Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method

To perform quasi-static tests on structural elements, reaction systems comprising slabs and walls are employed. This research aimed to assess the current state of a structure equipped with a reaction system composed of an "L"-shaped slab and wall. Computational programs were utilized for i...

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Autore principale: Morillo Valencia, Andreina Rosa (author)
Altri autori: Toapanta León, Carla Fernanda (author), Díaz Mendoza, Sigifredo Décimo (author), Arévalo Chafuel, Diego Armando (author), Herrera Quishpe, Melisa Natalia (author), Gómez Soto, Christian Michael (author)
Natura: article
Lingua:spa
Pubblicazione: 2024
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Accesso online:https://revistadigital.uce.edu.ec/index.php/INGENIO/article/view/5656
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author Morillo Valencia, Andreina Rosa
author2 Toapanta León, Carla Fernanda
Díaz Mendoza, Sigifredo Décimo
Arévalo Chafuel, Diego Armando
Herrera Quishpe, Melisa Natalia
Gómez Soto, Christian Michael
author2_role author
author
author
author
author
author_facet Morillo Valencia, Andreina Rosa
Toapanta León, Carla Fernanda
Díaz Mendoza, Sigifredo Décimo
Arévalo Chafuel, Diego Armando
Herrera Quishpe, Melisa Natalia
Gómez Soto, Christian Michael
author_role author
collection Revista Ingenio
dc.creator.none.fl_str_mv Morillo Valencia, Andreina Rosa
Toapanta León, Carla Fernanda
Díaz Mendoza, Sigifredo Décimo
Arévalo Chafuel, Diego Armando
Herrera Quishpe, Melisa Natalia
Gómez Soto, Christian Michael
dc.date.none.fl_str_mv 2024-02-14
dc.format.none.fl_str_mv application/pdf
text/html
dc.identifier.none.fl_str_mv https://revistadigital.uce.edu.ec/index.php/INGENIO/article/view/5656
10.29166/ingenio.v7i1.5656
dc.language.none.fl_str_mv spa
dc.publisher.none.fl_str_mv Universidad Central del Ecuador
dc.relation.none.fl_str_mv https://revistadigital.uce.edu.ec/index.php/INGENIO/article/view/5656/8210
https://revistadigital.uce.edu.ec/index.php/INGENIO/article/view/5656/8291
dc.rights.none.fl_str_mv http://creativecommons.org/licenses/by-nc-nd/4.0
info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv INGENIO; Vol. 7 No. 1 (2024): Development, Security and Innovation; 99-117
INGENIO; Vol. 7 Núm. 1 (2024): Desarrollo, Seguridad e Innovación; 99-117
2697-3243
2588-0829
reponame:Revista Ingenio
instname:Universidad Central del Ecuador
instacron:UCE
dc.subject.none.fl_str_mv modelación
método de elementos finitos (MEF)
sistema de reacción
muro
losa
ampliación
modeling
finite elment method (FEM)
reaction system
wall
slab
expansion
dc.title.none.fl_str_mv Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method
Modelación de un Muro y Losa de Reacción para Ensayos Cuasi-estáticos, Aplicando el Método de Elementos Finitos.
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
description To perform quasi-static tests on structural elements, reaction systems comprising slabs and walls are employed. This research aimed to assess the current state of a structure equipped with a reaction system composed of an "L"-shaped slab and wall. Computational programs were utilized for its evaluation, and the mechanical properties of the materials included in the mathematical model were derived from experimental tests. The results obtained indicate that the current capacity of the structure exceeds the demand. Additionally, the maximum load-bearing capacity of the reaction system was determined. Based on the verification of the existing structure, a design proposal is put forth for expanding the reaction wall with a maximum capacity of 490 [kN] and for the CIV infrastructure with an approximate area of 400 [m²]. This will contribute significantly to the advancement of scientific knowledge for the benefit of society.
