Studies on the behavior of Reinforced Concrete Short Column subjected to fire

The paper investigates the axial capacity of reinforced columns exposed to fire. The simplified method namely 500 °C isotherm method explained in Eurocode 2 is used to assess the capacity of the column. Finite element software ANSYS is used to perform the thermal analysis. A set of numerical studies...

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Main Authors: Aneesha Balaji, Muhamed Luquman K, Praveen Nagarajan, T.M. Madhavan Pillai
Format: Article
Language:English
Published: Elsevier 2016-03-01
Series:Alexandria Engineering Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S111001681500215X
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spelling doaj-5be7009597f44b12bf2fb6dfd1dd4aff2021-06-02T06:57:07ZengElsevierAlexandria Engineering Journal1110-01682016-03-0155147548610.1016/j.aej.2015.12.022Studies on the behavior of Reinforced Concrete Short Column subjected to fireAneesha BalajiMuhamed Luquman KPraveen NagarajanT.M. Madhavan PillaiThe paper investigates the axial capacity of reinforced columns exposed to fire. The simplified method namely 500 °C isotherm method explained in Eurocode 2 is used to assess the capacity of the column. Finite element software ANSYS is used to perform the thermal analysis. A set of numerical studies were carried out to quantify the effect of various parameters on short columns subjected to fire. The study is performed on columns of different cross-sections to investigate the effect of eight parameters, namely the thermal boundary conditions, grades of concrete, grades of steel, types of aggregate, distribution of reinforcement on column faces, concrete cover, load eccentricity and support conditions. The fire ratings based on various failure criteria are determined, and minimum rating is accepted as design fire rating. A simplified interaction curve to predict the failure of columns under fire subjected to axial load and uniaxial moment for square cross-sections was also developed.http://www.sciencedirect.com/science/article/pii/S111001681500215XReinforced concreteFire ratingThermal profiles500 °C isotherm methodInteraction curves
collection DOAJ
language English
format Article
sources DOAJ
author Aneesha Balaji
Muhamed Luquman K
Praveen Nagarajan
T.M. Madhavan Pillai
spellingShingle Aneesha Balaji
Muhamed Luquman K
Praveen Nagarajan
T.M. Madhavan Pillai
Studies on the behavior of Reinforced Concrete Short Column subjected to fire
Alexandria Engineering Journal
Reinforced concrete
Fire rating
Thermal profiles
500 °C isotherm method
Interaction curves
author_facet Aneesha Balaji
Muhamed Luquman K
Praveen Nagarajan
T.M. Madhavan Pillai
author_sort Aneesha Balaji
title Studies on the behavior of Reinforced Concrete Short Column subjected to fire
title_short Studies on the behavior of Reinforced Concrete Short Column subjected to fire
title_full Studies on the behavior of Reinforced Concrete Short Column subjected to fire
title_fullStr Studies on the behavior of Reinforced Concrete Short Column subjected to fire
title_full_unstemmed Studies on the behavior of Reinforced Concrete Short Column subjected to fire
title_sort studies on the behavior of reinforced concrete short column subjected to fire
publisher Elsevier
series Alexandria Engineering Journal
issn 1110-0168
publishDate 2016-03-01
description The paper investigates the axial capacity of reinforced columns exposed to fire. The simplified method namely 500 °C isotherm method explained in Eurocode 2 is used to assess the capacity of the column. Finite element software ANSYS is used to perform the thermal analysis. A set of numerical studies were carried out to quantify the effect of various parameters on short columns subjected to fire. The study is performed on columns of different cross-sections to investigate the effect of eight parameters, namely the thermal boundary conditions, grades of concrete, grades of steel, types of aggregate, distribution of reinforcement on column faces, concrete cover, load eccentricity and support conditions. The fire ratings based on various failure criteria are determined, and minimum rating is accepted as design fire rating. A simplified interaction curve to predict the failure of columns under fire subjected to axial load and uniaxial moment for square cross-sections was also developed.
topic Reinforced concrete
Fire rating
Thermal profiles
500 °C isotherm method
Interaction curves
url http://www.sciencedirect.com/science/article/pii/S111001681500215X
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