APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE

Detalhes bibliográficos
Autor(a) principal: Dyer, Paulo Paiva Oliveira Leite
Data de Publicação: 2023
Outros Autores: Lauer Coppio, Gustavo José, de Simones Cividanes, Luciana, Silva, Silvelene Alessandra, Gutierrez Klinsky, Luis Miguel, Betioli Ribeiro, Dimas, Geimba de Lima, Maryangela
Tipo de documento: Artigo
Idioma: por
Título da fonte: Revista UniVap (online)
Texto Completo: https://revista.univap.br/index.php/revistaunivap/article/view/4431
Resumo: Industrial waste reusing, such as Waste Foundry Sand (WFS) is an alternative to reducing mineral aggregates use. This waste is similar to the aggregates; however, it is necessary to prove its technical viability. In this sense, computational models by Finite Element Methods (FEM) complement empirical results, simulating the behavior of this alternative pave. In this paper, a computational model was built using FEM, simulating the behavior of Hot Mix Asphalt (HMA) containing WFS as an aggregate in the Abaqus software environment. This model was validated by comparing response data with empirical results. And then, analyzed for its mechanical behavior and in two case studies. The results obtained were satisfactory when compared to empirical results. Confirming the applicability of FEM in road engineering, particularly in HMA containing WFS.
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spelling APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATEAPLICAÇÃO DO MÉTODO DE ELEMENTOS FINITOS NA ANÁLISE DE CONCRETO ASFÁLTICO CONTENDO RAF COMO AGREGADOFEMWFSResilience ModuleAsphalt pavingAggregatesAlternative materialsComputational analysisSimulationFinite Element MethodComputer modelsFEMWFSFoundry SandIndustrial wasteMEFRAFMódulo de resiliênciaPavimentação asfálticaAgregadosMateriais alternativosAnálise computacionalSimulaçãoMétodo por Elementos FinitosModelos computacionisMEFRAFAreia de FundiçãoResíduos industriaisIndustrial waste reusing, such as Waste Foundry Sand (WFS) is an alternative to reducing mineral aggregates use. This waste is similar to the aggregates; however, it is necessary to prove its technical viability. In this sense, computational models by Finite Element Methods (FEM) complement empirical results, simulating the behavior of this alternative pave. In this paper, a computational model was built using FEM, simulating the behavior of Hot Mix Asphalt (HMA) containing WFS as an aggregate in the Abaqus software environment. This model was validated by comparing response data with empirical results. And then, analyzed for its mechanical behavior and in two case studies. The results obtained were satisfactory when compared to empirical results. Confirming the applicability of FEM in road engineering, particularly in HMA containing WFS.O reuso de resíduos industriais, como Resíduo de Areia de Fundição (RAF), é uma alternativa para redução do uso de agregados minerais. Estes resíduos são similares aos agregados utilizados na pavimentação asfáltica; todavia, é preciso comprovar sua viabilidade técnica. Neste sentido, modelos computacionais por Métodos de Elementos Finitos (MEF), complementam resultados empíricos, simulando o comportamento deste pavimento alternativo. Neste artigo foi construído um modelo computacional com MEF, simulando o comportamento do Concreto Betuminoso Usinado à Quente (CBUQ) contendo RAF como agregado no ambiente do software Abaqus. O modelo foi validado ao comparar dados resposta com resultados empíricos. Em seguida foi analisando quanto ao seu comportamento mecânico e em dois estudos de caso. Os resultados obtidos foram satisfatórios quando comparados a resultados empíricos. Confirmando a aplicabilidade do MEF na engenharia rodoviária, particularmente em CBUQ contendo RAFIBICT2023-10-04info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionTexto para portuguêsapplication/pdfhttps://revista.univap.br/index.php/revistaunivap/article/view/443110.18066/revistaunivap.v29i63.4431Revista Univap; Vol. 29 No. 63 (2023): Revista UnivapRevista Univap; v. 29 n. 63 (2023): Revista Univap2237-17531517-327510.18066/revistaunivap.v29i63reponame:Revista UniVap (online)instname:Universidade do Vale do Paraíba (Univap)instacron:UNIVAPporhttps://revista.univap.br/index.php/revistaunivap/article/view/4431/2258Brasil; ContemporâneoCopyright (c) 2023 Revista Univaphttps://creativecommons.org/licenses/by/4.0info:eu-repo/semantics/openAccessDyer, Paulo Paiva Oliveira LeiteLauer Coppio, Gustavo José de Simones Cividanes, LucianaSilva, Silvelene AlessandraGutierrez Klinsky, Luis Miguel Betioli Ribeiro, DimasGeimba de Lima, Maryangela2023-09-19T13:38:38Zoai:ojs.biblioteca.univap.br:article/4431Revistahttps://revista.univap.br/index.php/revistaunivapPRIhttps://revista.univap.br/index.php/revistaunivap/oairevista@univap.br2237-17532237-1753opendoar:2023-09-19T13:38:38Revista UniVap (online) - Universidade do Vale do Paraíba (Univap)false
dc.title.none.fl_str_mv APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE
