Emergent rheotaxis of shape-changing swimmers in Poiseuille flow

Author:

Walker B.J.ORCID,Ishimoto K.ORCID,Moreau C.ORCID,Gaffney E.A.ORCID,Dalwadi M.P.ORCID

Abstract

A simple model for the motion of shape-changing swimmers in Poiseuille flow was recently proposed and numerically explored by Omori et al. (J. Fluid Mech., vol. 930, 2022, A30). These explorations hinted that a small number of interacting mechanics can drive long-time behaviours in this model, cast in the context of the well-studied alga Chlamydomonas and its rheotactic behaviours in such flows. Here, we explore this model analytically via a multiple-scale asymptotic analysis, seeking to formally identify the causal factors that shape the behaviour of these swimmers in Poiseuille flow. By capturing the evolution of a Hamiltonian-like quantity, we reveal the origins of the long-term drift in a single swimmer-dependent constant, whose sign determines the eventual behaviour of the swimmer. This constant captures the nonlinear interaction between the oscillatory speed and effective hydrodynamic shape of deforming swimmers, driving drift either towards or away from rheotaxis.

Funder

Engineering and Physical Sciences Research Council

Royal Commission for the Exhibition of 1851

Japan Society for the Promotion of Science

Precursory Research for Embryonic Science and Technology

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Applied Mathematics

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