References
- Argyris, J.H., Boni, B., Hindenlang, U. and Kleiber, M. (1982), "Finite element analysis of two- and threedimensional elasto-plastic frames-the natural approach", Comput. Method. Appl. M., 35(2), 221-248. https://doi.org/10.1016/0045-7825(82)90135-9
- Akhaveissy, A.H. and Desai, C.S. (2012), "Application of the DSC model for nonlinear analysis of reinforced concrete frames", Finite Elem. Anal. Des., 50(March 2012), 98-107. https://doi.org/10.1016/j.finel.2011.09.001
- Arnesen, A., Sorensen, S.I. and Bergan, P.G. (1980), "Nonlinear analysis of reinforced concrete", Comput. Struct., 12(4), 571-579. https://doi.org/10.1016/0045-7949(80)90132-7
- Arslan, G. (2007), "Sensitivity study of the drucker-prager modeling parameters in the prediction of the nonlinear response of reinforced concrete structures", Mater. Des., 28(10), 2596-2603. https://doi.org/10.1016/j.matdes.2006.10.021
- Barros, R.C. and Almeida, R. (2005), "Pushover analysis of asymmetric three-dimensional building frames", J. Civ. Eng. Manag., 11(1), 3-12.
- Birely, A.C., Lowes, L.N. and Lehman, D.E. (2012), "A model for the practical nonlinear analysis of reinforced- concrete frames including joint flexibility", Eng. Struct., 34(January 2012), 455-465. https://doi.org/10.1016/j.engstruct.2011.09.003
- Celik, T. (1977), "Elastic-plastic analysis of complete structures with shear walls and frames", Ph. D Thesis, Department of Civil Engineering University of Aston in Birmingham.
- Celik, T. (1980), "Nonlinear analysis of RC frames and calculations of failure loads", Tubitak 7th Science Congress, Engineering Research Group Bulletin, Pages 1069-1081, Aydin.
- Celik, T. (1982), "The theorems of structural variation for space frames, plates and shear walls", Ph. D Thesis, I.T.U, Istanbul (in Turkish).
- Cosgun, T. (2001), "Nonlinear analysis of complete structure systems with plates, shear walls, frame and core", Ph. D Thesis, I.U. Institute of Science and Technology, Istanbul (in Turkish).
- Cosgun, T. (2003), "A computer program for nonlinear analysis of structure systems", Pamukkale University, Faculty of Engineering, J. Eng. Sci., 9(2), 215-222.
- Cosgun, T. (2003a), "An iterative method for analysis of space frame systems with second-order theory", Pamukkale University, Faculty of Engineering, J. Eng. Sci., 9(3), 419-426.
- Deeble, R.H. (1973), "Nonlinear analysis of reinforced concrete frames", Ph. D Thesis, Departmant of Civil Engineering, University of Aston in Birmingham.
- Dinno, K.S. and Mekha, B.B. (1995), "A developed algorithm for the inelastic analysis of reinforced concrete frames", Comput. Struct., 57(2), 227-232. https://doi.org/10.1016/0045-7949(94)00621-9
- Dinno, K.S. and Mekha, B.B. (1993), "Optimal design of reinforced concrete frames based on inelastic analysis", Comput. Struct., 47(2), 245-252. https://doi.org/10.1016/0045-7949(93)90373-L
- 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, Institute of Science and Technology, ITU, Istanbul.
- Habibi, A.R. and Moharrami, H. (2010), "Nonlinear sensitivity analysis of reinforced concrete frames", Finite Elem. Anal. Des., 46(7), 571-584. https://doi.org/10.1016/j.finel.2010.02.005
- Hognestad, E., Hanson, N.W. and McHenry, D. (1955), "Concrete stress distribution in ultimate strength design", J. Amer. Conc. Inst., 27(4).
- Izzuddin, B.A. and Smith, D.L. (2000), "Efficient nonlinear analysis of elasto-plastic 3D R/C frames using adaptive techniques", Comput. Struct., 78(4), 549-573. https://doi.org/10.1016/S0045-7949(00)00041-9
- Kratzig, W.B. and Polling, R. (2004), "An elasto-plastic damage model for reinforced concrete with minimum number of material parameters", Comput. Struct., 82(15-16), 1201-1215. https://doi.org/10.1016/j.compstruc.2004.03.002
- Lepage, A., Hopper, M.W., Delgado, S.A. and Dragovich, J.J. (2010), "Best-fit models for nonlinear seismic response of reinforced concrete frames", Eng. Struct., 32(9), 2931-2939. https://doi.org/10.1016/j.engstruct.2010.05.012
- Mo, H.K. and Yuh, J.J. (1989), "Nonlinear dynamic analysis of elastic frames", Comput. Struct., 33(4), 1057-1063. https://doi.org/10.1016/0045-7949(89)90441-0
- Monnier, T. (1970), "The moment curvature relation of reinforced concrete", Heron, 17(2), 1-101.
- Mwafy, A.M. and Elnashai, A.S. (2001), "Static pushover versus dynamic collapse analysis of RC buildings", Eng. Struct., 23(5), 407-424. https://doi.org/10.1016/S0141-0296(00)00068-7
- Otani, S. (1980), "Nonlinear dynamic analysis of reinforced concrete building structures", Can. J. Civil Eng., 7, 333-344. https://doi.org/10.1139/l80-041
- Pagnoni, T., Slater, J., Ameur-Moussa, R. and Buyukozturk, O. (1992), "A nonlinear three-dimensional analysis of reinforced concrete based on a bounding surface model", Comput. Struct., 43(1), 1-12. https://doi.org/10.1016/0045-7949(92)90074-A
- Quaranta, G., Kunnath, S.K. and Sukumar, N. (2012), "Maximum-entropy meshfree method for nonlinear static analysis of planar reinforced concrete structures", Eng. Struct., 42(September 2012), 179-189. https://doi.org/10.1016/j.engstruct.2012.04.020
- Saka, M.P. and Ulker, M. (1991), "Optimum design of geometrically nonlinear space trusses", Comput. Struct., 41(6), 1387-1396. https://doi.org/10.1016/0045-7949(91)90276-R
- Stramandinoli, R.S.B. and La Rovere, H.L. (2012), "FE model for nonlinear analysis of reinforced concrete beams considering shear deformation", Eng. Struct., 35(February 2012), 244-253. https://doi.org/10.1016/j.engstruct.2011.11.019
- Thanoon, W.A., Paul, D.K., Jaafar, M.S. and Trikha, D.N. (2004), "Infuence of torsion on the inelastic response of three-dimensional RC frames", Finite Elem. Anal. Des., 40(5-6), 611-628. https://doi.org/10.1016/S0168-874X(03)00099-4
- Uzgider, E.A. (1980), "Inelastic response of space frames to dynamic loads", Comput. Struct., 11(1-2), 97-112. https://doi.org/10.1016/0045-7949(80)90150-9
- Wen, R.K. and Farhoomand, F. (1970), "Dynamic analysis of inelastic space frames", J. Eng. Mech.-ASCE, 96(5), 667-686.
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