APLICAÇÃO DO MÉTODO DE ELEMENTOS FINITOS NA ANÁLISE DE CONCRETO ASFÁLTICO CONTENDO RAF COMO AGREGADO
title APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE
spellingShingle APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE
Dyer, Paulo Paiva Oliveira Leite
FEM
WFS
Resilience Module
Asphalt paving
Aggregates
Alternative materials
Computational analysis
Simulation
Finite Element Method
Computer models
FEM
WFS
Foundry Sand
Industrial waste
MEF
RAF
Módulo de resiliência
Pavimentação asfáltica
Agregados
Materiais alternativos
Análise computacional
Simulação
Método por Elementos Finitos
Modelos computacionis
MEF
RAF
Areia de Fundição
Resíduos industriais
title_short APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE
title_full APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE
title_fullStr APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE
title_full_unstemmed APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE
title_sort APPLICATION OF FINITE ELEMENT METHOD ANALYSIS OF HOT MIX ASPHALT WITH WFS AS AN AGGREGATE
author Dyer, Paulo Paiva Oliveira Leite
author_facet Dyer, Paulo Paiva Oliveira Leite
Lauer Coppio, Gustavo José
de Simones Cividanes, Luciana
Silva, Silvelene Alessandra
Gutierrez Klinsky, Luis Miguel
Betioli Ribeiro, Dimas
Geimba de Lima, Maryangela
author_role author
author2 Lauer Coppio, Gustavo José
de Simones Cividanes, Luciana
Silva, Silvelene Alessandra
Gutierrez Klinsky, Luis Miguel
Betioli Ribeiro, Dimas
Geimba de Lima, Maryangela
author2_role author
author
author
author
author
author
dc.contributor.author.fl_str_mv Dyer, Paulo Paiva Oliveira Leite
Lauer Coppio, Gustavo José
de Simones Cividanes, Luciana
Silva, Silvelene Alessandra
Gutierrez Klinsky, Luis Miguel
Betioli Ribeiro, Dimas
Geimba de Lima, Maryangela
dc.subject.por.fl_str_mv FEM
WFS
Resilience Module
Asphalt paving
Aggregates
Alternative materials
Computational analysis
Simulation
Finite Element Method
Computer models
FEM
WFS
Foundry Sand
Industrial waste
MEF
RAF
Módulo de resiliência
Pavimentação asfáltica
Agregados
Materiais alternativos
Análise computacional
Simulação
Método por Elementos Finitos
Modelos computacionis
MEF
RAF
Areia de Fundição
Resíduos industriais
topic FEM
WFS
Resilience Module
Asphalt paving
Aggregates
Alternative materials
Computational analysis
Simulation
Finite Element Method
Computer models
FEM
WFS
Foundry Sand
Industrial waste
MEF
RAF
Módulo de resiliência
Pavimentação asfáltica
Agregados
Materiais alternativos
Análise computacional
Simulação
Método por Elementos Finitos
Modelos computacionis
MEF
RAF
Areia de Fundição
Resíduos industriais
description Industrial waste reusing, such as Waste Foundry Sand (WFS) is an alternative to reducing mineral aggregates use. This waste is similar to the aggregates; however, it is necessary to prove its technical viability. In this sense, computational models by Finite Element Methods (FEM) complement empirical results, simulating the behavior of this alternative pave. In this paper, a computational model was built using FEM, simulating the behavior of Hot Mix Asphalt (HMA) containing WFS as an aggregate in the Abaqus software environment. This model was validated by comparing response data with empirical results. And then, analyzed for its mechanical behavior and in two case studies. The results obtained were satisfactory when compared to empirical results. Confirming the applicability of FEM in road engineering, particularly in HMA containing WFS.
publishDate 2023
dc.date.none.fl_str_mv 2023-10-04
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
Texto para português
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv https://revista.univap.br/index.php/revistaunivap/article/view/4431
10.18066/revistaunivap.v29i63.4431
url https://revista.univap.br/index.php/revistaunivap/article/view/4431
identifier_str_mv 10.18066/revistaunivap.v29i63.4431
dc.language.iso.fl_str_mv por
language por
dc.relation.none.fl_str_mv https://revista.univap.br/index.php/revistaunivap/article/view/4431/2258
dc.rights.driver.fl_str_mv Copyright (c) 2023 Revista Univap
https://creativecommons.org/licenses/by/4.0
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Copyright (c) 2023 Revista Univap
https://creativecommons.org/licenses/by/4.0
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.coverage.none.fl_str_mv Brasil; Contemporâneo
dc.publisher.none.fl_str_mv IBICT
publisher.none.fl_str_mv IBICT
dc.source.none.fl_str_mv Revista Univap; Vol. 29 No. 63 (2023): Revista Univap
Revista Univap; v. 29 n. 63 (2023): Revista Univap
2237-1753
1517-3275
10.18066/revistaunivap.v29i63
reponame:Revista UniVap (online)
instname:Universidade do Vale do Paraíba (Univap)
instacron:UNIVAP
instname_str Universidade do Vale do Paraíba (Univap)
instacron_str UNIVAP
institution UNIVAP
reponame_str Revista UniVap (online)
collection Revista UniVap (online)
repository.name.fl_str_mv Revista UniVap (online) - Universidade do Vale do Paraíba (Univap)
repository.mail.fl_str_mv revista@univap.br
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