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Self-propulsion of N-hinged 'Animats' at low Reynolds number

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2-s2.0-84896804655.pdf (399.1Kb)
Date
2003
Author
Araújo, Gerusa Alexsandra de
Koiller, Jair
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Abstract
Optimal locomotion of micro-organisms (on a small Reynolds number flow) can be regarded as a sub-riemannian geometry on a principal bundle with a mechanical connection. Aiming at robotic applications, flagella are modeled as concatenated line segments with variable hinge angles. As an example, we consider E. Purcell's 2-hinged animat [39], the simplest configuration capable to circumnvent Stokes flow reversibility.
URI
http://hdl.handle.net/10438/25421
Collections
  • Documentos indexados pela Scopus [664]
Knowledge Areas
Matemática
Subject
Dinâmica de fluídos - Modelos matemáticos
Reynolds, Número de
Keyword
Connections And Curvature
Nonholonomic Constraints
Stokes Flows
Fluxo de Stokes
Sistema não-holonômico

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