The regularized Stokeslets method applied to the three-sphere swimmer model
arXiv:2007.16017 · doi:10.1063/5.0040052
Abstract
We investigate the applicability of the Method of Regularized Stokeslets (MRS) in the simulation of micro-swimmers at low Reynolds number. The chosen model for the study is the well-known three linked spheres swimmer. We compare our results with the lattice Boltzmann method, multiparticle collision dynamics, a numerical solution of the Oseen tensor equation and an analytical solution, all taken from Earl [J. Chem. Phys. 126, 064703 (2007)]. The MRS is studied in detail, and our results show an excellent agreement with the lattice Boltzmann method, and with the analytical solution in its range of validity. We conclude that the MRS is well suited for this type of simulation, offering advantages such as being easy to implement and to represent complex geometries. Therefore it presents itself as a suitable candidate for more complex simulations.
7 pages, 6 figures
References in corpus (6)
- The 2019 Motile Active Matter Roadmap
- Measurement of areas on a sphere using Fibonacci and latitude-longitude lattices
- Analytic results for the three-sphere swimmer at low Reynolds number
- A basic swimmer at low Reynolds number
- Efficiency limits of the three-sphere swimmer
- Elastohydrodynamics of swimming helices: effects of flexibility and confinement