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Simulations of sheared dense noncolloidal suspensions: Evaluation of the role of long-range hydrodynamics

Stany Gallier, François Peters, and Laurent Lobry
Phys. Rev. Fluids 3, 042301(R) – Published 9 April 2018

Abstract

This work intends to evaluate the role of many-body long-range hydrodynamics by simulations of sheared neutrally buoyant non-Brownian, noncolloidal suspensions. Three-dimensional simulations of sheared suspensions are conducted with and without long-range hydrodynamics, for a volume fraction range between 0.1–0.62 (frictionless) and 0.1–0.56 (frictional). Discarding long-range hydrodynamics has only a moderate effect on viscosity for the range of volume fractions investigated and viscosities diverge with similar scaling laws; the critical fraction is found to be approximately 0.64 (frictionless) and 0.58 (frictional). Conversely, many-body hydrodynamics are found to affect diffusion and particle velocities, which are correlated on a longer range when long-range interactions are included, even in dense suspensions. This means that long-range hydrodynamics may not be significantly screened by crowding. Assuming only short-range lubrication interactions is therefore suitable for predicting viscosity in noncolloidal suspensions but becomes questionable when flow details (e.g., diffusion or velocity correlations) are needed.

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  • Received 13 November 2017

DOI:https://doi.org/10.1103/PhysRevFluids.3.042301

©2018 American Physical Society

Physics Subject Headings (PhySH)

Polymers & Soft Matter

Authors & Affiliations

Stany Gallier

  • ArianeGroup, Le Bouchet Research Center, 91710 Vert le Petit, France

François Peters and Laurent Lobry

  • Institute of Physics of Nice, UMR 7010, 06108 Nice, France

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Issue

Vol. 3, Iss. 4 — April 2018

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