Motion of a tank-treading ellipsoidal particle in a shear flow

Author:

Keller Stuart R.,Skalak Richard

Abstract

A theoretical model is developed for the motion of a human red blood cell in a shear field. The model consists of a tank-treading ellipsoidal membrane encapsulating an incompressible Newtonian liquid immersed in a plane shear flow of another incom- pressible Newtonian liquid. Equilibrium and energy considerations lead to a solution for the motion of the particle that depends on the ellipsoidal-axis ratios and the ratio of the inner- to outer-liquid viscosities. The effect of variation in these parameters is explored and it is shown that, depending on their values, one of two types of overall motion is exhibited: a steady stationary-orientation motion or an unsteady flipping motion. A qualitative agreement of the predicted behaviour of the model with experi- mental observations on red blood cells is found.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference37 articles.

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2. Keller, S. R. & Skalak, R. 1980 Flipping motion of a tank-treading ellipsoid in a shear flow. In1980 Advances in Bioengineering (ed. V. C. Mow ), pp.309–312. A.S.M.E.

3. Goldsmith, H. L. & Mason, S. G. 1967 The microrheology of dispersions. In Rheology, Theory and Applications (ed. F. R. Eirich ), vol. 4, pp.85–250.Academic.

4. Schmid-Schönbein, H. & Wells, R. 1969 Fluid drop-like transition of erythrocytes under shear.Science 165,288–291.

5. Jeffery, G. B. 1922 The motion of ellipsoidal particles immersed in a viscous fluid.Proc. R. Soc. Lond. A102,161–179.

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