Zhongzheng Wang
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Articles (13)
Partially saturated granular flow in a rotating drum: The role of cohesion
Partially saturated granular flows are common in various natural and industrial processes, such as landslides, mineral handling, and food processing. We conduct experiments and apply the discrete element method to study granular flows in rotating drums under partially saturated conditions. We focus on varying the strength of cohesion (surface tension) and rotation rate within the modes of rolling flow and cascading flow. With an increase in surface tension, a rolling mode can possess a steeper slope and correspondingly needs a higher rotation rate to transition to a cascading. The depth of the flowing region increases with increasing cohesion, while the sensitivity is reduced for cases of high cohesion. We propose a dimensionless number CE that captures the combined effects of rotation, gravity, and cohesion on the dynamic angle of repose and flow depth. In addition, we extract statistical information on the formation of clusters within the flow. We find a power law relation between the cluster size distribution and its probability, which indicates that stronger cohesion can promote the formation of larger clusters, and we discuss how cohesion impact on flows manifested by cluster formation.
Year:
2023
Collaborators (8)
Christopher Soriano From
The University of Manchester
Yixiang Gan
-
Benjy Marks
Lecturer in Geomechanics
University of Sydney
Yuantong Gu
Queensland University of Technology
Hyogu Jeong
Queensland University of Technology
Jean-Michel Pereira
Full Professor
École des Ponts ParisTech
Saman Aryana
Associate Professor
University of Wyoming
Emilie Sauret
Professor at Queensland University of Technology
Queensland University of Technology

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