Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods

Descripción del Articulo

Simulations that calculate the breakage of a given material allow for estimating the particle size produced by comminution equipment. However, conducting these simulations requires a significant amount of time and incurs high computational costs due to the progressive increase in the number of parti...

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Detalles Bibliográficos
Autores: Castro, M.A., Yarasca, J., Castro, A.J., Mantari, J.L.
Formato: artículo
Fecha de Publicación:2023
Institución:Universidad Nacional de Ingeniería
Repositorio:UNI-Tesis
Lenguaje:inglés
OAI Identifier:oai:cybertesis.uni.edu.pe:20.500.14076/29121
Enlace del recurso:http://hdl.handle.net/20.500.14076/29121
https://doi.org/10.22055/jacm.2023.43372.4069
Nivel de acceso:acceso abierto
Materia:Simulation with Solid Particles
Impact Breakage
Breakage Model
Breakage severity
https://purl.org/pe-repo/ocde/ford#1.03.03
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dc.title.en.fl_str_mv Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods
title Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods
spellingShingle Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods
Castro, M.A.
Simulation with Solid Particles
Impact Breakage
Breakage Model
Breakage severity
https://purl.org/pe-repo/ocde/ford#1.03.03
title_short Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods
title_full Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods
title_fullStr Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods
title_full_unstemmed Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods
title_sort Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methods
dc.creator.none.fl_str_mv Mantari, J.L.
Castro, A.J.
Yarasca, J.
Castro, M.A.
author Castro, M.A.
author_facet Castro, M.A.
Yarasca, J.
Castro, A.J.
Mantari, J.L.
author_role author
author2 Yarasca, J.
Castro, A.J.
Mantari, J.L.
author2_role author
author
author
dc.contributor.author.fl_str_mv Castro, M.A.
Yarasca, J.
Castro, A.J.
Mantari, J.L.
dc.subject.en.fl_str_mv Simulation with Solid Particles
Impact Breakage
Breakage Model
Breakage severity
topic Simulation with Solid Particles
Impact Breakage
Breakage Model
Breakage severity
https://purl.org/pe-repo/ocde/ford#1.03.03
dc.subject.ocde.es.fl_str_mv https://purl.org/pe-repo/ocde/ford#1.03.03
description Simulations that calculate the breakage of a given material allow for estimating the particle size produced by comminution equipment. However, conducting these simulations requires a significant amount of time and incurs high computational costs due to the progressive increase in the number of particles during the breakage events. This challenge has prompted the exploration of alternatives, such as employing impact energies present in simulations with solid particles. This study examines the application of two breakage models to particle speeds, analyzing the correlation between the t10 value obtained from simulations using solid particles and the value obtained when simulations include breakage. The findings reveal a linear relationship between the results obtained from simulations with breakage and those with solid particles for a rotor that primarily impacts particles during their initial collisions. This relationship holds true for variations in rotor RPM as well as fluctuations in feed flow.
publishDate 2023
dc.date.accessioned.none.fl_str_mv 2026-03-30T22:07:57Z
dc.date.available.none.fl_str_mv 2026-03-30T22:07:57Z
dc.date.issued.fl_str_mv 2023-10
dc.type.es.fl_str_mv info:eu-repo/semantics/article
dc.type.version.es.fl_str_mv http://purl.org/coar/version/c_970fb48d4fbd8a85
format article
dc.identifier.uri.none.fl_str_mv http://hdl.handle.net/20.500.14076/29121
