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Erschienen in: Fire Technology 2/2012

01.04.2012

Effect of Transient Creep Strain Model on the Behavior of Concrete Columns Subjected to Heating and Cooling

verfasst von: Thomas Gernay

Erschienen in: Fire Technology | Ausgabe 2/2012

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Abstract

In the numerical analysis of structures in fire, the material models that are used have important implications on the global behavior of the structure. In concrete, a particular phenomenon appears when subjected to high temperatures: the transient creep strain. Models integrating explicitly a term for transient creep strain have been proposed in the literature but, in the current Eurocode 2 model, there is no explicit term for transient creep strain. This phenomenon is included in the Eurocode 2 model, but it is implicitly considered in the mechanical strain term. A series of experimental fire tests on axially restrained concrete columns subjected to heating and cooling has been recently performed at South China University of Technology and described by Wu et al. (Fire Technol 46:231–249). In the original paper, it was shown that using the implicit model of Eurocode 2, the behavior of the columns cannot be simulated properly, especially during the cooling phase. The objective of the present paper is to perform again the fire tests simulations using a new formulation of the Eurocode 2 model that contains an explicit term for transient creep. In the first part of the paper, the explicit formulation of the Eurocode 2 model is presented. In the second part, the fire tests are modeled with the software SAFIR using, on the one hand, the implicit Eurocode model and, on the other hand, the new explicit model. It is shown that the transient creep model has significant implications on the global behavior of structural concrete members, as the residual axial load sustained by the columns at the end of the fire can differ by up to 25% of the initial applied load depending on the transient creep strain model that is used for the calculation. The experimental behavior is better matched with the new explicit model than with the current Eurocode model. Particularly, the results given by the Eurocode model during the cooling phase are unconservative as the residual axial load is overestimated. Finally, it is explained why, on the basis of an example, in a performance-based approach, these results can have important implications on the global fire resistance of a structure.

