DEM Literature Database

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For copyright reasons only abstracts are available here. A link to the publisher’s website is provided, where access to full papers are subject to the respective publishers’ terms and conditions.

Search Results

We found 20 result(s).

Title Author(s) Year Source Publisher
Modular‐Based Simulation of Single Process Units M. Dosta 2019 Chemical & Engineering Technology Wiley
Advanced approach for simulation results saving from discrete element method M. Dosta, S. Dranishnykov 2019 Advances in Engineering Software Elsevier
Modelling of Mechanical Behavior of Biopolymer Alginate Aerogels Using the Bonded-Particle Model K. Jarolin, M. Dosta, P. Gurikov 2019 Molecules MDPI
Simulation-based investigation of core-shell agglomerates: Influence of spatial heterogeneity in particle sizes on breakage characteristics A. Spettl, M. Dosta, M. Weber, S.Heinrich, V. Schmidt 2017 Computational Materials Science Elsevier
Compartmental residence time estimation in batch granulators using a colourimetric image analysis algorithm and Discrete Element Modelling A. D. McGuire, J. Rosenboom, K. F. Lee, M. Dosta, S. Mosbach 2017 Advanced Powder Technology Elsevier
Development of a multi-compartment population balance model for high-shear wet granulation with discrete element method A. D. McGuire, K. F. Lee, M. Dosta, M. Kraft, S. Mosbach, S.Heinrich, W. Wagner 2017 Computers & Chemical Engineering Elsevier
Copula-based approximation of particle breakage as link between DEM and PBM A. Spettl, F. Klingner, M. Dosta, S.Heinrich, V. Schmidt 2017 Computers & Chemical Engineering Elsevier
Discrete element simulation of metal ceramic composite materials with varying metal content M. Dosta, M.R. da Silva, R. Besler, R. Janssen, S.Heinrich 2016 Journal of the European Ceramic Society Elsevier
Bonded-particle extraction and stochastic modeling of internal agglomerate structures A. Spettl, M. Dosta, M. Goslinska, S. Bachstein, S.Heinrich, V. Schmidt 2016 Advanced Powder Technology Elsevier
Numerical and experimental analysis of influence of granule microstructure on its compression breakage C. Wassgren, J. D. Litster, M. Dosta, S. Dale, S.Antonyuk, S.Heinrich 2016 Powder Technology Elsevier