Bulletin of the American Physical Society
75th Annual Meeting of the Division of Fluid Dynamics
Volume 67, Number 19
Sunday–Tuesday, November 20–22, 2022; Indiana Convention Center, Indianapolis, Indiana.
Session Z26: Suspensions: General
12:50 PM–3:00 PM,
Tuesday, November 22, 2022
Room: 234
Chair: Lina Baroudi, Manhattan College
Abstract: Z26.00009 : Mesoscopic simulations of shear-induced phase transition in active colloidal suspensions
2:34 PM–2:47 PM
Not Participating
Presenter:
Ayten G Bayram
(Bilkent University, Ankara/Turkey)
Authors:
Ayten G Bayram
(Bilkent University, Ankara/Turkey)
Fabian Jan Schwarzendahl
(Heinrich-Heine-Universität Düsseldorf)
Hartmut Löwen
(Heinrich-Heine-Universität Düsseldorf)
Luca Biancofiore
(Bilkent University)
As an initial step, Brownian dynamics is used to describe active colloids interacting via a repulsive Yukawa potential for the melting of colloidal suspensions. The activity of the system has been introduced by a self-propulsion in the presence of a steady shear flow. In this way, the interplay between activity and shear could be analysed without hydrodynamics.
Concurrently, a mesoscopic approach, as the most suitable choice to model the solvent of colloidal suspensions, is followed. In this regard, the Multiparticle Collision-Anderson Thermostat (MPC-AT) algorithm is preferred due to its capability to preserve also the angular momentum with respect to other MPC algorithms. A conventional molecular dynamics method is then used to describe the colloids, leading, in combination with MPC-AT for the fluid particles, to a multi-scale approach for the same simulation.
The structural changes are followed up through the global bond-orientational order parameter, by changing the strength of self-propulsion and the shear rate. Thereby, we characterize the non-equilibrium state diagram, showing the hexagonal crystal to melt transition. Further, we quantify the effect of hydrodynamic interactions, which effectively shifts the transition line.
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