Non-Fickian macroscopic model of axial diffusion of granular materials in a long cylindrical tumbler
arXiv:1902.01200 · doi:10.1016/j.mechrescom.2023.104100
Abstract
We provide new concepts for understanding transport phenomena in flows of granular materials by using a non-Fickian macroscopic model of axial diffusion of a granular material in a finite cylindrical tumbler. The model accounts for diffusion induced by particle collisions only in a thin surface flowing layer due to localization of shear within the cross-section of the drum. All model parameters are related to measurable quantities in a granular flow. It is shown that the proposed model is a member of the general class of linear constitutive relations with memory. An exact solution for the spreading of a finite-width pulse initial condition under the proposed non-Fickian model is derived and compared to the solution of a Fickian model (i.e., the ``classical'' diffusion equation).
8 pages, 3 figures; v3: updates and filled in some details; v4: published in a Mechanics Research Communications Special Issue in Memory of Prof. Denis L. Blackmore