Soft swimming: Exploiting deformable interfaces for low-Reynolds number locomotion
Soft Condensed Matter
2008-10-02 v1 Biological Physics
Fluid Dynamics
Abstract
Reciprocal movement cannot be used for locomotion at low-Reynolds number in an infinite fluid or near a rigid surface. Here we show that this limitation is relaxed for a body performing reciprocal motions near a deformable interface. Using physical arguments and scaling relationships, we show that the nonlinearities arising from reciprocal flow-induced interfacial deformation rectify the periodic motion of the swimmer, leading to locomotion. Such a strategy can be used to move toward, away from, and parallel to any deformable interface as long as the length scales involved are smaller than intrinsic scales, which we identify. A macro-scale experiment of flapping motion near a free surface illustrates this new result.
Cite
@article{arxiv.0806.4457,
title = {Soft swimming: Exploiting deformable interfaces for low-Reynolds number locomotion},
author = {Renaud Trouilloud and Tony S. Yu and A. E. Hosoi and Eric Lauga},
journal= {arXiv preprint arXiv:0806.4457},
year = {2008}
}