arXiv · cond-mat/0601527
A Lattice-Boltzmann model for suspensions of self-propelling colloidal particles
Abstract
We present a Lattice-Boltzmann method for simulating self-propelling (active) colloidal particles in two-dimensions. Active particles with symmetric and asymmetric force distribution on its surface are considered. The velocity field generated by a single active particle, changing its orientation randomly, and the different time scales involved are characterized in detail. The steady state speed distribution in the fluid, resulting from the activity, is shown to deviate considerably from the equilibrium distribution.
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Sanoop Ramachandran, P. B. Sunil Kumar, I. Pagonabarraga. 2006-01-23. A Lattice-Boltzmann model for suspensions of self-propelling colloidal particles. https://doi.org/10.1140/epje%2Fi2006-10009-1
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