Microrheology to probe non-local effects in dense granular flows

A granular material is observed to flow under the Coulomb yield criterion as soon as this criterion is satisfied in a remote but contiguous region of space. We investigate this non-local effect using discrete element simulations, in a geometry similar, in spirit, to the experiment of Reddy et al. (P...

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Published inEurophysics letters Vol. 109; no. 2; pp. 24002 - p1-24002-p6
Main Authors Bouzid, Mehdi, Trulsson, Martin, Claudin, Philippe, Clément, Eric, Andreotti, Bruno
Format Journal Article
LanguageEnglish
Published Les Ulis EDP Sciences, IOP Publishing and Società Italiana di Fisica 01.01.2015
IOP Publishing
European Physical Society / EDP Sciences / Società Italiana di Fisica / IOP Publishing
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Summary:A granular material is observed to flow under the Coulomb yield criterion as soon as this criterion is satisfied in a remote but contiguous region of space. We investigate this non-local effect using discrete element simulations, in a geometry similar, in spirit, to the experiment of Reddy et al. (Phys. Rev. Lett., 106 (2011) 108301): a micro-rheometer is introduced to determine the influence of a distant shear band on the local rheological behaviour. The numerical simulations recover the dominant features of this experiment: the local shear rate is proportional to that in the shear band and decreases (roughly) exponentially with the distance to the yield conditions. The numerical results are in quantitative agreement with the predictions of the non-local rheology proposed by the present authors (Phys. Rev. Lett., 111 (2013) 238301) and derived from a gradient expansion of the rheology . The consequences of these findings for the dynamical mechanisms controlling non-locality are finally discussed.
Bibliography:ark:/67375/80W-G351W4RP-7
publisher-ID:epl16823
istex:75B31471619D933859E3FED85D9017A95532F3FB
ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
ISSN:0295-5075
1286-4854
DOI:10.1209/0295-5075/109/24002