Thermal analysis of steel-concrete composite cross sections via CS-ASA/FA

Abstract When exposed to high temperatures, such as in a fire situation, the physical and resistance characteristics of the materials employed in the structure deteriorate as the temperature increases. This fact promotes a considerable loss in the bearing capacity and stiffness of the structural sys...

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Main Authors: Dalilah Pires, Rafael Cesário Barros, Paulo Anderson Santana Rocha, Ricardo Azoubel da Mota Silveira
Format: Article
Language:English
Published: Fundação Gorceix
Series:REM: International Engineering Journal
Subjects:
FEM
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2018000200149&lng=en&tlng=en
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spelling doaj-5f43827aecf14c3ca4e0e0023debb8472020-11-24T22:14:50ZengFundação GorceixREM: International Engineering Journal2448-167X71214915710.1590/0370-44672016710155S2448-167X2018000200149Thermal analysis of steel-concrete composite cross sections via CS-ASA/FADalilah PiresRafael Cesário BarrosPaulo Anderson Santana RochaRicardo Azoubel da Mota SilveiraAbstract When exposed to high temperatures, such as in a fire situation, the physical and resistance characteristics of the materials employed in the structure deteriorate as the temperature increases. This fact promotes a considerable loss in the bearing capacity and stiffness of the structural system. The verification of a structure exposed to fire depends primarily and principally on the thermal analysis of the cross section of the structural element. This analysis permits determination of the temperature variation or temperature range in the element from the boundary conditions provided by the fire model adopted. As such, this study had the objective of performing a thermal analysis in a transient regime by means of a finite element method on steel-concrete composite cross sections that are employed in civil construction through use of the Computational System for Advanced Structural Analysis/Fire Analysis (CS-ASA/FA). Two cross sections are analyzed and the results obtained were satisfactory. In addition, different iterative solution processes were adopted in the analysis. Parametric studies were also performed related to the mesh variation of the finite elements and time increase. From the results, it was possible to conclude that CS-ASA/FA can supply the necessary information when a thermo-structural analysis is performed for the evaluation of strength and stiffness losses of the structural material when exposed to fire.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2018000200149&lng=en&tlng=enthermal analysisfiretemperaturecomposite cross sectionFEM
collection DOAJ
language English
format Article
sources DOAJ
author Dalilah Pires
Rafael Cesário Barros
Paulo Anderson Santana Rocha
Ricardo Azoubel da Mota Silveira
spellingShingle Dalilah Pires
Rafael Cesário Barros
Paulo Anderson Santana Rocha
Ricardo Azoubel da Mota Silveira
Thermal analysis of steel-concrete composite cross sections via CS-ASA/FA
REM: International Engineering Journal
thermal analysis
fire
temperature
composite cross section
FEM
author_facet Dalilah Pires
Rafael Cesário Barros
Paulo Anderson Santana Rocha
Ricardo Azoubel da Mota Silveira
author_sort Dalilah Pires
title Thermal analysis of steel-concrete composite cross sections via CS-ASA/FA
title_short Thermal analysis of steel-concrete composite cross sections via CS-ASA/FA
title_full Thermal analysis of steel-concrete composite cross sections via CS-ASA/FA
title_fullStr Thermal analysis of steel-concrete composite cross sections via CS-ASA/FA
title_full_unstemmed Thermal analysis of steel-concrete composite cross sections via CS-ASA/FA
title_sort thermal analysis of steel-concrete composite cross sections via cs-asa/fa
publisher Fundação Gorceix
series REM: International Engineering Journal
issn 2448-167X
description Abstract When exposed to high temperatures, such as in a fire situation, the physical and resistance characteristics of the materials employed in the structure deteriorate as the temperature increases. This fact promotes a considerable loss in the bearing capacity and stiffness of the structural system. The verification of a structure exposed to fire depends primarily and principally on the thermal analysis of the cross section of the structural element. This analysis permits determination of the temperature variation or temperature range in the element from the boundary conditions provided by the fire model adopted. As such, this study had the objective of performing a thermal analysis in a transient regime by means of a finite element method on steel-concrete composite cross sections that are employed in civil construction through use of the Computational System for Advanced Structural Analysis/Fire Analysis (CS-ASA/FA). Two cross sections are analyzed and the results obtained were satisfactory. In addition, different iterative solution processes were adopted in the analysis. Parametric studies were also performed related to the mesh variation of the finite elements and time increase. From the results, it was possible to conclude that CS-ASA/FA can supply the necessary information when a thermo-structural analysis is performed for the evaluation of strength and stiffness losses of the structural material when exposed to fire.
topic thermal analysis
fire
temperature
composite cross section
FEM
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2018000200149&lng=en&tlng=en
work_keys_str_mv AT dalilahpires thermalanalysisofsteelconcretecompositecrosssectionsviacsasafa
AT rafaelcesariobarros thermalanalysisofsteelconcretecompositecrosssectionsviacsasafa
AT pauloandersonsantanarocha thermalanalysisofsteelconcretecompositecrosssectionsviacsasafa
AT ricardoazoubeldamotasilveira thermalanalysisofsteelconcretecompositecrosssectionsviacsasafa
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