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January 22, 2026Physics of Fluids0 citations

Convective flows in sheared packings of spherical particles

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MEMehran ErfanifamMMMahnoush MadaniRSReza Shaebani

Key Points

  • The research aims to explore how granular materials respond to shear stress and the resulting flow behaviors.
  • Direct observation of granular convection in shear zones
  • Use of bead-coloring techniques in a split-bottom geometry
  • Analysis of flow fields within sheared granular packings
  • Persistent granular convection is observed in the bulk shear zones
  • At low filling heights, two counter-rotating convection rolls form
  • At high filling heights, a single dominant convection roll with radially outward flow appears
  • The transition between flow patterns is influenced by shear zone height and asymmetry

Abstract

Understanding how granular materials respond to shear stress remains a central challenge in soft matter physics. We report direct observations of persistent granular convection in the bulk shear zones of spherical particle packings—a phenomenon previously associated primarily with particle shape anisotropy or boundary effects. By employing various bead-coloring techniques in a split-bottom geometry, we reveal internal flow fields within sheared granular packings. We find robust convection rolls, strikingly governed by system geometry: at low filling heights, two counter-rotating convection rolls emerge, while at higher filling heights, a single dominant convection roll forms, featuring radially outward flow at the surface. This transition is driven by the height-dependent broadening of the shear zone, which introduces shear rate asymmetry across its flanks. Notably, the transition occurs entirely within the open shear band regime. These findings underscore the pivotal role of system geometry in shaping secondary flow formation in dense packings of frictional particles, suggesting possible broader relevance to geophysical flow dynamics and industrial applications.

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Cite This Study

Erfanifam et al. (2026) studied this question.

synapsesocial.com/papers/6971bd6a642b1836717e214ehttps://doi.org/10.1063/5.0309076
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