Starting to move through a granular medium
arXiv:1012.2151 · doi:10.1103/PhysRevLett.101.108001
Abstract
We explore the process of initiating motion through a granular medium by measuring the force required to push a flat circular plate upward from underneath the medium. In contrast to previous measurements of the drag and penetration forces, which were conducted during steady state motion, the initiation force has a robust dependence on the diameter of the grains in the medium. We attribute this dependence to the requirement for local dilation of the grains around the circumference of the plate, as evidenced by an observed linear dependence of the initiation force on the plate diameter.
References in corpus (2)
Cited by in corpus (6)
- Low Velocity Granular Drag in Reduced Gravity
- Contacts, motion and chain-breaking in a two-dimensional granular system displaced by an intruder
- Collaborative behavior of intruders moving amid grains
- Mobility in immersed granular materials upon cyclic loading
- Viscous dynamics of drops and bubbles in Hele-Shaw cells: drainage, drag friction, coalescence, and bursting
- Intruder dynamics in granular media under localized surface loading