54 citations · 92 across the 6 of their papers we have counts for
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Mesoscopic modelling of droplets on topologically patterned substrates
A. Dupuis, J. M. Yeomans
We present a lattice Boltzmann model to describe the spreading of droplets on topologically patterned substrates. We apply it to model superhydrophobic behaviour on surfaces covere…
Jetting Micron-Scale Droplets onto Chemically Heterogeneous Surfaces
J. Leopoldes, A. Dupuis, D. G. Bucknall +1
We report experiments investigating the behaviour of micron-scale fluid droplets jetted onto surfaces patterned with lyophobic and lyophilic stripes. The final droplet shape depend…
Droplet Spreading on Heterogeneous Surfaces using a Three-Dimensional Lattice Boltzmann Model
A. Dupuis, A. J. Briant, C. M. Pooley +1
We use a three-dimensional lattice Boltzmann model to investigate the spreading of mesoscale droplets on homogeneous and heterogeneous surfaces. On a homogeneous substrate the base…
Hydrodynamics of domain growth in nematic liquid crystals
Geza Toth, Colin Denniston, J. M. Yeomans
We study the growth of aligned domains in nematic liquid crystals. Results are obtained solving the Beris-Edwards equations of motion using the lattice Boltzmann approach. Spatial…
Modelling nematohydrodynamics in liquid crystal devices
Geza Toth, Colin Denniston, J. M. Yeomans
We formulate a lattice Boltzmann algorithm which solves the hydrodynamic equations of motion for nematic liquid crystals. The applicability of the approach is demonstrated by prese…
Domain motion in confined liquid crystals
Colin Denniston, Geza Toth, Julia M. Yeomans
We extend a lattice Boltzmann algorithm of liquid crystal hydrodynamics to include an applied electric field. The approach solves the equations of motion written in terms of a tens…