References
- Araujo, M., Macedo, L., Marques, M. and Castro, J.M. (2016), "Code-based record selection methods for seismic performance assessment of buildings", Earthq. Eng. Struct. Dyn., 45(1), 129-148. https://doi.org/10.1002/eqe.2620
- ASCE 7/SEI (2010), Minimum Design Loads for Buildings and other Structures; American Society of Civil Engineers/ Structural Engineer Institute, Reston, VA, USA.
- ATC3-06 (1978), Tentative provisions for the development of seismic regulations for buildings; Applied Technology Council, Redwood City, CA, USA.
- ATC-19 (1995), Structural response modification factors; Applied Technology Council, Redwood City, CA, USA, pp. 5-32.
- ATC-34 (1995), A critival review of current approaches to earthquake-resistance design; Applied Technology Council, Redwood City, CA, USA.
- CEN (2004), EN1998-1-3, Eurocode 8: Design of structures for earthquake resistance- Part 1: general rules, seismic actions and rules for buildings; European Committee for Standardization, Brussels, Belgium.
- CEN (2005), EN1998-1-1, Eurocode 3: Design of steel structures- Part 1: general rules, seismic actions and rules for buildings; European Committee for Standardization, Brussels, Belgium.
- Costa, A., Romao, X. and Sousa Oliveira, C. (2010), "A methodology for the probabilistic assessment of behaviour factors", Bull. Earthq. Eng., 8, 47-64. https://doi.org/10.1007/s10518-009-9126-5
- Elghazouli, A.Y. (2007), "Seismic design of steel Structures to Eurocode 8", The Structural Engineer, 85(12), 26-31.
- Elghazouli, Y. (2009), "Assessment of European seismic design procedures for steel framed structures", Bull. Earthq. Eng., 8, 65-89.
- Elghazouli, A.Y., Castro, J.M. and Izzuddin, B.A. (2008), "Seismic performance of composite momentresisting frames", Engineering Structures, 30(7), 1802-1819. https://doi.org/10.1016/j.engstruct.2007.12.004
- FEMA (2009), Recommended seismic provisions for new buildings and other structures (FEMA P 750);Federal Emergency Management Agency, Washington, D.C., USA.
- Ferraioli, M, Lavino, A. and Mandara, A. (2014), "Behaviour factor of code-designed steel moment-resisting frames", Int. J. Steel Struct., 14(2), 243-254. https://doi.org/10.1007/s13296-014-2005-1
- Karavasilis, T.H., Bazeos, N. and Beskos, D. (2007), "Behaviour factor for performance-based seismic design of plane steel moment resisting frames", J. Earthq. Eng., 11(4), 531-559. https://doi.org/10.1080/13632460601031284
- Kappos, J. (1999), "Evaluation of behaviour factors on the basis of ductility and overstrength studies", Eng. Struct., 21(9), 823-835. https://doi.org/10.1016/S0141-0296(98)00050-9
- Lee, L.H., Han, S.W. and Oh, Y.H. (1999), "Determination of ductility factor considering different hysteretic models", Earthq. Eng. Struct. Dyn., 28(9), 957-977. https://doi.org/10.1002/(SICI)1096-9845(199909)28:9<957::AID-EQE849>3.0.CO;2-K
- Maheri, M.R. and Akbari, R. (2003), "Seismic behaviour factor, R, for steel X-braced and knee-braced RC buildings", Eng. Struct., 25(12), 1505-1513. https://doi.org/10.1016/S0141-0296(03)00117-2
- Paulay, T. and Priestley, M.J.N. (1992), Seismic Design of concrete and Masonry Structures, Jonh Wiley and Sons, London, UK.
- Priestley, M.J.N. and Calvi, G.M. (1991), "Towards a capacity design assessment for reinforced concrete frames", Earthq. Spectra, 7(3), 413-437. https://doi.org/10.1193/1.1585635
- Priestley, M.J.N., Calvi, G.M. and Kowalsky, M.J. (2007), Displacement Based Seismic Design of Structures, Istituto Universitario di Studi Superiori di Pavia, Pavia, Italy.
- PEER (2006), OpenSEES: Open System for Earthquake Engineering Simulation. Pacific Earthquake Engineering Research Center, University of California, Berkeley, CA, USA.
- Sullivan, T.J. (2013), "Direct displacement based seismic design of steel eccentrically braced frames structures", Bull. Earthq. Eng., 11(6), 2197-2231. https://doi.org/10.1007/s10518-013-9486-8
- Roldan, R., Sullivan, T.J. and Della Corte, J. (2016), "Displacement-based design of steel moment resisting frames with partially-restrained beam-to-column joints", Bull. Earthq. Eng., 14(4), 1017-1046. https://doi.org/10.1007/s10518-016-9879-6
- Tenchini, A., D'Aniello, M., Rebelo, C., Landolfo, R., da Silva, L.S. and Lima, L. (2014), "Seismic performance of dual-steel moment resisting frames", J. Construct. Steel Res., 101, 437-454. https://doi.org/10.1016/j.jcsr.2014.06.007
- Tzimas, A.S., Karavasilis, T.H., Bazeos, N. and Beskos, D. (2013), "A hybrid force/displacement seismic design method for steel building frames", Eng. Struct., 56, 1452-1463. https://doi.org/10.1016/j.engstruct.2013.07.014
- Villani, A., Castro, J.M. and Elghazouli, A.Y. (2009), "Improved seismic design procedure for steel moment frames", Proceedings of the 6th International Conference Stessa-2009, Behaviour of Steel Structures in Seismic Areas, Philadelphia, PA, USA, August, pp. 673-678.
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- Nonlinear Static Seismic Performance Assessment of Plan-Irregular Steel Structures pp.1559-808X, 2020, https://doi.org/10.1080/13632469.2018.1469438
- Evolution of EC8 Seismic Design Rules for X Concentric Bracings vol.12, pp.11, 2020, https://doi.org/10.3390/sym12111807