Granular materials are ubiquitous in our daily life and inherent in multitudinous industrial processes. Differences in the granular properties such as size and density inevitably induce segregation. By means of the discrete element method, a binary-size mixture in a three-dimensional rotating drum is numerically simulated to explore the segregation dynamics of the granular material along the axial direction. Snapshots of the distribution of the two particle types in the rotating drum are presented with respect to time to illustrate the spatial evolution of the size-induced segregation structure. The space-time plots of various axial characteristics indicate that (i) radial segregation does not affect the axial distribution of total mass and...
The Discrete Element Method (DEM) is used to study the segregation of a binary mixture of differing ...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
Differences in the material property of the granular material induce segregation which inevitably in...
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...
Segregation induced by size, shape, or density difference of the granular material is inevitable in ...
The mixing of binary particles in a short rotating drum has been studied by performing discrete elem...
We simulate the size segregation of a binary mixture of granular material in a half filled two-dimen...
We simulate the size segregation of a binary mixture of granular material in a half filled two-dimen...
We simulate the size segregation of a binary mixture of granular material in a half filled two-dimen...
Granular materials are mostly polydisperse, which gives rise to phenomena such as segregation that h...
AbstractMolecular dynamics simulation is used in studying the appearance of axial and radial segrega...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
The rich phase behavior of granular beds of bidisperse hard spherical particles in a rotating horizo...
The Discrete Element Method (DEM) is used to study the segregation of a binary mixture of differing ...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
Differences in the material property of the granular material induce segregation which inevitably in...
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...
Segregation induced by size, shape, or density difference of the granular material is inevitable in ...
The mixing of binary particles in a short rotating drum has been studied by performing discrete elem...
We simulate the size segregation of a binary mixture of granular material in a half filled two-dimen...
We simulate the size segregation of a binary mixture of granular material in a half filled two-dimen...
We simulate the size segregation of a binary mixture of granular material in a half filled two-dimen...
Granular materials are mostly polydisperse, which gives rise to phenomena such as segregation that h...
AbstractMolecular dynamics simulation is used in studying the appearance of axial and radial segrega...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
The rich phase behavior of granular beds of bidisperse hard spherical particles in a rotating horizo...
The Discrete Element Method (DEM) is used to study the segregation of a binary mixture of differing ...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...