Effect of rolling friction on wall pressure, discharge velocity and outflow of granular material from a flat-bottomed bin
Date
2012Author
Balevičius, Robertas
Sielamowicz, Irena
Mroz, Zenon
Kačianauskas, Rimantas
Metadata
Show full item recordAbstract
The present paper provides both experimental and DEM analyses of the filling and discharge of pea grains from a 3D flat-bottomed bin. In the DEM model, the fixed mean values of the experimentally determined single particle data, such as the particle density, Young's modulus, Poisson's ratio as well as the sliding and rolling friction coefficients were incorporated to analyse their effects on the macroscale indicators, such as the wall pressure, discharge velocities and material outflow parameters. The effect of rolling friction was studied based on the experimentally measured single particle rolling friction coefficient. This analysis is aimed at the quantitative prediction of flow parameters as related to the identification of material parameters.
