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DY: Fachverband Dynamik und Statistische Physik
DY 27: Microfluidics
DY 27.6: Vortrag
Dienstag, 13. März 2018, 12:30–12:45, BH-N 128
Passive swimming of soft particles in oscillatory Poiseuille flow — •Winfried Schmidt1, Matthias Laumann1, Eva Kanso2, and Walter Zimmermann1 — 1Theoretische Physik 1, Universität Bayreuth, 95440 Bayreuth, Germany — 2Aerospace and Mechanical Engineering, University of Southern California, Los Angeles, California, USA
What is the dynamical behavior of soft particles in oscillatory (pulsating) Poiseuille flow at low Reynolds number? By investigating the overdamped motion of bead-spring models for a triangle, 2D ring polymers or 3D capsules, we predict particle actuation in the case of vanishing mean flow. This effect is generic as it does not depend on the model. Asymmetric, Janus like particles propagate in a symmetric flow. Symmetric particles swim for non-symmetric flow oscillations (non equal half periods). The mean actuation (swim) velocity of a particle is caused by its varying shape in both half periods. Since the actuation steps depend also on the size and the elasticity of soft particles, this novel actuation (passive swimming) mechanism is also appropriate for particle sorting.