Temperatura superficial del puente vehicular en la avenida Jorge Gaitán Cortés con Avenida Quiroga

In the course of urban development, the progress in civil constructions has gradually improved, over the years. These are designed to maintain a specific resistance according to their purpose and use, therefore, it allows determining their period of life or usefulness, considering the different atmo...

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Autores principales: Rodríguez Rey, Natalie, Osorio Bustamante, Edison
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Publicado: Fondo Editorial Universidad Antonio Nariño 2025
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Acceso en línea:https://revistas.uan.edu.co/index.php/gresia/article/view/1886
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author Rodríguez Rey, Natalie
Osorio Bustamante, Edison
author_facet Rodríguez Rey, Natalie
Osorio Bustamante, Edison
author_sort Rodríguez Rey, Natalie
collection OJS
description In the course of urban development, the progress in civil constructions has gradually improved, over the years. These are designed to maintain a specific resistance according to their purpose and use, therefore, it allows determining their period of life or usefulness, considering the different atmospheric factors, one of them is solar radiation, which is fundamental as energy transfer from lightning. Solar towards the structure and irradiation, being light emissions imperceptible to the eye. Consequently, it presents deformations produced by the wear caused by abrasion due to the thermal change on the surface of each board. Therefore, this work analyzed the effect of thermal loading on the bridge under study, since atmospheric factors influence the fatigue of the structure.
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spelling revistas.uan.edu.co-article-18862025-05-11T04:32:56Z Surface temperature of the vehicular bridge on Jorge Gaitan Cortes Avenue and Quiroga Avenue. Temperatura superficial del puente vehicular en la avenida Jorge Gaitán Cortés con Avenida Quiroga Rodríguez Rey, Natalie Osorio Bustamante, Edison temperatura superficial radiación adaptación al cambio climático resiliencia urbana surface temperature radiation climate change adaptation urban resilience In the course of urban development, the progress in civil constructions has gradually improved, over the years. These are designed to maintain a specific resistance according to their purpose and use, therefore, it allows determining their period of life or usefulness, considering the different atmospheric factors, one of them is solar radiation, which is fundamental as energy transfer from lightning. Solar towards the structure and irradiation, being light emissions imperceptible to the eye. Consequently, it presents deformations produced by the wear caused by abrasion due to the thermal change on the surface of each board. Therefore, this work analyzed the effect of thermal loading on the bridge under study, since atmospheric factors influence the fatigue of the structure. En el transcurso del desarrollo urbano, el progreso en las construcciones civiles ha mejorado paulatinamente con el pasar de los años. Estas son diseñadas para mantener una resistencia específica según su propósito y uso, lo que permite determinar su periodo de vida o utilidad, considerando los diferentes factores atmosféricos; uno de ellos es la radiación solar, sea la transferencia de energía hacia la estructura y la irradiación, o a través de emisiones luminosas imperceptibles a la vista. Estos factores causan deformaciones producidas por el desgaste incitado por la abrasión a causa del cambio térmico sobre la superficie de cada tablero. Por ello, este trabajo analizó el efecto de la carga térmica en el puente en estudio, puesto que factores atmosféricos influyen en la fatiga de la estructura. Fondo Editorial Universidad Antonio Nariño 2025-05-11 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion application/pdf https://revistas.uan.edu.co/index.php/gresia/article/view/1886 GRESIA; Vol. 10 No. 10 (2022) GRESIA; Vol. 10 Núm. 10 (2022) 2145-0846 10.54104/gresia.v10n10 spa https://revistas.uan.edu.co/index.php/gresia/article/view/1886/gresia10 Derechos de autor 2024 GRESIA
spellingShingle temperatura superficial
radiación
adaptación al cambio climático
resiliencia urbana
surface temperature
radiation
climate change adaptation
urban resilience
Rodríguez Rey, Natalie
Osorio Bustamante, Edison
Temperatura superficial del puente vehicular en la avenida Jorge Gaitán Cortés con Avenida Quiroga
title Temperatura superficial del puente vehicular en la avenida Jorge Gaitán Cortés con Avenida Quiroga
title_alt Surface temperature of the vehicular bridge on Jorge Gaitan Cortes Avenue and Quiroga Avenue.
title_full Temperatura superficial del puente vehicular en la avenida Jorge Gaitán Cortés con Avenida Quiroga
title_fullStr Temperatura superficial del puente vehicular en la avenida Jorge Gaitán Cortés con Avenida Quiroga
title_full_unstemmed Temperatura superficial del puente vehicular en la avenida Jorge Gaitán Cortés con Avenida Quiroga
title_short Temperatura superficial del puente vehicular en la avenida Jorge Gaitán Cortés con Avenida Quiroga
title_sort temperatura superficial del puente vehicular en la avenida jorge gaitan cortes con avenida quiroga
topic temperatura superficial
radiación
adaptación al cambio climático
resiliencia urbana
surface temperature
radiation
climate change adaptation
urban resilience
topic_facet temperatura superficial
radiación
adaptación al cambio climático
resiliencia urbana
surface temperature
radiation
climate change adaptation
urban resilience
url https://revistas.uan.edu.co/index.php/gresia/article/view/1886
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AT rodriguezreynatalie temperaturasuperficialdelpuentevehicularenlaavenidajorgegaitancortesconavenidaquiroga
AT osoriobustamanteedison temperaturasuperficialdelpuentevehicularenlaavenidajorgegaitancortesconavenidaquiroga
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