References
- Ademovic, N., Hrasnica, M. and Oliveira, D.V. (2013) "Pushover analysis and failure pattern of a typical masonry residential building in Bosnia and Herzegovina", Eng. Struct., 50, 13-29. https://doi.org/10.1016/j.engstruct.2012.11.031
- American Society of Civil Engineers (2014), Seismic Evaluation and Retrofit of Existing Buildings, Reston, Virginia.
- Anand, R. and Saravanan, M.E. (2016), "Non-linear analysis of reinforced concrete framed structure using SAP", J. Tech. Res. Appl., 4(4), 41-45.
- Applied Technology Council (1996) Seismic Evaluation and Retrofit of Concrete Buildings, Volume 1-2, Redwood City, California, U.S.A.
- Bansal, R. (2011), "Pushover analysis of reinforced concrete frame", M.Sc. Dissertation, Thapar University, Punjab, India.
- Belejo, A., Bento, R. and Bhatt, C. (2012), "Comparison of different computer programmes to predict the seismic performance of the SPEAR building by means of pushover analysis", Proceedings of the 15th World Conference on Earthquake Engineering, Lisbon, Portugal, September.
- Bhide, S.B. and Collins, M.P. (1989), "Influence of axial tension on the shear capacity of reinforced concrete members", ACI Struct. J., 86(5), 570-581.
- Botez, M.D., Bredean, L.A. and Ioani, A.M. (2014), "Plastic hinge vs. distributed plasticity in the progressive collapse analysis", Acta Tech. Napoc.: Civil Eng. Architect., 57(1), 24-36.
- Carvalho, G., Bento, R. and Bhatt, C. (2013), "Nonlinear static and dynamic analyses of reinforced concrete buildings-comparison of different modelling approaches", Earthq. Struct., 4(5), 451-470. https://doi.org/10.12989/eas.2013.4.5.451
- Computers & Structures, Inc (2008), Technical Note. Material Stress-Strain Curves, Berkeley, California, U.S.A.
- Computers & Structures, Inc (2016), CSI Analysis Reference Manual for SAP2000, ETABS, SAFE and CSIBridge, Berkeley, California, U.S.A.
- Duong, K.V. (2006), "Seismic behaviour of a shear-critical reinforced concrete frame: An experimental and numerical investigation", M.Sc. Dissertation, University of Toronto, Toronto, Canada.
- Federal Emergency Management Agency (2000), Prestandard and Commentary for the Seismic Rehabilitation of Buildings, Washington, U.S.A.
- Guner, S. (2008), "Performance assessment of shear-critical reinforced concrete plane frames", Ph.D. Dissertation, University of Toronto, Toronto, Canada.
- Guner, S. and Vecchio, F.J. (2010), "Pushover analysis of shear-critical frames: Formulation", ACI Struct. J., 107(1), 63-71.
- Izadpanaha, M. and Habibi, A. (2015), "Evaluating the spread plasticity model of IDARC for inelastic analysis of reinforced concrete frames", Struct. Eng. Mech., 56(2), 169-188. https://doi.org/10.12989/sem.2015.56.2.169
- Jukic, M., Brank, B. and Ibrahimbegovic, A. (2014), "Failure analysis of reinforced concrete frames by beam finite element that combines damage, plasticity and embedded discontinuity", Eng. Struct., 75, 507-527. https://doi.org/10.1016/j.engstruct.2014.06.017
- Landi, L., Pollio, B. and Diotallevi, P.P. (2014), "Effectiveness of different standard and advanced pushover procedures for regular and irregular RC frames", Struct. Eng. Mech., 51(3), 433-446. https://doi.org/10.12989/sem.2014.51.3.433
- Lopez-Almansa, F., Alfarah, B. and Oller, S. (2014), "Numerical simulation of RC frame testing with damaged plasticity model. Comparison with simplified models", Proceedings of the 2nd European Conference on Earthquake Engineering and Seismology, Istanbul, Turkey, August.
- Mander, J.B., Priestley, M.J. and Park, R. (1988), "Theoretical stress-strain model for confined concrete", J. Struct. Eng., 114(8), 1804-1826. https://doi.org/10.1061/(ASCE)0733-9445(1988)114:8(1804)
- Nahavandi, H. (2015), Pushover Analysis of Retrofitted Reinforced Concrete Buildings, M.Sc. Project Reports, Portland State University, Oregon, U.S.A.
- Park, S.Y. (1999), "Predictions of shear strength of R/C beams using modified compression field theory and ACI Code", KCI Concrete J., 11(3), 5-17.
- Reddiar, M.K.M. (2010), "Stress-strain model of unconfined and confined concrete and stress-block parameters", M.Sc. Dissertation, Texas A&M University, College Station, Texas, U.S.A.
- Stevens, N.J., Uzumeri, S.M. and Collins, M.P. (1987), Analytical Modelling of Reinforced Concrete Subjected to Monolithic and Reversed Loading, Publication 87-1, Department of Civil Engineering, University of Toronto, Toronto, Canada.
- Themelis, S. (2008), "Pushover analysis for seismic assessment and design of structures", Ph.D. Dissertation, Heriot-Watt University, Edinburgh, Scotland.
- Vecchio, F.J. and Balopoulou, S. (1990), "On the nonlinear behavior of reinforced concrete frames", Can. J. Civil Eng., 17(5), 698-704. https://doi.org/10.1139/l90-083
- Vecchio, F.J. and Collins, M.P. (1986), "The modified compression-field theory for reinforced concrete elements subjected to shear", J. Proc., 83(2), 219-231.
- Vecchio, F.J. and Nieto, M. (1991), "Reinforced concrete membrane elements with perforations", ASCE J. Struct. Eng., 116(9), 2344-2360.
- Vecchio, F.J. and Nieto, M. (1991), "Shear-friction tests on reinforced concrete panels", ACI Struct. J., 88(3), 371-379.
- Wong, P.S., Vecchio, F.J. and Trommels, H. (2013), Vector2 & Formworks User's Manual-Second Edition, Texas A & M University, U.S.A.
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