We report on the discovery, using numerical simulations, of a segregation pattern in high-speed granular flows, in which size segregation is primarily driven by two-dimensional granular temperature gradients, rather than by gravity. In contrast to slower flows on gentle slopes, in high-speed flows on steep slopes, large particles no longer accumulate in the upper layers of the flow, but are trapped in the interior. The strong temperature gradients that develop between the interior of the flow and the surrounding dilute periphery appear to govern the segregation mechanism. Interestingly, these new segregated flows run at a much faster speed than similar monodisperse flows. This opens up promising perspectives for transporting granular material with enhanced efficiency. Importantly, we show that the kinetic theory for dense, inclined flows of binary mixtures can provide a relevant theoretical framework to explain the segregation patterns observed in the numerical simulations.
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Univ Manchester, Sch Math, Manchester M13 9PL, Lancs, England
Univ Manchester, Manchester Ctr Nonlinear Dynam, Manchester M13 9PL, Lancs, EnglandUniv Manchester, Sch Math, Manchester M13 9PL, Lancs, England
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Univ Manchester, Dept Math, Manchester M13 9PL, England
Univ Manchester, Manchester Ctr Nonlinear Dynam, Manchester M13 9PL, EnglandUniv Manchester, Dept Math, Manchester M13 9PL, England
Edwards, A. N.
Rocha, F. M.
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Aix Marseille Univ, CNRS, IUSTI, F-13453 Marseille, FranceUniv Manchester, Dept Math, Manchester M13 9PL, England
Rocha, F. M.
Kokelaar, B. P.
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Univ Liverpool, Earth & Ocean Sci Dept, Liverpool L69 3GP, EnglandUniv Manchester, Dept Math, Manchester M13 9PL, England
Kokelaar, B. P.
Johnson, C. G.
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Univ Manchester, Dept Math, Manchester M13 9PL, England
Univ Manchester, Manchester Ctr Nonlinear Dynam, Manchester M13 9PL, EnglandUniv Manchester, Dept Math, Manchester M13 9PL, England
Johnson, C. G.
Gray, J. M. N. T.
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Univ Manchester, Dept Math, Manchester M13 9PL, England
Univ Manchester, Manchester Ctr Nonlinear Dynam, Manchester M13 9PL, EnglandUniv Manchester, Dept Math, Manchester M13 9PL, England
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Univ Manchester, Sch Math, Manchester M13 9PL, Lancs, England
Univ Manchester, Manchester Ctr Nonlinear Dynam, Manchester M13 9PL, Lancs, EnglandUniv Manchester, Sch Math, Manchester M13 9PL, Lancs, England
Gray, J. M. N. T.
Kokelaar, B. P.
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Univ Liverpool, Earth & Ocean Sci Dept, Liverpool L69 3GP, Merseyside, EnglandUniv Manchester, Sch Math, Manchester M13 9PL, Lancs, England
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Univ Manchester, Sch Math, Manchester M13 9PL, Lancs, England
Univ Manchester, Manchester Ctr Nonlinear Dynam, Manchester M13 9PL, Lancs, EnglandUniv Manchester, Sch Math, Manchester M13 9PL, Lancs, England
Gray, J. M. N. T.
Ancey, C.
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Ecole Polytech Fed Lausanne, CH-1015 Lausanne, SwitzerlandUniv Manchester, Sch Math, Manchester M13 9PL, Lancs, England
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Zhejiang Univ, Res Ctr Coastal & Urban Geotech Engn, Hangzhou 310058, Peoples R China
Engn Res Ctr Urban Underground Space Dev Zhejiang, Hangzhou 310058, Peoples R ChinaZhejiang Univ, Res Ctr Coastal & Urban Geotech Engn, Hangzhou 310058, Peoples R China
Zhu, Chengwei
Peng, Chong
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ESS Engn Software Steyr GmbH, Berggasse 35, A-4400 Steyr, AustriaZhejiang Univ, Res Ctr Coastal & Urban Geotech Engn, Hangzhou 310058, Peoples R China
Peng, Chong
Wu, Wei
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Univ Bodenkultur, Inst Geotech, Feistmantelstr 4, A-1180 Vienna, AustriaZhejiang Univ, Res Ctr Coastal & Urban Geotech Engn, Hangzhou 310058, Peoples R China