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20182022
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physics.flu-dyn2021

Squirmer hydrodynamics near a periodic surface topography

Kenta Ishimoto, Eamonn A. Gaffney, David J. Smith

The behaviour of microscopic swimmers has previously been explored near large scale confining geometries and in the presence of very small-scale surface roughness. Here we consider…

physics.flu-dyn2020

Regularised non-uniform segments and efficient no-slip elastohydrodynamics

Benjamin J. Walker, Eamonn A. Gaffney

The elastohydrodynamics of slender bodies in a viscous fluid have long been the source of theoretical investigation, being pertinent to the microscale world of ciliates and flagell…

physics.flu-dyn2019

Efficient simulation of filament elastohydrodynamics in three dimensions

Benjamin J. Walker, Kenta Ishimoto, Eamonn A. Gaffney

Fluid-structure simulations of slender inextensible filaments in a viscous fluid are often plagued by numerical stiffness. Recent coarse-graining studies have reduced the computati…

physics.flu-dyn2019

The pairwise hydrodynamic interactions of synchronized spermatozoa

Benjamin J. Walker, Kenta Ishimoto, Eamonn A. Gaffney

The journey of mammalian spermatozoa in nature is well-known to be reliant on their individual motility. Often swimming in crowded microenvironments, the progress of any single swi…

physics.flu-dyn2019

Filament mechanics in a half-space via regularised Stokeslet segments

Benjamin J. Walker, Kenta Ishimoto, Hermes Gadêlha +1

We present a generalisation of efficient numerical frameworks for modelling fluid-filament interactions via the discretisation of a recently-developed, non-local integral equation…