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Granular flow out of a silo is studied experimentally and numerically. The time evolution of the discharge rate as well as the normal force (apparent weight) at the bottom of the container is monitored. We show, that particle stiffness has…

The flow of granular materials through constricted openings is important in many natural and industrial processes. These complex flows - featuring dense, dissipative flow in the bulk but low-dissipation, low density outpouring in the…

Soft Condensed Matter · Physics 2025-08-28 Ryan Kozlowski , J. Carter Luketich , Elijah Oshatz , Douglas J. Durian , Luis A. Pugnaloni

The flow rate of water through an orifice at the bottom of a container depends on the hydrostatic pressure whereas for a dry granular material is nearly constant. But what happens during the simultaneous discharge of grains and liquid from…

Fluid Dynamics · Physics 2018-04-18 A. M. Cervantes-Álvarez , S. Hidalgo-Caballero , F. Pacheco-Vázquez

The flow of dry granular materials from silos is of great practical interest in industry and of theoretical import for understanding multiphase dynamics. Recent studies have demonstrated that one way to control the rate of flow from a silo…

Soft Condensed Matter · Physics 2025-08-28 Ryan Kozlowski , Luis A. Pugnaloni

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…

Soft Condensed Matter · Physics 2025-12-24 Luis. A. Pugnaloni , Marcos A. Madrid , J. R. Darias

When a granular material is freely discharged from a silo through an orifice at its base, the flow rate remains constant throughout the discharge. However, it has been recently shown that, if the discharge is forced by an overweight, the…

Soft Condensed Matter · Physics 2020-05-15 Marcos A. Madrid , Luis A. Pugnaloni

The Beverloo scaling for the gravity flow of granular materials through orifices has two distinct universal features. On the one hand, the flow rate is independent of the height of the granular column. On the other hand, less well-known yet…

Soft Condensed Matter · Physics 2020-05-15 Marcos A. Madrid , J. R. Darias , Luis A. Pugnaloni

For the last 50 years, the flow of a granular material through an aperture has been intensely studied in gravity-driven vertical systems (e.g. silos and hoppers). Nevertheless, in many industrial applications, grains are horizontally…

Soft Condensed Matter · Physics 2015-06-22 Maria Alejandra Aguirre , Rosario De Schant , Jean-Christophe Géminard

The discharge of elongated particles from a silo with rotating bottom is investigated numerically. The introduction of a slight transverse shear reduces the flow rate $Q$ by up to 70% compared to stationary bottom, but the flow rate shows a…

Soft Condensed Matter · Physics 2022-10-26 Tivadar Pongó , Tamás Börzsönyi , Raúl Cruz Hidalgo

Very recently, To et al.~have experimentally explored granular flow in a cylindrical silo, with a bottom wall that rotates horizontally with respect to the lateral wall \cite{Kiwing2019}. Here, we numerically reproduce their experimental…

Soft Condensed Matter · Physics 2021-04-30 D. Hernández-Delfin , T. Pongó , K. To , T. Börzsönyi , R. C. Hidalgo

We study the outflow dynamics and clogging phenomena of mixtures of soft, elastic low-friction spherical grains and hard frictional spheres of similar size in a quasi-two-dimensional (2D) silo with narrow orifice at the bottom. Previous…

We measure the flow of granular materials inside a quasi-two dimensional silo as it drains and compare the data with some existing models. The particles inside the silo are imaged and tracked with unprecedented resolution in both space and…

Soft Condensed Matter · Physics 2007-05-23 Jaehyuk Choi , Arshad Kudrolli , Martin Z. Bazant

Discrete element method is conducted to investigate the bidisperse dense granular flow having big and small grains in a two dimensional hopper. A half-circular dynamical force arch is observed above the outlet and Beverloo's law is verified…

Soft Condensed Matter · Physics 2021-06-18 Decai Huang

The silo discharge process is studied by molecular dynamics simulations. The development of the velocity profile and the probability density function for the displacements in the horizontal and vertical axis are obtained. The PDFs obtained…

Statistical Mechanics · Physics 2009-11-11 R. Arevalo , A. Garcimartin , D. Maza

We used the discrete element method (DEM) to study the flow dynamics of a mixture of dumbbells and discs for two silo cases: 1. orifice situated on the lateral wall and 2. multiple orifices placed on the base of a two-dimensional silo. The…

Soft Condensed Matter · Physics 2024-06-19 A Vamsi Krishna Reddy , K. Anki Reddy

Since the early work of Hagen in 1852 and Beverloo et al. in 1961, the flow rate of granular material discharging through a circular orifice from a silo has been described by means of dimensional analysis and experimental fits, and…

Soft Condensed Matter · Physics 2020-05-15 J. R. Darias , Marcos A. Madrid , Luis A. Pugnaloni

We study the transport properties of particles draining from a silo using imaging and direct particle tracking. The particle displacements show a universal transition from super-diffusion to normal diffusion, as a function of the distance…

Soft Condensed Matter · Physics 2007-05-23 Jaehyuk Choi , A. Kudrolli , R. R. Rosales , Martin Z. Bazant

We report two-dimensional simulations of circular and polygonal grains passing through an aperture at the bottom of a silo. The mass flow rate for regular polygons is lower than for disks as observed by other authors. We show that both the…

Soft Condensed Matter · Physics 2015-05-22 Ezequiel Goldberg , C. Manuel Carlevaro , Luis A. Pugnaloni

We present a differential equation for the flow rate of granular materials during the discharge of a silo. This is based in the energy balance of the variable mass system in contrast with the traditional derivations based on heuristic…

Soft Condensed Matter · Physics 2017-08-02 Marcos A. Madrid , José R. Darias , Luis A. Pugnaloni

This study utilizes computations based on soft-particle discrete element method for investigating the scaling of velocity in a two-dimensional silo draining under gravity. We focus on the region situated directly above and in proximity to…

Soft Condensed Matter · Physics 2020-10-21 Ashish Bhateja
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