[1] Ansari M., Ansari M., and Safiey A., 2018. Evaluation of seismic performance of mid-rise reinforced concrete frames subjected to far-field and near-field ground motions. Earthquakes and Structures, 15(5), pp: 453–462.
[2] Ansari M., Gholi pour H., and Safiey A., 2019. Seismic performance of mid-rise code-conforming X-braced steel frames. Journal of Materials and Engineering Structures, 6(2), pp: 279–292.
[3] Ansari M., Safiey A., and Abbasi M., 2020. Fragility-based performance evaluation of mid-rise reinforced concrete frames in near field and far field earthquakes, Structural Engineering and Mechanics, 76(6), pp: 751–763.
[4] Kawashima K., 2000. Seismic Design and Retrofit of Bridges. In: Proc. of 12th World Conference on Earthquake Engineering, CD-ROM No. 2828, New Zealand Society for Earthquake Engineering, Auckland, New Zealand.
[5] Macrae G.A., Kawashima K., 1997. Post-Earthquake Residual Displacements of Bilinear Oscillators. Journal of Earthquake Engineering and Structural Dynamics, Vol. 26, pp: 701-716.
[6] Ansari M., Daneshjoo F., and Soltani M. 2017. On Estimation of seismic residual displacements in reinforced concrete single column bridges through force-displacement method, International Journal of Civil Engineering, 15(4), pp: 473–486.
[7] Seismic Design Criteria V2.0, 2019. California Department of Transportation (Caltrans). Sacramento, CA, 116 pp.
[8] Specification for Highway Bridges (Specification for seismic design), 2017. Japan Road Association, Japan.
[9] Rai M., ElGawady MA., Rodriguez-Marek A., 2019. Probabilistic Seismic Demand Analysis of a Bridge with Unboned, Post-Tensioned, Concrete-Filled, Fiber-Reinforced Polymer Tube Columns. Fibers, 7(3):23.
[10] Li, X., Zhang, Z., Zhou, T. et al., 2023. Hysteretic behavior of post-tensioned precast segmental CFT double-column piers. Earthq. Eng. Eng. Vib. 22, pp: 747–762
[11] Ahmadi E., Kocakaplan S., Kashani M.M., 2022. Nonlinear seismic fragility analysis of a resilient precast post-tensioned segmental bridge pier, Sustainable and Resilient Infrastructure, 7(6), pp: 823-841
[12] Shen Y., Freddi F., Li Y. and Li J., 2022. Parametric experimental investigation of unbonded post‐tensioned reinforced concrete bridge piers under cyclic loading. Earthquake Engineering & Structural Dynamics, 51(15), pp:3479-3504.
[13] Tarfan S., Banazadeh M., and Esteghamati M.Z. 2019. Probabilistic seismic assessment of nonductile RC buildings retrofitted using pre-tensioned aramid fiber reinforced polymer belts. Composite Structures, 208, pp: 865-878.
[14] RavanshadNia H., Shakib H., Ansari M. and Safiey A., 2022. The use of cost-benefit analysis in performance-based earthquake engineering of steel structures. Earthquakes and Structures, 22(6), pp: 561-570.
[15] Yamashita R., Sanders H., 2009. Seismic Performance of Precast Unbonded Prestressed Concrete Columns. ACI Structural Journal, 106(6), pp: 821-830.
[16] Kwan W.P., Billington S.L., 2003a. Unbonded Post tensioned Concrete Bridge Piers. I: Monotonic and Cyclic Analyses. J. Bridge. Engrg., ASCE, 8(2), pp: 92-101.
[17] Sanada Y., Maeda M., Niousha A., Ghayamghamian M.R., 2004. Reconnaissance Report on Building Damage Due to Bam Earthquake of 26 December 2003. Journal of Seismology and Earthquake Engineering, Special Issue on Bam Earthquake, 5(4), pp:91-100
[18] ASCE SEI 41-23. Seismic evaluation and retrofit of existing buildings, ASCE standard, published by the American Society of Civil Engineers, Reston, Virginia, 2023.
[19] Das P.K., Dutta S.C., 2002. Effect of Strength and Stiffness Deterioration on Seismic Behavior of R/C Asymmetric Buildings. International Journal of Applied Mechanics and Engineering, 7(2), pp: 527-564.
[20] Das P.K., Dutta S.C., 2000. Controlling Deterioration of RC Asymmetric Buildings under Seismic Loadings. In: Proceedings of ICI-Asian Conference on Ecstasy in Concrete, 20-22 November, 2000, Bangalore, India, pp: 295-303.
[21] FEMA 306. Evaluation of earthquake damaged concrete and masonry wall buildings – basic procedures manual. Federal Emergency Management Agency, Washington, DC, 1998.
[22] FEMA 307. Evaluation of earthquake damaged concrete and masonry wall buildings – technical resources. Federal Emergency Management Agency, Washington, DC, 1998.
[23] Di Ludovico M., Verderame G., Prota A., Manfredi G., Cosenza E., 2012. Experimental Behavior of Non-Conforming RC Columns with Plain Bars under Biaxial bending. ASCE, J. Struct. Eng, 139(6), pp: 897-914.
[24] Di Ludovico M., Verderame G.M., Prota A., Manfredi G., Cosenza, E., 2009. Experimental Investigation on Non-Conforming Full Scale RC Columns. In: ANIDIS 2009 conference, Bologna, Italy.
[25] Verderame G.M., Fabbrocino G., Manfredi G., 2008. Seismic Response of RC Columns with Smooth Reinforcement. Part II: Cyclic Tests. Journal of Eng. Struct, 30(9), pp: 2289–2300.
[26] Acun B., Sucuoglu H., 2010. Performance of Flexure Controlled Concrete Columns under Severe Displacement Cycles. ACI Struct. J., 107(3), pp: 364–371.