The axial dispersion of approximately monosized particles in rolling mode in rotating cylinders with bulk flow is examined using a Monte Carlo model and discrete element method (DEM) simulations. The Monte Carlo model predicts that the mean square displacement relative to the mean axial displacement of the bed undergoes oscillations in time. The nature of these oscillations depends on the fill level of the cylinder and the extent of particle mixing during avalanches. When the cylinder is half full the Monte Carlo model predicts undamped oscillations, whereas a filling fraction of 0.26 produces oscillations whose amplitude decreases with time. If mixing during avalanches is assumed to be perfect then the oscillations occur about a linear inc...
The dispersion characteristics of the granular material frequently encountered in many chemical indu...
A discrete element model (DEM) is used to investigate the behavior of spherical particles flowing do...
The behavior of spherical particles flowing down a three-dimensional chute, inclined at fixed angle,...
The axial dispersion of approximately monosized particles in rolling mode in rotating cylinders with...
The granular motion of binary-size mixture in a three-dimensional rotating drum operating in the rol...
The granular motion of binary-size mixture in a three-dimensional rotating drum operating in the rol...
The Discrete Element Method (DEM) is used to study the segregation of a binary mixture of differing ...
The focus of this work is analysis of mixing in a rotating cylinder-a prototype system for mixing of...
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...
Applying periodic boundary conditions to DEM simulations of granular motion in horizontal, rotating ...
Granular materials are mostly polydisperse, which gives rise to phenomena such as segregation that h...
A model for the axial transport of solids in a horizontal rotating cylinder is obtained. The physica...
A model for the axial transport of solids in a horizontal rotating cylinder is obtained. The physica...
The behavior of spherical particles flowing down a three-dimensional chute, inclined at fixed angle,...
The dispersion characteristics of the granular material frequently encountered in many chemical indu...
A discrete element model (DEM) is used to investigate the behavior of spherical particles flowing do...
The behavior of spherical particles flowing down a three-dimensional chute, inclined at fixed angle,...
The axial dispersion of approximately monosized particles in rolling mode in rotating cylinders with...
The granular motion of binary-size mixture in a three-dimensional rotating drum operating in the rol...
The granular motion of binary-size mixture in a three-dimensional rotating drum operating in the rol...
The Discrete Element Method (DEM) is used to study the segregation of a binary mixture of differing ...
The focus of this work is analysis of mixing in a rotating cylinder-a prototype system for mixing of...
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...
Applying periodic boundary conditions to DEM simulations of granular motion in horizontal, rotating ...
Granular materials are mostly polydisperse, which gives rise to phenomena such as segregation that h...
A model for the axial transport of solids in a horizontal rotating cylinder is obtained. The physica...
A model for the axial transport of solids in a horizontal rotating cylinder is obtained. The physica...
The behavior of spherical particles flowing down a three-dimensional chute, inclined at fixed angle,...
The dispersion characteristics of the granular material frequently encountered in many chemical indu...
A discrete element model (DEM) is used to investigate the behavior of spherical particles flowing do...
The behavior of spherical particles flowing down a three-dimensional chute, inclined at fixed angle,...