eu_rights_str_mv openAccess
format article
id REVINGENIO_713037549f5efbcef9c5ec026b68f494
identifier_str_mv 10.29166/ingenio.v7i1.5656
instacron_str UCE
institution UCE
instname_str Universidad Central del Ecuador
language spa
network_acronym_str REVINGENIO
network_name_str Revista Ingenio
oai_identifier_str oai:revistadigital.uce.edu.ec:article/5656
publishDate 2024
publisher.none.fl_str_mv Universidad Central del Ecuador
reponame_str Revista Ingenio
repository.mail.fl_str_mv *
repository.name.fl_str_mv Revista Ingenio - Universidad Central del Ecuador
repository_id_str 0
rights_invalid_str_mv http://creativecommons.org/licenses/by-nc-nd/4.0
spelling Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element MethodModelación de un Muro y Losa de Reacción para Ensayos Cuasi-estáticos, Aplicando el Método de Elementos Finitos.Morillo Valencia, Andreina Rosa Toapanta León, Carla Fernanda Díaz Mendoza, Sigifredo Décimo Arévalo Chafuel, Diego ArmandoHerrera Quishpe, Melisa Natalia Gómez Soto, Christian Michaelmodelación método de elementos finitos (MEF)sistema de reacciónmurolosaampliaciónmodeling finite elment method (FEM)reaction systemwallslabexpansionTo perform quasi-static tests on structural elements, reaction systems comprising slabs and walls are employed. This research aimed to assess the current state of a structure equipped with a reaction system composed of an "L"-shaped slab and wall. Computational programs were utilized for its evaluation, and the mechanical properties of the materials included in the mathematical model were derived from experimental tests. The results obtained indicate that the current capacity of the structure exceeds the demand. Additionally, the maximum load-bearing capacity of the reaction system was determined. Based on the verification of the existing structure, a design proposal is put forth for expanding the reaction wall with a maximum capacity of 490 [kN] and for the CIV infrastructure with an approximate area of 400 [m²]. This will contribute significantly to the advancement of scientific knowledge for the benefit of society.Para realizar ensayos cuasi-estáticos en elementos estructurales se utilizan sistemas de reacción conformados por losas y muros. La presente investigación permitió conocer el estado actual de una estructura con un sistema de reacción compuesto por una losa y un muro en forma de “L”. Se emplearon programas computacionales para su revisión y las características mecánicas de los materiales colocados en el modelo matemático fueron obtenidos a través de ensayos experimentales. Los resultados obtenidos evidencian que la capacidad actual de la estructura es mayor a la demanda, adicionalmente para el sistema de reacción se determinó la carga máxima que resiste. A partir de la verificación de la estructura existente se propone el diseño de la ampliación del muro de reacción con una capacidad máxima de 490 [kN] y de la infraestructura del CIV con un área aproximada de 400[m²], lo cual generará un aporte científico al servicio de la sociedad.Universidad Central del Ecuador2024-02-14info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdftext/htmlhttps://revistadigital.uce.edu.ec/index.php/INGENIO/article/view/565610.29166/ingenio.v7i1.5656INGENIO; Vol. 7 No. 1 (2024): Development, Security and Innovation; 99-117INGENIO; Vol. 7 Núm. 1 (2024): Desarrollo, Seguridad e Innovación; 99-1172697-32432588-0829reponame:Revista Ingenioinstname:Universidad Central del Ecuadorinstacron:UCEspahttps://revistadigital.uce.edu.ec/index.php/INGENIO/article/view/5656/8210https://revistadigital.uce.edu.ec/index.php/INGENIO/article/view/5656/8291Derechos de autor 2024 Andreina Rosa Morillo Valencia, Carla Fernanda Toapanta León, Sigifredo Décimo Díaz Mendoza, Diego Armando Arévalo Chafuel, Melisa Natalia Herrera Quishpe, Christian Michael Gómez Sotohttp://creativecommons.org/licenses/by-nc-nd/4.0info:eu-repo/semantics/openAccess2025-07-17T17:30:11Zoai:revistadigital.uce.edu.ec:article/5656Portal de revistashttps://revistadigital.uce.edu.ec/Universidad públicahttps://uce.edu.ec/**Ecuador*2697-32432588-0829opendoar:02025-07-17T17:30:11Revista Ingenio - Universidad Central del Ecuadorfalse
spellingShingle Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method
Morillo Valencia, Andreina Rosa
modelación
método de elementos finitos (MEF)
sistema de reacción
muro
losa
ampliación
modeling
finite elment method (FEM)
reaction system
wall
slab
expansion
status_str publishedVersion
title Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method
title_full Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method
title_fullStr Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method
title_full_unstemmed Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method
title_short Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method
title_sort Modeling of a Wall and Reaction Slab for Quasi-Static Tests Using the Finite Element Method
topic modelación
método de elementos finitos (MEF)
sistema de reacción
muro
losa
ampliación
modeling
finite elment method (FEM)
reaction system
wall
slab
expansion
url https://revistadigital.uce.edu.ec/index.php/INGENIO/article/view/5656