English

Scaling relations between viscosity and diffusivity in shear-thickening suspensions

Soft Condensed Matter 2023-05-24 v1 Fluid Dynamics Geophysics

Abstract

Dense suspensions often exhibit a dramatic response to large external deformation. The recent body of work has related this behavior to transition from an unconstrained lubricated to a constrained frictional state. Here, we use numerical simulations to study the flow behavior and shear-induced diffusion of frictional non-Brownian spheres in two dimensions under simple shear flow. We first show that both viscosity η\eta and diffusivity D/γ˙D/\dot{\gamma} of the particles increase at characteristic shear stress, which is associated with lubrication to frictional transition. Subsequently, we propose a one-to-one relation between viscosity and diffusivity using the length scale ξ\xi associated with the size of collective motions (rigid clusters) of the particles. We demonstrate that η\eta and D/γ˙D/\dot{\gamma} are controlled by ξ\xi in two distinct flow regimes, i.e. in the frictionless and frictional states, where the one-to-one relation is described as a crossover from D/γ˙ηD/\dot{\gamma}\sim\eta ({frictionless}) to η1/3\eta^{1/3} ({frictional}). We also confirm the proposed power laws are insensitive to the interparticle friction and system size.

Keywords

Cite

@article{arxiv.2305.14030,
  title  = {Scaling relations between viscosity and diffusivity in shear-thickening suspensions},
  author = {Abhinendra Singh and Kuniyasu Saitoh},
  journal= {arXiv preprint arXiv:2305.14030},
  year   = {2023}
}

Comments

7 pages; 4 figures

R2 v1 2026-06-28T10:42:57.252Z