References
- Antoniou, S., Rovithakis, A. and Pinho, R. (2002), 'Development and verification of a fully adaptive pushover procedure', 12th European Conf. on Earthquake Engineering, London
- Aschheim, M.A. and Hernandez-Montes, E. (2006), 'Observations on the reliability of alternative multiple-mode pushover analysis methods', J. Struct. Eng., 132, 471-477 https://doi.org/10.1061/(ASCE)0733-9445(2006)132:3(471)
- Aydinoglu, M.N. (2003), 'An incremental response spectrum analysis procedure based on inelastic spectral displacements for multi-mode seismic performance evaluation', Bulletin of Earthq. Eng., 1, 3-36 https://doi.org/10.1023/A:1024853326383
- Bathe, J.K. (1996), Finite Element Procedures, Prentice Hall, Englewood Cliffs, New Jersey
- Chopra, A.K. and Goel, R.K. (2001), 'A modal pushover analysis procedure to estimate seismic demands for buildings: Theory and preliminary evaluation', Pasific Earthquake Engineering Research Center (PEER), Report No. 2001/03, University of California, Berkeley, California
- Chopra, K.A. (2001), Dynamics of Structures, Second Edition, Prentice Hall, New Jersey
- Chopra, A.K. and Goel, R.K. (2002), 'A modal pushover analysis procedure for estimating seismic demands for buildings', Earthq. Eng. St.ruct. Dyn., 31, 561-582 https://doi.org/10.1002/eqe.144
- Cakiroglu, A. and Ozer, E. (1980), Materially and Geometrically Non-Linear Systems, Vol. 1 (in Turkish), Istanbul Technical University Publications, Istanbul
- Cakiroglu, A., Ozer, E. and Girgin, K. (1999), 'Yield conditions and yield vector for combined biaxial bending of rectangular reinforced concrete sections', Proc. of the Ugur Ersoy Symposium on Structural Engineering, Ankara
- Elnashai, A.S. (2001), 'Advanced inelastic static (pushover) analysis for earthquake applications', Struct. Eng. Mech., 12, 51-69 https://doi.org/10.12989/sem.2001.12.1.051
- FEMA (2000), Prestandard and Commentary for the Seismic Rehabilitation of Buildings, FEMA 356, American Society of Civil Engineers, Virginia
- FEMA (2004), Improvement of Nonlinear Static Seismic Analysis Procedures, FEMA 440 (ATC-55 project), Federal Emergency Management Agency, Washington, D.C
- Girgin, K. (1996), 'A method of load increments for the determination of second-order limit load and collapse safety of reinforced concrete framed structures', Ph.D. Thesis, Istanbul Technical University, Institute of Science, Istanbul
- Goel, R.K. and Chopra, A.K. (2005), 'Role of higher - 'Mode' Pushover analyses in seismic analysis of buildings', Earthquake Spectra, 21, 1027-1041 https://doi.org/10.1193/1.2085189
- Gupta, B. and Kunnath, S.K. (2000), 'Adaptive spectra-based pushover procedure for seismic evaluation of structures', Earthquake Spectra, 16, 367-391 https://doi.org/10.1193/1.1586117
- Hernandez-Montes, E., Kwon, O.-S. and Aschheim, M.A. (2004), 'An energy-based formulation for first-and multiple-mode nonlinear static (Pushover) analyses', J. Earthq. Eng., 8, 69-88 https://doi.org/10.1142/S1363246904001390
- Hodge, P.G. (1959), Plastic Analysis of Structures, Mc, Graw Hill
- Irtem, E. (1991), 'Determination of second-order limit load of framed space structures by a method of load increment', Ph.D. Thesis, Istanbul Technical University, Institute of Science, Istanbul
- Jan, T.S., Liu, M.W. and Kao, Y.C. (2004), 'An upper-bound pushover analysis procedure for estimating the seismic demands of high-rise buildings', Eng. Struct., 26, 117-128 https://doi.org/10.1016/j.engstruct.2003.09.003
- Kim, S. and D'Amore, E. (1999), 'Push-over analysis procedure in earthquake engineering', Earthquake Spectra, 15, 417-434 https://doi.org/10.1193/1.1586051
- Lawson, R.S., Vance, V. and Krawinkler, H. (1994), 'Nonlinear static push-over analysis-why, when, and how?', Proc. of Fifth U.S. Nat. Conf. on Earthquake Engineering, 1, 283-292, Chicago
- McGuire, W., Gallagher, R.H. and Ziemian, R.D. (2000), Matrix Structural Analysis, 2nd Edition, John Wiley
- Moghadam, A.S. (1998), 'A pushover procedure for tall buildings', Proc. of 12th European Conf. on Earthquake Engineering, Balkema, Rotterdam, London
- Mwafy, A.M. and Elnashai, A.S. (2001), 'Static pushover versus dynamic collapse analysis of RC buildings', Eng. Struct., 23, 407-424 https://doi.org/10.1016/S0141-0296(00)00068-7
- Ozer, E. (1987), 'Determination of the second-order limit load by a method of load increments', Bulletins of the Technical University of Istanbul, 40, 815-835
- Paret, T.F., Sasaki, K.K., Eilbeck, D.H. and Freeman, S.A. (1996), 'Approximate inelastic procedures to identify failure mechanisms from higher mode effects', Proc. of Eleventh World Conf. on Earthquake Engineering, Acapulco, Mexico
- Pacific Earthquake Engineering Research Center. (PEER) (2005), Strong Motion Database, http://www.peer.berkeley.edu
- RAM International. (2004), RAM Perform-2D User guide and element descriptions, Version 1.30, http://www.ramint.com
- Rovithakis, A. (2001), 'Verification of adaptive pushover analysis procedures', M.Sc. Thesis, Imperial College of Science, Technology and Medicine, U.K
- TEC (1998), Turkish Earthquake Code, The Minister of Public Works and Settelement, Ankara
- Turker, K. (2005), 'Multi modal adaptive load increment method for determination of earthquake response of structures', Ph.D. Thesis, Bahkesir University, Institute of Science, Bahkesir
- Yang, P. and Wang, Y. (1998), 'A study on improvement of pushover analysis', Proc. of 12th World Conf. on Earthquake Engineering, Auckland, New Zealand
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