4.8 Article

Axisymmetric Granular Collapse: A Transient 3D Flow Test of Viscoplasticity

Journal

PHYSICAL REVIEW LETTERS
Volume 102, Issue 10, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.102.108305

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Funding

  1. Marie-Curie IntraEuropean fellowship

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A viscoplastic continuum theory has recently been proposed to model dense, cohesionless granular flows [P. Jop , Nature (London) 441, 727 (2006)]. We confront this theory for the first time with a transient, three-dimensional flow situation-the simple collapse of a cylinder of granular matter onto a horizontal plane-by extracting stress and strain rate tensors directly from soft particle simulations. These simulations faithfully reproduce the different flow regimes and capture the observed scaling laws for the final deposit. Remarkably, the theoretical hypothesis that there is a simple stress-strain rate tensorial relationship does seem to hold across the whole flow even close to the rough boundary provided the flow is dense enough. These encouraging results suggest viscoplastic theory is more generally applicable to transient, multidirectional, dense flows and open the way for quantitative predictions in real applications.

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