PSI - Issue 78

Ataklti Gebrehiwet Gebrekidan et al. / Procedia Structural Integrity 78 (2026) 1665–1672

1672

Caruso, M., Pinho, R., Bianchi, F., Cavalieri, F., Lemmo, M.T., 2021. Integrated economic and environmental building classification and optimal seismic vulnerability/energy efficiency retrofitting. Bulletin of Earthquake Engineering 19, 3627 – 3670. https://doi.org/10.1007/S10518-021 01101-4 Caterino, N., Iervolino, I., Manfredi, G., Cosenza, E., 2008. Multi-criteria decision making for seismic retrofitting of RC structures. Journal of Earthquake Engineering 12, 555 – 583. https://doi.org/10.1080/13632460701572872 Cimellaro, G.P., 2013. Resilience-based design (RBD) modelling of civil infrastructure to assess seismic hazards. Handbook of Seismic Risk Analysis and Management of Civil Infrastructure Systems 268 – 303. https://doi.org/10.1533/9780857098986.2.268 lemett, ., arofilis Gallo, W.W., O’ eilly, G.J., Ga ianelli, G., Monteiro, ., . Optimal seismic retrofitting of existing buildings considering environmental impact. Eng Struct 250. https://doi.org/10.1016/j.engstruct.2021.113391 Computers and Structures, 2023. SAP2000 (Version 24.1.0) Berkeley, CA: STRUCTURAL ANALYSIS AND DESIGN https://www.csiamerica.com/products/sap2000 (accessed 6.3.25). Couto, R., Mucedero, G., Bento, R., Monteiro, R., 2024. Understanding the Impact of Seismic Hazard and Climate Conditions on Multi Criteria – Based Retrofitting of Existing Buildings. Sustainability (Switzerland) 16. https://doi.org/10.3390/su16104318 C.S.LL.PP., 2018. Decreto Ministeriale 17 gennaio 2018: Norme tecniche per le costruzioni, Gazzetta Ufficiale della Repubblica Italiana, n. 42, 20 febbraio, Suppl. Ordinario n. 8. Ist. Polig. e Zecca dello Stato S.p.a., Rome (in Italian). Gebrekidan, A.G., Scattarreggia, N., Cogliano, M., Monteiro, R., 2025. Multi-Criteria Comparative Assessment of Seismic Retrofitting Interventions of An Overpass RC Bridge Considering Environmental Impact, in: Proceedings of the 10th ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering (COMPDYN 2025), Rhodes Island, Greece, 15 – 18 June 2025. Homewyse, 2024. Material Cost Guides and Calculators - Homewyse https://www.homewyse.com/costs/index.html (accessed 3.17.25). Huang, M., Simonen, K., 2020. Comparative Environmental Analysis of Seismic Damage in Buildings. Journal of Structural Engineering 146. https://doi.org/10.1061/(asce)st.1943-541x.0002481 Nielson, B.G., 2005. Analytical Fragility Curves for Highway Bridges in Moderate Seismic Zones. Ph.D. Dissertation, Georgia Institute of Technology. Ozsarac, V., Monteiro, R., Calvi, G.M., 2023. Probabilistic seismic assessment of reinforced concrete bridges using simulated records. Structure and Infrastructure Engineering 19, 554 – 574. https://doi.org/10.1080/15732479.2021.1956551 Perdomo, C., Monteiro, R., 2020. Simplified damage models for circular section reinforced concrete bridge columns. Eng Struct 217. https://doi.org/10.1016/j.engstruct.2020.110794 Pinto, F., Astroza, R., Bazáez, R., Hernández, F., Navarro, N., 2024. Probabilistic seismic assessment of multispan RC highway bridges considering soil-structure interaction and chloride-induced corrosion. Eng Struct 301. https://doi.org/10.1016/j.engstruct.2023.117257 Rathore, A., Garg, R.K., 2022. Assessing Resilience of Transportation Networks Under Multi-hazards: A Review. Lecture Notes in Civil Engineering 183, 29 – 43. https://doi.org/10.1007/978-981-16-5543-2_3 Rubini, G., Calvi, G.M., Gentile, R., 2024. Direct loss-based seismic retrofit of reinforced concrete frames. Bulletin of Earthquake Engineering 23, 327 – 357. https://doi.org/10.1007/S10518-024-02027-3 Silva, V., Crowley, H., Pagani, M., Monelli, D., Pinho, R., 2014. Development of the OpenQuake engine, the Global Earthquake Model’s open source software for seismic risk assessment. Natural Hazards 72, 1409 – 1427. https://doi.org/10.1007/S11069-013-0618-X Skokandić, ., lašić, A. ., Marić, M.K., Sr ić, M., Ivanković, A.M., . Seismic Assessment and etrofitting of Existing oad Bridges: State of the Art Review. Materials 2022, Vol. 15, Page 2523 15, 2523. https://doi.org/10.3390/MA15072523 Sousa, L., Monteiro, R., 2018. Seismic retrofit options for non-structural building partition walls: Impact on loss estimation and cost-benefit analysis. Eng Struct 161, 8 – 27. https://doi.org/10.1016/J.ENGSTRUCT.2018.01.028 Stefanidou, S., 2023. Optimum selection of bridge pier retrofit measures considering performance, cost and sustainability criteria. Structures 53, 98 – 108. https://doi.org/10.1016/J.ISTRUC.2023.04.052 Villalba, P., Sánchez-Garrido, A.J., Yepes, V., 2024. A review of multi-criteria decision-making methods for building assessment, selection, and retrofit. Journal of Civil Engineering and Management 30, 465 – 480. https://doi.org/10.3846/JCEM.2024.21621 Zhang, J., Huo, Y., 2009. Evaluating effectiveness and optimum design of isolation devices for highway bridges using the fragility function method. Eng Struct 31, 1648 – 1660. https://doi.org/10.1016/j.engstruct.2009.02.017 Zhu, M., McKenna, F., Scott, M.H., 2018. OpenSeesPy: Python library for the OpenSees finite element framework. SoftwareX 7, 6 – 11. https://doi.org/10.1016/J.SOFTX.2017.10.009

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