References
- Bourahla, N., Boukhamacha, T. and Tafraout, S. (2006), "Detection of the eccentricity variation in nonlinear response using artificial neural networks", Proceedings of the First European Conference on Earthquake Engineering and Seismology, Geneva, September.
- Bugeja, M.N., Thambiratnam, D.P. and Brameld, G.H. (1999), "The influence of stiffness and strength eccentricities on the inelastic earthquake response of asymmetric structures", Eng. Struct., 21, 856-863. https://doi.org/10.1016/S0141-0296(98)00035-2
- Cardoso, J.B., de Almeida, J.R., Dias, J.M. and Coelho, P.G. (2008), "Structural reliability analysis using Monte Carlo simulation and neural networks", Adv. Eng. Softw., 39, 505-513. https://doi.org/10.1016/j.advengsoft.2007.03.015
- De-la Colina, J. and Almeida, C. (2004), "Probabilistic study on accidental torsion of low-rise buildings", Earthq. Spectra, 20(1), 25-41. https://doi.org/10.1193/1.1646391
- De la Llera, J.C. and Chopra, A.K. (1994a), "Accidental torsion in buildings due to stiffness uncertainty", Earthq. Eng. Struct. D., 23, 117-136. https://doi.org/10.1002/eqe.4290230202
- De la Llera, J.C. and Chopra, A.K. (1994b), "Accidental torsion in buildings due to base rotational excitation", Earthq. Eng. Struct. D., 23, 1003-1021. https://doi.org/10.1002/eqe.4290230906
- De la Llera J.C. and Chopra, A.K. (1996), "Accidental and natural torsion in earthquake response and design of buildings", Proceedings of the Eleventh World Conference on Earthquake Engineering, Acapulco, Mexico.
- Fahjan, Y.M., Tuzun, C. and Kubin, J. (2006), "An alternative procedure for accidental eccentricity in dynamic model analyses of buildings", Proceedings of the First European Conference on Earthquake Engineering and Seismology, Geneva, September.
- Fischer, T., Alvarez, M., De la Llera, J.C. and Riddell, R. (2002), "An integrated model for earthquake risk assesment of buildings", Eng. Struct., 24, 979-998. https://doi.org/10.1016/S0141-0296(02)00018-4
- Hakan Arslan, M., Murat Ceylan, M., Kaltakci, Y., Ozbay, Y. and Gulten Gulay, F. (2007), "Prediction of force reduction factor (R) of prefabricated industrial buildings using neural networks", Sruct. Eng. Mech., 27(2), 117-134. https://doi.org/10.12989/sem.2007.27.2.117
- Humar, J.L. and Kumar, P. (1998), "Torsional motion of buildings during earthquake. I. Elastic Response", Can. J. Civ. Eng., 125, 898-916.
- Lin, W.H., Chopra, A.K. and De la Llera, J.C. (2001), "Accidental torsion in buildings: Analysis versus earthquake motions", J. Struct. Eng., 127(5), 475-481. https://doi.org/10.1061/(ASCE)0733-9445(2001)127:5(475)
- Molina, A.V. and Chou, K.C. (2002), "Evaluation of existing bridges using neural networks", Struct. Eng. Mech., 13(2), 187-209. https://doi.org/10.12989/sem.2002.13.2.187
- Newmark, N.M. (1969), "Torsion in symmetrical buildings", Fourth World Conference on Earthquake Engineering, Santiago, Chile.
- Pekau, O.A. and Guimond, R. (1990), "Accidental torsion in yielding symmetric structures", Eng. Struct., 12(2), 98-105. https://doi.org/10.1016/0141-0296(90)90014-J
- Shakib, H. and Tohidi, R.Z. (2002), "Evaluation of accidental eccentricity in buildings due to rotational component of earthquake", J. Earthq. Eng., 6(4), 431-445.
- Zapico, J.L. and Gonzaléz, M.P. (2006), "Numerical simulation of a method for seismic damage identification in buildings", Eng. Struct., 28, 255-263. https://doi.org/10.1016/j.engstruct.2005.08.005
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