Core precession and global modes in granular bulk flow

Phys Rev Lett. 2006 Mar 24;96(11):118001. doi: 10.1103/PhysRevLett.96.118001. Epub 2006 Mar 21.

Abstract

We report a novel transition to core precession for granular flows in a split-bottomed shear cell. This transition is related to a qualitative change in the 3D flow structure: For shallow layers of granular material, the shear zones emanating from the split reach the free surface, while for deep layers the shear zones meet below the surface, causing precession. The surface velocities reflect this transition by a change of symmetry. As a function of layer depth, we find that three qualitatively different smooth and robust granular flows can be created in this simple shearing geometry.