with a low viscosity of internal fluid, the vesicles exhibit steady tank-treading motion with a constant inclination angle . In the oscillatory flow with a low shear frequency, oscillates between or around for zero or finite mean shear rate , respectively. As shear frequency increases, the vesicle oscillation becomes delayed with respect to the shear oscillation, and the oscillation amplitude decreases. At high with , another limit-cycle oscillation between and is found to appear. In the steady flow, periodically rotates (tumbling) at high , and and the vesicle shape oscillate (swinging) at middle and high shear rate. In the oscillatory flow, the coexistence of two or more limit-cycle oscillations can occur for low in these phases. For the vesicle with a fixed shape, the angle rotates back to the original position after an oscillation period. However, it is found that a preferred angle can be induced by small thermal fluctuations.
Keywords
Cite
@article{arxiv.0911.1390,
title = {Dynamics of Fluid Vesicles in Oscillatory Shear Flow},
author = {Hiroshi Noguchi},
journal= {arXiv preprint arXiv:0911.1390},
year = {2015}
}
Comments
11 pages, 13 figures