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      Plug flow and the breakdown of Bagnold scaling in cohesive granular flows

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          Abstract

          Cohesive granular media flowing down an inclined plane are studied by discrete element simulations. Previous work on cohesionless granular media demonstrated that within the steady flow regime where gravitational energy is balanced by dissipation arising from intergrain forces, the velocity profile in the flow direction scales with depth in a manner consistent with the predictions of Bagnold. Here we demonstrate that this Bagnold scaling does not hold for the analogous steady-flows in cohesive granular media. We develop a generalization of the Bagnold constitutive relation to account for our observation and speculate as to the underlying physical mechanisms responsible for the different constitutive laws for cohesive and noncohesive granular media.

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          Author and article information

          Journal
          05 September 2005
          Article
          10.1103/PhysRevE.72.061301
          cond-mat/0509122
          7ebaba45-94ad-4b03-9e99-3d321880a1e4
          History
          Custom metadata
          8 pages, 10 figures
          cond-mat.soft

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