English

Rheological properties of soft-glassy flows from hydro-kinetic simulations

Soft Condensed Matter 2014-03-03 v5 Fluid Dynamics

Abstract

Based on numerical simulations of a lattice kinetic model for soft-glassy materials, we characterize the global rheology of a dense emulsion-like system, under three representative load conditions: Couette flow, time-oscillating Strain and Kolmogorov flow. It is found that in all cases the rheology is described by a Herschel-Bulkley (HB) relation, σ=σY+ASβ\sigma = {\sigma}_{Y} + A S^{\beta}, with the yield stress σY{\sigma}_{Y} largely independent of the loading scenario. A proper rescaling of the HB parameters permits to describe heterogeneous flows with space-dependent stresses, based on the notion of cooperativity, as recently proposed to characterize the degree of non-locality of stress relaxation phenomena in soft-glassy materials.

Keywords

Cite

@article{arxiv.1305.2594,
  title  = {Rheological properties of soft-glassy flows from hydro-kinetic simulations},
  author = {R. Benzi and M. Bernaschi and M. Sbragaglia and S. Succi},
  journal= {arXiv preprint arXiv:1305.2594},
  year   = {2014}
}

Comments

6 pages, 12 Figures