References
- Cosenza, E. and Manfredi, G. (2000), "Damage indices and damage measures", Prog. Struct. Eng. Mater., 2(1), 50-59. https://doi.org/10.1002/(SICI)1528-2716(200001/03)2:1<50::AID-PSE7>3.0.CO;2-S
- Della Corte, G., Landolfo, R. and Mazzolani, F.M. (2003), "Post-earthquake fire resistance of moment resisting steel frames", Fire Safety J., 38(7), 593-612. https://doi.org/10.1016/S0379-7112(03)00047-X
- Eurocode 8 (2004), Design of structures for earthquake resistance-Part 1: General rules seismic actions and rules for buildings, Brussels.
- Eurocode 3 (2003), Design of steel structures-Part 1-2: General Rules-Structural fire design, Brussels.
- Eurocode 1 (2002), Actions on structures exposed to fire-Part 1-2. General actions-structural fire design, Brussels.
- Eurocode (2006), Basis of structural design, Brussels.
- Faggiano, B., Espoto, M., Mazzolani, F.M. and Landolfo, R. (2007), "Fire analysis of steel portal frames damaged after earthquake according to performance based design", Urban Habitat Constructions under Catastrophic Events, Cost C26, Workshop, Prague, Czech Republic.
- Faggiano, B., Espoto, M., Zaharia, R. and Pintea, D. (2008), "Structural analysis in case of fire after earthquake", Urban Habitat Constructions under Catastrophic Events, Cost Action C26, Malta University.
- Faggiano, B. and Mazzolani F.M. (2011), "Fire after earthquake robustness evaluation and design: Application to steel structures", Steel Constr. Des. Res., 4(3), 183-187. https://doi.org/10.1002/stco.201110025
- Iervolino, I., Maddaloni, G. and Cosenza, E. (2008), "Eurocode 8 compliant real record sets for seismic analysis of structures", J. Earthq. Eng., 12(1), 54-90. https://doi.org/10.1080/13632460701457173
- Kappos, A. (1997), "Seismic damage indices for RC buildings: evaluation of concepts and procedures", Prog. Struct. Eng. Mater., 1(1), 78-87. https://doi.org/10.1002/pse.2260010113
- Keller, W.J. (2012), "Thermomechanical response of steel moment-frame beam-column connections during post-earthquake Fire Exposure", Ph. D Dissertation, Lehigh University, Bethlehem, Pennsylvania.
- Keller, W. and Pessiki, S. (2012), "Effect of earthquake-induced damage to spray-applied fire-resistive insulation on the response of steel moment-frame beam-column connections during fire exposure", J. Fire Protection Eng., 22(4), 271-299. https://doi.org/10.1177/1042391512461126
- Kodur, V. and Dwaikat, M. (2009), "Response of steel beam-columns exposed to fire", Eng. Struct., 31(2), 369-379. https://doi.org/10.1016/j.engstruct.2008.08.020
- Lee, S., Davidson, R., Ohnishi, N. and Scawthorn, C. (2008), "Fire following earthquake-reviewing the State-of-the-Art of modeling", Earthq. Spectra, 24(4), 933-967. https://doi.org/10.1193/1.2977493
- MSC Software Corporation (2010), MSC Marc Volume A: Theory and User Information, USA.
- Pantousa, D. and Mistakidis, E. (2014), "Rotational capacity of damaged and undamaged steel I-beams at elevated temperatures", Proceedings of the seventh International Conference EUROSTEEL, Naples.
- Scawthorn, C., Eidinger, J.M. and Schiff, A. (2005), "Fire following earthquake", Technical Council on Lifeline Earthquake Engineering Monograph No. 26, 345, American Society of Civil Engineers, Reston.
- Vamvatsikos, D. and Cornell, C.A. (2002), "Incremental dynamic analysis", Earthq. Eng. Struct. Dyn., 31(3), 491-514. https://doi.org/10.1002/eqe.141
- Yassin, H., Iqbal, F., Bagchi, A. and Kodur, V.K.R. (2008), "Assessment of post-earthquake fire performance of steel-frame buildings", Proceedings of 14th World Conference on Earthquake Engineering, Beijing.
- Zaharia, R., Pintea, D. and Dubina, D. (2007), "Fire analysis and design of a composite steel-concrete structure", Steel Compos. Struct., Taylor & Francis Group London.
- Zaharia, R., Pintea, D. and Dubina, D. (2008) "Fire after earthquake-a natural fire approach", Proceedings of the fifth International Conference EUROSTEEL, Austria.
- Zaharia, R., Pintea, D. and Dubina, D. (2009), "Fire analysis of structures in seismic areas", Proceedings of the International Conference on Application of Structural Fire Engineering, Prague, Czech Republic.
- Zaharia, R. and Pintea, D. (2009), "Fire after earthquake analysis of steel moment resisting frames", Int. J. Steel Struct., 9(4), 275-284. https://doi.org/10.1007/BF03249501
- Zhao S. (2010), "GisFFE-an integrated software system for the dynamic simulation of fires following an earthquake based on GIS", Fire Safety J., 45(2), 83-97. https://doi.org/10.1016/j.firesaf.2009.11.001
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