dc.identifier.doi.es.fl_str_mv https://doi.org/10.22055/jacm.2023.43372.4069
url http://hdl.handle.net/20.500.14076/29121
https://doi.org/10.22055/jacm.2023.43372.4069
dc.language.iso.en.fl_str_mv eng
language eng
dc.relation.isPartOf.es.fl_str_mv urn:issn:2383-4536
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eu_rights_str_mv openAccess
rights_invalid_str_mv http://creativecommons.org/licenses/by-nc-nd/4.0/
dc.format.es.fl_str_mv application/pdf
dc.publisher.es.fl_str_mv Shahid Chamran University of Ahvaz
dc.source.es.fl_str_mv Universidad Nacional de Ingeniería
Repositorio Institucional - UNI
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spelling Castro, M.A.Yarasca, J.Castro, A.J.Mantari, J.L.Mantari, J.L.Castro, A.J.Yarasca, J.Castro, M.A.2026-03-30T22:07:57Z2026-03-30T22:07:57Z2023-10http://hdl.handle.net/20.500.14076/29121https://doi.org/10.22055/jacm.2023.43372.4069Simulations that calculate the breakage of a given material allow for estimating the particle size produced by comminution equipment. However, conducting these simulations requires a significant amount of time and incurs high computational costs due to the progressive increase in the number of particles during the breakage events. This challenge has prompted the exploration of alternatives, such as employing impact energies present in simulations with solid particles. This study examines the application of two breakage models to particle speeds, analyzing the correlation between the t10 value obtained from simulations using solid particles and the value obtained when simulations include breakage. The findings reveal a linear relationship between the results obtained from simulations with breakage and those with solid particles for a rotor that primarily impacts particles during their initial collisions. This relationship holds true for variations in rotor RPM as well as fluctuations in feed flow.Submitted by Quispe Rabanal Flavio (flaviofime@hotmail.com) on 2026-03-30T22:07:56Z No. of bitstreams: 1 castro_m.pdf: 2288322 bytes, checksum: 3fa851626c59a7b8ba86ea80bc79b175 (MD5)Made available in DSpace on 2026-03-30T22:07:57Z (GMT). No. of bitstreams: 1 castro_m.pdf: 2288322 bytes, checksum: 3fa851626c59a7b8ba86ea80bc79b175 (MD5) Previous issue date: 2023-10Este trabajo fue financiado por el Fondo Nacional de Desarrollo Científico, Tecnológico y de Innovación Tecnológica (Fondecyt - Perú) en el marco del "Desarrollo de materiales avanzados para el diseño de nuevos productos y servicios tecnológicos para la minería Peruana" [número de contrato 032-2019]application/pdfengShahid Chamran University of Ahvazinfo:eu-repo/semantics/openAccesshttp://creativecommons.org/licenses/by-nc-nd/4.0/Universidad Nacional de IngenieríaRepositorio Institucional - UNIreponame:UNI-Tesisinstname:Universidad Nacional de Ingenieríainstacron:UNISimulation with Solid ParticlesImpact BreakageBreakage ModelBreakage severityhttps://purl.org/pe-repo/ocde/ford#1.03.03Application of Breakage Models to Particle Speeds Simulated by Discrete Element Methodsinfo:eu-repo/semantics/articlehttp://purl.org/coar/version/c_970fb48d4fbd8a85urn:issn:2383-4536TEXTcastro_m.pdf.txtcastro_m.pdf.txtExtracted texttext/plain59145http://cybertesis.uni.edu.pe/bitstream/20.500.14076/29121/3/castro_m.pdf.txt1795f9a1ab40ddc443755783157dca56MD53LICENSElicense.txtlicense.txttext/plain; charset=utf-81748http://cybertesis.uni.edu.pe/bitstream/20.500.14076/29121/2/license.txt8a4605be74aa9ea9d79846c1fba20a33MD52ORIGINALcastro_m.pdfcastro_m.pdfapplication/pdf2288322http://cybertesis.uni.edu.pe/bitstream/20.500.14076/29121/1/castro_m.pdf3fa851626c59a7b8ba86ea80bc79b175MD5120.500.14076/29121oai:cybertesis.uni.edu.pe:20.500.14076/291212026-03-31 02:42:34.848Repositorio Institucional Universidad Nacional de Ingenieríarepositorio@uni.edu.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