The progressive collapse behaviour of reinforced concrete (RC) structures requires consideration of material and geometric non-linearity, concrete crushing and rebar fracture. Compressive arch action (CAA) and catenary action (CTA) are the main resisting mechanisms against progressive collapse following a column loss. Hence, many studies have concentrated on the development of CAA and CTA in RC beams, but without considering the effect of bar fracture and the reduction in beam effective depth due to concrete crushing. Taking these additional factors into account, an analytical model to predict the structural behaviour of RC beams under a column removal scenario was developed. The proposed model was evaluated and validated with the available experimental results. The evaluation and validation indicate that the proposed model can provide a reliable assessment of RC beam capacity against progressive collapse.
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February 2017
Research Article|
November 10 2016
Theoretical assessment of progressive collapse capacity of reinforced concrete structures
Kamal Alogla;
Kamal Alogla
PhD student
University of Kerbala, Kerbala, Iraq
School of Computer Science and Engineering, University of Salford, Manchester, UK (corresponding author: kmltaha@yahoo.com)
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Laurence Weekes;
Laurence Weekes
School of Computer Science and Engineering, University of Salford, Manchester, UK
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Levingshan Augusthus-Nelson
Levingshan Augusthus-Nelson
School of Computer Science and Engineering, University of Salford, Manchester, UK
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Publisher: Emerald Publishing
Received:
July 15 2016
Revision Received:
October 01 2016
Accepted:
October 05 2016
Online ISSN: 1751-763X
Print ISSN: 0024-9831
ICE Publishing: All rights reserved
2016
Magazine of Concrete Research (2017) 69 (3): 145–162.
Article history
Received:
July 15 2016
Revision Received:
October 01 2016
Accepted:
October 05 2016
Citation
Alogla K, Weekes L, Augusthus-Nelson L (2017), "Theoretical assessment of progressive collapse capacity of reinforced concrete structures". Magazine of Concrete Research, Vol. 69 No. 3 pp. 145–162, doi: https://doi.org/10.1680/jmacr.16.00319
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