Swinging and tumbling of elastic capsules in shear flow
S. Kessler, R. Finken, U. Seifert

TL;DR
This study numerically investigates the deformation and dynamic behaviors of elastic micro-capsules in shear flow, successfully reproducing oscillations and tumbling transitions, and providing detailed phase diagrams.
Contribution
The paper introduces a spectral method for simulating elastic capsule deformation in shear flow, offering smooth shape representations and accurate stress calculations, advancing previous triangulation-based approaches.
Findings
Reproduced stable oscillations of tank-treading inclination angle.
Observed transition from tank-treading to tumbling behavior.
Explored the phase diagram of capsule dynamics under varying conditions.
Abstract
The deformation of an elastic micro-capsule in an infinite shear flow is studied numerically using a spectral method. The shape of the capsule and the hydrodynamic flow field are expanded into smooth basis functions. Analytic expressions for the derivative of the basis functions permit the evaluation of elastic and hydrodynamic stresses and bending forces at specified grid points in the membrane. Compared to methods employing a triangulation scheme, this method has the advantage that the resulting capsule shapes are automatically smooth, and few modes are needed to describe the deformation accurately. Computations are performed for capsules both with spherical and ellipsoidal unstressed reference shape. Results for small deformations of initially spherical capsules coincide with analytic predictions. For initially ellipsoidal capsules, recent approximative theories predict stable…
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Taxonomy
TopicsBlood properties and coagulation · Platelet Disorders and Treatments · Lattice Boltzmann Simulation Studies
