International audienceTo better understand the velocity field and flowing layer structure, we have performed a detailed discrete element method study of the flow of monodisperse particles in a partially filled three-dimensional cylindrical rotating tumblers. Similar to what occurs near the poles in spherical and conical tumblers, recirculation cells (secondary flows) develop near the flat endwalls of a cylindrical tumbler in which particles near the surface drift axially toward the endwall, while particles deeper in the flowing layer drift axially toward the midlength of the tumbler. Another recirculation cell with the opposite sense develops next to each endwall recirculation cell, extending to the midlength of the tumbler. For a long enou...
The focus of this work is analysis of mixing in a rotating cylinder-a prototype system for mixing of...
\u3cp\u3eThe behavior of spherical particles flowing down a three-dimensional chute, inclined at fix...
The behavior of spherical particles flowing down a three-dimensional chute, inclined at fixed angle,...
International audienceTo better understand the velocity field and flowing layer structure, we have p...
International audienceTo better understand the velocity field and flowing layer structure, we have p...
International audienceFriction at the endwalls of partially-filled horizontal rotating tumblers indu...
Monodisperse and bidisperse granular flows are studied in rotating tumblers using DEM. In spherical ...
Monodisperse and bidisperse granular flows are studied in rotating tumblers using DEM. In spherical ...
International audienceModels of monodisperse particle flow in partially filled three-dimensional tum...
International audienceWalls in discrete element method simulations of granular flows are sometimes m...
An experimental and theoretical study is carried out of the flow of granular material in cylinders w...
An experimental and theoretical study is carried out of the flow of granular material in cylinders w...
An experimental study of the flow of different materials (steel balls, glass beads, and sand) in qua...
An experimental study of the flow of different materials (steel balls, glass beads, and sand) in qua...
Advisors: Nicholas A. Pohlman.Committee members: Pradip Majumdar; John Shelton.Includes bibliographi...
The focus of this work is analysis of mixing in a rotating cylinder-a prototype system for mixing of...
\u3cp\u3eThe behavior of spherical particles flowing down a three-dimensional chute, inclined at fix...
The behavior of spherical particles flowing down a three-dimensional chute, inclined at fixed angle,...
International audienceTo better understand the velocity field and flowing layer structure, we have p...
International audienceTo better understand the velocity field and flowing layer structure, we have p...
International audienceFriction at the endwalls of partially-filled horizontal rotating tumblers indu...
Monodisperse and bidisperse granular flows are studied in rotating tumblers using DEM. In spherical ...
Monodisperse and bidisperse granular flows are studied in rotating tumblers using DEM. In spherical ...
International audienceModels of monodisperse particle flow in partially filled three-dimensional tum...
International audienceWalls in discrete element method simulations of granular flows are sometimes m...
An experimental and theoretical study is carried out of the flow of granular material in cylinders w...
An experimental and theoretical study is carried out of the flow of granular material in cylinders w...
An experimental study of the flow of different materials (steel balls, glass beads, and sand) in qua...
An experimental study of the flow of different materials (steel balls, glass beads, and sand) in qua...
Advisors: Nicholas A. Pohlman.Committee members: Pradip Majumdar; John Shelton.Includes bibliographi...
The focus of this work is analysis of mixing in a rotating cylinder-a prototype system for mixing of...
\u3cp\u3eThe behavior of spherical particles flowing down a three-dimensional chute, inclined at fix...
The behavior of spherical particles flowing down a three-dimensional chute, inclined at fixed angle,...