Particle dynamics in sheared granular matter
Preprint
- 24 April 2000
Abstract
The particle dynamics and shear forces of granular matter in a Couette geometry are determined experimentally. The normalized tangential velocity $V(y)$ declines strongly with distance $y$ from the moving wall, independent of the shear rate and of the shear dynamics. Local RMS velocity fluctuations $\delta V(y)$ scale with the local velocity gradient to the power $0.4 \pm 0.05$. These results agree with a locally Newtonian, continuum model, where the granular medium is assumed to behave as a liquid with a local temperature $\delta V(y)^2$ and density dependent viscosity.
All Related Versions
- Version 1, 2000-04-24, ArXiv
- Published version: Physical Review Letters, 85 (7), 1428.