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 14 result(s).

Title Author(s) Year Source Publisher
Local lubrication model for spherical particles within incompressible Navier-Stokes flows B. Lambert, L. Weynans, M. Bergmann 2019 Physical Review E American Physical Society
A Lagrangian-based SPH-DEM model for fluid–solid interaction with free surface flow in two dimensions C. Zhou, Q. Jiang, Y. Tang 2018 Applied Mathematical Modelling Elsevier
Study on the void reduction behaviour of porous asphalt pavement based on discrete element method L. Wang, W. Zhou, X. Huang 2016 International Journal of Pavement Engineering Taylor & Francis
Simulation of plant cell shrinkage during drying – A SPH–DEM approach H. C. P. Karunasena, R. J. Brown, W. Senadeera, Y. T. Gu 2014 Engineering Analysis with Boundary Elements Elsevier
A Saturated Discrete Particle Model And Characteristic Based Sph Method In Granular Materials D. C. Sheng, X. Chu, X. Li 2007 International Journal for Numerical Methods in Engineering Wiley-VCH
Comparative DEM-CFD study of binary interaction and acoustic agglomeration of aerosol microparticles at low frequencies A. Kačeniauskas, A. Maknickas, D. Vainorius, R. Kačianauskas, R. Pacevic, V. Rimsa 2018 Chemical Engineering Research and Design Elsevier
Extended kinetic theory applied to inclined granular flows: role of boundaries D. Berzi, D. Gollin, E. T. Bowman 2017 Granular Matter Springer
Deformation mechanisms of idealised cermets under multi-axial loading A. Goel, E. Bele, E. G. Pickering, F. Pierron, G. Borstnar, K. Danas, O. L. Katsamenis, V.S. Deshpande 2017 Journal of the Mechanics and Physics of Solids Elsevier
Incorporating floating surface objects into a fully dispersive surface wave model F. Shi, J. Calantoni, J. T. Kirby, J. Veeramony, M. D. Orzech, S. Bateman 2016 Ocean Modelling Elsevier
Adapting the discrete element method to simulation of acoustic agglomeration of aerosol particles A. Maknickas, D. Markauskas, R. Kačianauskas 2015 AIP Conference Proceedings American Institute of Physics