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Published on: May 2, 2014
Kinematics and flow characteristics of a magnetic actuated multi-cilia configuration
Dragos Isvoranu1, Daniel Ioan, Petrisor Parvu
1Faculty of Aerospace Engineering, University Politehnica of Bucharest, Bucharest, Romania. ddisvoranu@gmail.com
Abstract:
The current paper continues the analysis of a completely novel method of fluid manipulation technology in micro-fluidics systems, inspired by nature, namely by the mechanisms found in ciliates. More information on this subject can be found at http://www.hitech-projects.com/euprojects/artic/. In order to simulate the drag forces acting on an array of artificial cilia, we have developed a computer code that is based on fundamental solutions of Stokes flow in a semi-infinite domain. The actuation mechanism consists of a bi-directional rotating excitation magnetic field. The magnetization induced by the magnetic field was calculated in a separate routine based on the Integral Nonlinear Equations Approach with 1D discretization of wire (cilium). Time averaged x-coordinate mass flow rates, streamlines and vorticity field are computed for several cilium configurations. The outcome and originality of this paper consist on assessing magnetic actuation as a practical tool for obtaining a consistent one-directional fluid flow.
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