English

Weakly nonlinear analysis of pattern formation in active suspensions

Fluid Dynamics 2022-06-15 v1 Dynamical Systems

Abstract

We consider the Saintillan--Shelley kinetic model of active rodlike particles in Stokes flow (Saintillan & Shelley 2008a,b), for which the uniform, isotropic suspension of pusher particles is known to be unstable in certain settings. Through weakly nonlinear analysis accompanied by numerical simulations, we determine exactly how the isotropic steady state loses stability in different parameter regimes. We study each of the various types of bifurcations admitted by the system, including both subcritical and supercritical Hopf and pitchfork bifurcations. Elucidating this system's behavior near these bifurcations provides a theoretical means of comparing this model with other physical systems which transition to turbulence, and makes predictions about the nature of bifurcations in active suspensions that can be explored experimentally.

Keywords

Cite

@article{arxiv.2205.04942,
  title  = {Weakly nonlinear analysis of pattern formation in active suspensions},
  author = {Laurel Ohm and Michael J. Shelley},
  journal= {arXiv preprint arXiv:2205.04942},
  year   = {2022}
}

Comments

40 pages, many figures. To appear in Journal of Fluid Mechanics

R2 v1 2026-06-24T11:13:14.068Z