Simulations on traveling-plane-wave-based micropumps and microswimmers

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Modeling flow-fields and rigid-body kinematics of fully-submerged bio-inspired microsystems with deforming extremities

ISBN: 365994808X
ISBN 13: 9783659948084
Autor: Tabak, Ahmet Fatih/Yesilyurt, Serhat
Verlag: LAP LAMBERT Academic Publishing
Umfang: 92 S.
Erscheinungsdatum: 27.09.2016
Auflage: 1/2016
Format: 0.7 x 22 x 15
Gewicht: 155 g
Produktform: Kartoniert
Einband: Kartoniert
Artikelnummer: 9928867 Kategorie:

Beschreibung

A biologically-inspired micropropulsion method is studied via a series of CFD models managing time-irreversible inextensible wave propagation in a viscous medium. First, pump effect of a fully submerged and anchored thin-film with time-irreversible plane-wave propagation is analyzed by means of resultant channel flow, hydraulic power consumption, and efficiency while performing in a microchannel. Next, propulsion velocity, power consumption and hydrodynamic efficiency of a fully submerged and untethered bio-inspired microswimmer, employing single wave-propagating slender tail, are analyzed with respect to parameterized design variables. All models are governed by dimensionless incompressible Navier-Stokes equations subject to conservation of mass and incorporated with the arbitrary Lagrangian-Eulerian mesh scheme, simultaneously handling moving and stationary boundaries. The resultant rigid-body motion of the swimmer is modeled via incorporating interactions between surrounding viscous fluid and swimmer surface with the rigid-body kinematics, in 3D. Numerical results are compared with the asymptotical results to analytical studies, carried out earlier, based on 2D flow assumptions.

Autorenporträt

Dr. Ahmet Fatih Tabak is a Mechatronics Engineer (BSc 2005, MSc 2007,PhD 2012, Sabanci University) specialized in fluid-structure interactionassociated with bio-inspired and bio-mimicking robots. He was faculty atIstanbul Commerce University, and is currently a post-doctoral fellow atthe Max-Planck Institute for Intelligent Systems, Stuttgart.

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