Forced silo discharge: Simulation and theory
arXiv:2509.04368 · doi:10.4279/PIP.170005
Abstract
We study, through discrete element simulations, the discharge of granular materials through a circular orifice on the base of a cylindrical silo forced by a surcharge. At the beginning of the discharge, for a high granular column, the flow rate scales as in the Beverloo equation for free discharge. However, we find that the flow rate attained at the end of the forced discharge scales as , with the bulk density, the pressure applied by the overweight, the orifice diameter and the silo diameter. We use the workenergy theorem to formulate an equation for the flow rate that predicts the scalings only in part. We discuss the new challenges offered by the phenomenology of strongly forced granular flows.
14 pages, 12 figures