English

Jamming of Elastoviscoplastic fluids in Elastic Turbulence

Soft Condensed Matter 2025-08-14 v1 Fluid Dynamics

Abstract

Elastoviscoplastic (EVP) fluid flows are driven by a non-trivial interplay between the elastic, viscous, and plastic properties, which under certain conditions can transition the otherwise laminar flow into complex flow instabilities with rich space-time-dependent dynamics. We discover that under elastic turbulence regimes, EVP fluids undergo dynamic jamming triggered by localised polymer stress deformations that facilitate the formation of solid regions trapped in local low-stress energy wells. Below the jamming transition ϕ<ϕJ\phi<\phi_J, the solid volume fraction ϕ\phi scales with Bi\sqrt{Bi}, where BiBi is the Bingham number characterizing the ratio of yield to viscous stresses, in direct agreement with theoretical approximations based on the laminar solution. The onset of this new dynamic jamming transition ϕϕJ\phi\geq\phi_J is marked by a clear deviation from the scaling ϕBi\phi \sim \sqrt{Bi}, scaling as ϕexpBi\phi \sim \exp{Bi}. We show that this instability-induced jamming transition -- analogous to that in dense suspensions -- leads to slow, minimally diffusive, and rigid-like flows with finite deformability, highlighting a novel phase-change in elastic turbulence regimes of complex fluids.

Keywords

Cite

@article{arxiv.2503.13774,
  title  = {Jamming of Elastoviscoplastic fluids in Elastic Turbulence},
  author = {Christopher S. From and Vedad Dzanic and Vahid Niasar and Emilie Sauret},
  journal= {arXiv preprint arXiv:2503.13774},
  year   = {2025}
}

Comments

Submitted to Journal of Fluid Mechanics