Reorganization of a granular medium around a localized transformation
arXiv:1606.07726 · doi:10.1103/PhysRevE.93.062904
Abstract
Physical and chemical transformation processes in reactive granular media involve the reorganization of the structure. In this paper, we study experimentally the rearrangements of a two-dimensional (2D) granular packing undergoing a localized transformation. We track the position and evolution of all the disks that constitute the granular packing when either a large intruder shrinks in size or is pulled out of the granular structure. In the two situations the displacements at long time are similar to 2D quasistatic silo flows whereas the short-time dynamic is heterogeneous in both space and time. We observe an avalanchelike behavior with power-law distributed events uncorrelated in time. In addition, the instantaneous evolutions of the local solid fraction exhibit self-similar distributions. The averages and the standard deviations of the solid fraction variations can be rescaled, suggesting a single mechanism of rearrangement.
References in corpus (7)
- Wet Granular Materials
- Diffusion and mixing in gravity-driven dense granular flows
- Velocity profile of granular flows inside silos and hoppers
- Avalanche prediction in Self-organized systems
- Anomalous diffusion in silo drainage
- Spontaneous jamming and unjamming in a hopper with multiple exit orifices
- Lubrication effects on the flow of wet granular materials