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A Novel Particle-Based Approach for Modeling a Wet Vertical Stirred Media Mill

Simon Larsson, Juan Manuel Rodríguez Prieto

2021Englishmineral processingbeneficiationcomminutionflotationphysical separationstirred media mills

Abstract

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Modeling of wet stirred media mill processes is challenging since it requires the simultaneous modeling of the complex multiphysics in the interactions between grinding media, the moving internal agitator elements, and the grinding fluid. In the present study, a multiphysics model of an HIG5 pilot vertical stirred media mill with a nominal power of 7.5 kW is developed. The model is based on a particle-based coupled solver approach, where the grinding fluid is modeled with the particle finite element method (PFEM), the grinding media are modeled with the discrete element method (DEM), and the mill structure is modeled with the finite element method (FEM). The interactions between the different constituents are treated by loose (or weak) two-way couplings between the PFEM, DEM, and FEM models. Both water and a mineral slurry are used as grinding fluids, and they are modeled as Newtonian and non-Newtonian fluids, respectively. In the present work, a novel approach for transferring forces between grinding fluid and grinding media based on the Reynolds number is implemented.

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Cite This Work

@article{213e9abe-3204-4b7c-bebb-7e09b6edbedd,
  title={A Novel Particle-Based Approach for Modeling a Wet Vertical Stirred Media Mill},
  author={Simon Larsson and Juan Manuel Rodríguez Prieto},
  year={2021},
  language={English}
}
TY  - JOUR
TI  - A Novel Particle-Based Approach for Modeling a Wet Vertical Stirred Media Mill
AU  - Simon Larsson
AU  - Juan Manuel Rodríguez Prieto
PY  - 2021
LA  - English
ER  -

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