Published July 1, 2005 | Version v1
Miscellaneous

Discrete element simulation of granular flow in a modified Couette cell

Description

Slow, dense granular flows often exhibit thin, localized regions of particle motion, called shear bands, separating largely solid-like regions. Recent experiments using a split-bottom Couette cell found that the width of the shear zone grew as the pack height increased and the azimuthal velocities when rescaled fall on a universal curve regardless of the particle properties. Here we present large-scale Discrete Element simulations of a similar system for packs of varying height up to 180,000 monodisperse spheres. The onset and evolution of granular shear flow is investigated as a function of height. We find a transition in the nature of the shear as a characteristic height is exceeded. Below this height there is a central quasi-solid core; above this height we observe the onset of additional axial shear associated with a torsional failure mode of the inner core. Radial and axial shear profiles are qualitatively different: the radial extent is wide and increases with height while the axial width remains narrow and fixed.

Availability note (English)

Available from Sandia National Laboratories (US)

Additional details

Publishing Information

Imprint Pagination
29 p. of viewgraphs
Report number
SAND--2005-4466C

Conference

Title
Powders and Grains
Dates
18-22 Jul 2005
Place
Stuttgart (Germany)

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
41017040
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
COMPUTERIZED SIMULATION; DISCRETE ORDINATE METHOD; GRANULAR MATERIALS; PARTICLE PROPERTIES; SHEAR
Descriptors DEC
CALCULATION METHODS; MATERIALS; SIMULATION

Optional Information

Contract/Grant/Project number
AC04-94AL85000
Funding organization
US Department of Energy (United States)