In partially wet granular beds, liquid migrates between particles due to collisions and contacts. This, in turn, influences the flow behaviour of the granular bed. We investigate liquid redistribution in moving monodisperse particles in a rotating drum using Discrete Element Method (DEM) simulations. For weak capillary forces, liquid re-distribution, induced by the continuous flow of particles, leads to concentration of the liquid in the core of the bed, where the flow is quasi-static. High capillary forces reduce the surface flow speed and granular temperature. This decreases liquid bridges rupturing in the flowing layer, allowing the liquid to remain in the outer region of the bed
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...
The presence of liquids can significantly affect the dynamics of granular flow. This paper investiga...
Granular flow in rotating drums shows various phenomena important to both science and engineering. T...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
International audienceWe study the agglomeration process of wet granular materials in a rotating dru...
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...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
To get insight into the segregation process of a polydisperse granular materials flow, we numericall...
Axial mixing of wet particles in rotating drums was investigated by the discrete element method with...
The dynamic behaviour of granular flows is important in geo-mechanics and industrial applications, y...
International audienceIn this work, we study the agglomeration process of wet granular materials in ...
International audienceIn this work, we study the agglomeration process of wet granular materials in ...
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...
The presence of liquids can significantly affect the dynamics of granular flow. This paper investiga...
Granular flow in rotating drums shows various phenomena important to both science and engineering. T...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
International audienceWe study the agglomeration process of wet granular materials in a rotating dru...
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...
The impact of particle properties on segregation and mixing of bidisperse granular beds in a rotatin...
To get insight into the segregation process of a polydisperse granular materials flow, we numericall...
Axial mixing of wet particles in rotating drums was investigated by the discrete element method with...
The dynamic behaviour of granular flows is important in geo-mechanics and industrial applications, y...
International audienceIn this work, we study the agglomeration process of wet granular materials in ...
International audienceIn this work, we study the agglomeration process of wet granular materials in ...
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...
International audienceThe rolling granulator is an important device, in which agglomeration of fine ...