Effect of packing fraction on the jamming of granular flow through small apertures
arXiv:1110.4790 · doi:10.1088/1742-5468/2012/04/P04008
Abstract
We investigate the flow and jamming through small apertures of a column of granular disks via a pseudo-dynamic model. We focus on the effect that the preparation of the granular assembly has on the size of the avalanches obtained. Ensembles of packings with different mean packing fractions are created by tapping the system at different intensities. Surprisingly, packing fraction is not a good indicator of the ability of the deposit to jam a given orifice. Different mean avalanche sizes are obtained for deposits with the same mean packing fraction that were prepared with very different tap intensities. It has been speculated that the number and size of arches in the bulk of the granular column should be correlated with the ability of the system to jam a small opening. We show that this correlation, if exists, is rather poor. A comparison between bulk arches and jamming arches (i.e., arches that block the opening) reveals that the aperture imposes a lower cut-off on the horizontal span of the arches which is greater than the actual size of the opening. This is related to the fact that blocking arches have to have the appropriate orientation to fit the gap between two piles of grains resting at each side of the aperture.
13 pages, 9 figures
References in corpus (11)
- Force and flow transition in plowed granular media
- Role of vibrations in the jamming and unjamming of grains discharging from a silo
- The shape of jamming arches in two-dimensional deposits of granular materials
- Loose packings of frictional spheres
- Thermodynamics and Statistical Mechanics of dense granular media
- Identification of arches in 2D granular packings
- Towards a relevant set of state variables to describe static granular packings
- Steady state of tapped granular polygons
- Master curves for the stress tensor invariants in stationary states of static granular beds. Implications for the thermodynamic phase space
- High intensity tapping regime in a frustrated lattice gas model of granular compaction
- Pentagon deposits unpack under gentle tapping
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- Invited review: Clogging of granular materials in bottlenecks
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- The simultaneous discharge of liquid and grains from a silo
- Surface depression with double-angle geometry during the discharge of close-packed grains from a silo
- Density distribution of particles upon jamming after an avalanche in a 2D silo