Three-dimensional shear in granular flow |
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Authors: | Cheng Xiang Lechman Jeremy B Fernandez-Barbero Antonio Grest Gary S Jaeger Heinrich M Karczmar Greg S Möbius Matthias E Nagel Sidney R |
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Affiliation: | The James Franck Institute and Department of Physics, The University of Chicago, Chicago, Illinois 60637, USA. |
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Abstract: | The evolution of granular shear flow is investigated as a function of height in a split-bottom Couette cell. Using particle tracking, magnetic-resonance imaging, and large-scale simulations, we find a transition in the nature of the shear as a characteristic height H* is exceeded. Below H* there is a central stationary core; above H* we observe the onset of additional axial shear associated with torsional failure. Radial and axial shear profiles are qualitatively different: the radial extent is wide and increases with height, while the axial width remains narrow and fixed. |
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