This paper presents the basic principles and details of the physical, mathematical and numerical models forming the main structure of the numerical analysis of the thermal, hydrol and mechanical behaviour of normal, high-performance and ultra-high performance concrete structures subjected to heating. A fully coupled non-linear formulation is designed to predict the behaviour and potential for spalling, of heated concrete structures for fire and nuclear reactor applications. Concrete is considered as a multiphase material consisting of a solid phase, two gas phases and three water phases. The physical model is described with emphasis being placed upon the real processes occurring in concrete during heated based on tests carried out in several major laboratories around Europe as part of the wider HITECO research programme. Examples of preliminary outputs are presented in the form of isoline diagrams compared with those obtained from experiment.
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April 2002
Research Article|
April 01 2002
Modelling of heated concrete Available to Purchase
G. A. Khoury;
G. A. Khoury
*
Department of Civil and Environmental Engineering, Imperial College, University of London
London, UK
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C. E. Majorana;
C. E. Majorana
†
Department of Construction and Transportation Engineering, University of Padua
Padua, Italy
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F. Pesavento;
F. Pesavento
†
Department of Construction and Transportation Engineering, University of Padua
Padua, Italy
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B. A. Schrefler
B. A. Schrefler
†
Department of Construction and Transportation Engineering, University of Padua
Padua, Italy
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Publisher: Emerald Publishing
Received:
June 26 2000
Revision Received:
October 10 2001
Accepted:
November 16 2001
Online ISSN: 1751-763X
Print ISSN: 0024-9831
© 2002 Thomas Telford Ltd
2002
Magazine of Concrete Research (2002) 54 (2): 77–101.
Article history
Received:
June 26 2000
Revision Received:
October 10 2001
Accepted:
November 16 2001
Citation
Khoury GA, Majorana CE, Pesavento F, Schrefler BA (2002), "Modelling of heated concrete". Magazine of Concrete Research, Vol. 54 No. 2 pp. 77–101, doi: https://doi.org/10.1680/macr.2002.54.2.77
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