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Literatur
1.
Zurück zum Zitat Anderberg Y, Thelandersson S (1976) Stress and deformation characteristics of concrete at high temperatures: 2 experimental investigation and material behaviour model. Bulletin 54. Lund Institute of Technology, Sweden Anderberg Y, Thelandersson S (1976) Stress and deformation characteristics of concrete at high temperatures: 2 experimental investigation and material behaviour model. Bulletin 54. Lund Institute of Technology, Sweden
2.
Zurück zum Zitat Schneider U (1985) Properties of materials at high temperatures, concrete. RILEM. Schneider U (1985) Properties of materials at high temperatures, concrete. RILEM.
3.
Zurück zum Zitat Khoury G, Grainger B, Sullivan P (1985) Transient thermal strain of concrete: literature review, conditions within specimen and behaviour of individual constituents. Mag Concrete Res 132:131–144CrossRef Khoury G, Grainger B, Sullivan P (1985) Transient thermal strain of concrete: literature review, conditions within specimen and behaviour of individual constituents. Mag Concrete Res 132:131–144CrossRef
4.
Zurück zum Zitat Terro M (1998) Numerical modelling of the behaviour of concrete structures in fire. ACI Struct J 95:183–193 Terro M (1998) Numerical modelling of the behaviour of concrete structures in fire. ACI Struct J 95:183–193
5.
Zurück zum Zitat Li L, Purkiss J (2005) Stress-strain constitutive equations of concrete material at elevated temperatures. Fire Safety J 40:669–686MATHCrossRef Li L, Purkiss J (2005) Stress-strain constitutive equations of concrete material at elevated temperatures. Fire Safety J 40:669–686MATHCrossRef
6.
Zurück zum Zitat Law A, Gillie M (2008) Load induced thermal strain: implications for structural behaviour. In: Proceedings of the fifth international conference on structures in fire, Singapore, pp 448–496 Law A, Gillie M (2008) Load induced thermal strain: implications for structural behaviour. In: Proceedings of the fifth international conference on structures in fire, Singapore, pp 448–496
7.
Zurück zum Zitat Youssef MA, Moftah M (2007) General stress-strain relationship for concrete at elevated temperatures. Eng Struct 29:2618–2634.CrossRef Youssef MA, Moftah M (2007) General stress-strain relationship for concrete at elevated temperatures. Eng Struct 29:2618–2634.CrossRef
8.
Zurück zum Zitat Eurocode 2 (2004) Design of concrete structures, Part 1–2: structural fire design. Brussels. Eurocode 2 (2004) Design of concrete structures, Part 1–2: structural fire design. Brussels.
9.
Zurück zum Zitat Purkiss JA (1996) Fire safety engineering, design of structures. Butterworth Heinemann, Oxford Purkiss JA (1996) Fire safety engineering, design of structures. Butterworth Heinemann, Oxford
10.
Zurück zum Zitat Franssen J-M (2005) Plastic analysis of concrete structures subjected to fire. Proceedings of the workshop “Fire design of concrete structures: what now? what next?, pp 133–145 Franssen J-M (2005) Plastic analysis of concrete structures subjected to fire. Proceedings of the workshop “Fire design of concrete structures: what now? what next?, pp 133–145
11.
Zurück zum Zitat Fike RS, Kodur VKR (2009) An approach for evaluating the fire resistance of CFHSS columns under design fire scenarios. J Fire Protect Eng 19(4):229–259CrossRef Fike RS, Kodur VKR (2009) An approach for evaluating the fire resistance of CFHSS columns under design fire scenarios. J Fire Protect Eng 19(4):229–259CrossRef
12.
Zurück zum Zitat Wald F, Kallerova P (2009) Draft summary of results from fire test in Mokrsko 2008. ISBN 978-8004267-0, Ceska technika, Prague, 2009 Wald F, Kallerova P (2009) Draft summary of results from fire test in Mokrsko 2008. ISBN 978-8004267-0, Ceska technika, Prague, 2009
14.
Zurück zum Zitat Wu B, Li YH, Chen SL (2010) Effect of heating and cooling on axially restrained RC columns with special-shaped cross section. Fire Technol 46:231–249CrossRef Wu B, Li YH, Chen SL (2010) Effect of heating and cooling on axially restrained RC columns with special-shaped cross section. Fire Technol 46:231–249CrossRef
15.
Zurück zum Zitat Franssen J-M (2005) SAFIR, A thermal/structural program for modeling structures under fire. Eng J A.I.S.C. 42:143–158. Franssen J-M (2005) SAFIR, A thermal/structural program for modeling structures under fire. Eng J A.I.S.C. 42:143–158.
16.
Zurück zum Zitat Bazant P, Chern JC (1987) Stress-induced thermal and shrinkage strains in concrete. J Eng Mech ASCE 113:1493–1511CrossRef Bazant P, Chern JC (1987) Stress-induced thermal and shrinkage strains in concrete. J Eng Mech ASCE 113:1493–1511CrossRef
17.
Zurück zum Zitat Eurocode 2 (1995): Design of concrete structures, Part 1–2: structural fire design, European prestandard. Brussels. Eurocode 2 (1995): Design of concrete structures, Part 1–2: structural fire design, European prestandard. Brussels.
18.
Zurück zum Zitat Franssen J-M (1987) Etude du comportement au feu des structures mixtes acier-béton. PhD thesis, Collection des Publications de la F.S.A. de l’Univ. de Liège, no. 111, p 276. Franssen J-M (1987) Etude du comportement au feu des structures mixtes acier-béton. PhD thesis, Collection des Publications de la F.S.A. de l’Univ. de Liège, no. 111, p 276.
19.
Zurück zum Zitat Schneider U (1982) Behavior of concrete at high temperatures. Deutscher Ausschuss fur Stahlbeton, Berlin Schneider U (1982) Behavior of concrete at high temperatures. Deutscher Ausschuss fur Stahlbeton, Berlin
20.
Zurück zum Zitat Gernay T, Franssen JM (2010) Consideration of transient creep in the Eurocode constitutive model for concrete in the fire situation. In: Proceedings of the sixth international conference structures in fire. Michigan State University, East Lansing, pp 784–791 Gernay T, Franssen JM (2010) Consideration of transient creep in the Eurocode constitutive model for concrete in the fire situation. In: Proceedings of the sixth international conference structures in fire. Michigan State University, East Lansing, pp 784–791
21.
Zurück zum Zitat Williams-Leir G (1983) Creep of structural steel in fire: analytical expressions. Fire Mater 7(2):73–78CrossRef Williams-Leir G (1983) Creep of structural steel in fire: analytical expressions. Fire Mater 7(2):73–78CrossRef
22.
Zurück zum Zitat Bratina S, Saje M, Planinc I (2007) The effects of different strain contributions on the response of RC beams in fire. Eng Struct 29:418–430CrossRef Bratina S, Saje M, Planinc I (2007) The effects of different strain contributions on the response of RC beams in fire. Eng Struct 29:418–430CrossRef
Metadaten
Titel
Effect of Transient Creep Strain Model on the Behavior of Concrete Columns Subjected to Heating and Cooling
verfasst von
Thomas Gernay
Publikationsdatum
01.04.2012
Verlag
Springer US
Erschienen in
Fire Technology / Ausgabe 2/2012
Print ISSN: 0015-2684
Elektronische ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-011-0222-0

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