To evaluate fire-induced damage to bridge structures, the thermal–structure interaction (TSI) fire analysis method is proposed, verified and applied to examine the behaviour of bridge superstructures with steel–concrete composite sections and prestressed concrete (PSC) exposed to fire loading. The proposed TSI fire analysis consists of two different modelling parts: thermal transfer analysis and thermodynamic structural analysis. The body temperature inside the structure is first calculated using fire curve boundary conditions in an overall non-linear transient thermal transfer analysis. Thermodynamic structural analysis is then performed based on the entire temperature and heat distribution in the structure. To validate the proposed method, comparisons are made with standard fire test results: the temperature distribution and the deflection of the steel–concrete composite superstructure agreed closely with the results of the standard fire test. The proposed fire analysis method is finally applied to two bridges with different superstructures (steel–concrete composite and PSC) damaged by recent fire events in Korea.
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September 2018
Research Article|
December 18 2017
Post-fire damage assessment of Korean bridges using thermal–structure interaction fire analysis Available to Purchase
Sung-Hwan Yun;
Sung-Hwan Yun
Research Assistant Professor, Department of Civil and Environmental Engineering, Hanyang University, Seoul, Republic of Korea
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Jong-Su Jeon
Jong-Su Jeon
Assistant Professor, Department of Civil Engineering, Andong National University, Gyeongsangbuk-do, Republic of Korea (corresponding author: jsjeon@anu.ac.kr)
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Publisher: Emerald Publishing
Received:
May 07 2017
Revision Received:
September 14 2017
Accepted:
October 23 2017
Online ISSN: 1751-763X
Print ISSN: 0024-9831
ICE Publishing: All rights reserved
2017
Magazine of Concrete Research (2018) 70 (18): 938–953.
Article history
Received:
May 07 2017
Revision Received:
September 14 2017
Accepted:
October 23 2017
Citation
Yun S, Jeon J (2018), "Post-fire damage assessment of Korean bridges using thermal–structure interaction fire analysis". Magazine of Concrete Research, Vol. 70 No. 18 pp. 938–953, doi: https://doi.org/10.1680/jmacr.17.00208
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