Large Scale Industrial DEM Modeling. Cleary, P. W. In Discrete Element Methods, of Proceedings, pages 361–366. April, 2012.
Large Scale Industrial DEM Modeling [link]Paper  doi  abstract   bibtex   
Particle scale simulation of industrial particle flows using DEM (Discrete Element Method) offers the opportunity for better understanding the flow dynamics leading to improvements in equipment design and operation that can potentially lead to large increases in equipment and process efficiency, throughput or product quality. A range of large scale important industrial applications are presented here: 1) Assessment of sample bias for cross-stream samplers, 2) Segregation in a splitter bin, 3) Separation efficiency by a panel of a vibrating screen, 4) A grinding table for cement milling, and 5) Hard ore grinding: pilot and full size SAG mills. The DEM method used here is described in Cleary.
@incollection{cleary_large_2012,
	series = {Proceedings},
	title = {Large {Scale} {Industrial} {DEM} {Modeling}},
	isbn = {978-0-7844-0647-2},
	url = {https://ascelibrary.org/doi/10.1061/40647%28259%2963},
	abstract = {Particle scale simulation of industrial particle flows using DEM (Discrete Element Method) offers the opportunity for better understanding the flow dynamics leading to improvements in equipment design and operation that can potentially lead to large increases in equipment and process efficiency, throughput or product quality. A range of large scale important industrial applications are presented here: 1) Assessment of sample bias for cross-stream samplers, 2) Segregation in a splitter bin, 3) Separation efficiency by a panel of a vibrating screen, 4) A grinding table for cement milling, and 5) Hard ore grinding: pilot and full size SAG mills. The DEM method used here is described in Cleary.},
	urldate = {2025-04-07},
	booktitle = {Discrete {Element} {Methods}},
	author = {Cleary, Paul W.},
	month = apr,
	year = {2012},
	doi = {10.1061/40647(259)63},
	pages = {361--366},
}

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