Cite

KAWASHIMA, K. - BUCKLE, I.: Structural performance of bridges in the Tohoku-Oki earthquake. Earthquake Spectra, Vol. 29, No. S1, 2013, pp. 315-338. Search in Google Scholar

KWON, O. S. - ELNASHAI, A. S.: Fragility analysis of a highway over-crossing bridge with consideration of soil-structure interactions. Structure and Infrastructure Engineering, Vol. 6, Iss. 1-2, 2010, pp. 159-178, https://doi.org/10.1080/15732470802663870. Search in Google Scholar

CHANG, S. - SHINOZUKA, M. - MOORE, J. E.: Probabilistic earthquake scenarios: Extending risk analysis methodologies to spatially distributed systems. Earthquake Spectra, Vol. 16, Iss. 3, 2000, pp. 557-572. Search in Google Scholar

HAN, Y. - DAVIDSON, R.: Probabilistic seismic hazard analysis for spatially distributed infrastructure. Earthquake Engineering and Structural Dynamics, Vol. 41, Iss. 15, 2012, pp. 2141-2158 Search in Google Scholar

GIDARIS, I. - PADGETT, J. E.: Probabilistic fragility analysis and resilience assessment of bridges subject to earthquake mainshocks and aftershocks. 16th World Conference on Earthquake Engineering, 2017. Search in Google Scholar

KIREMIDJAN, A. - STERGIOU, E. - LEE R.: Issues in seismic risk assessment of transportation networks. 4th International Conference on Earthquake Geotechnical Engineering-Invited Lectures, 2007. Search in Google Scholar

STEFANIDOU, S. P. - KAPPOS, A. J.: Methodology for the development of bridge specific fragility curves. Earthquake Engineering and Structural Dynamics, Vol. 46, Iss. 1, 2017, pp. 73-93. Search in Google Scholar

BAKHTIARI, P. - BARGI, K.: Seismic vulnerability assessment of high-speed railway bridges using fragility curves and considering soil-structure interaction. Civil and Environmental Engineering, Vol. 16, Iss. 1, 2020, pp. 39-48, DOI: 10.2478/cee-2020-0005. Open DOISearch in Google Scholar

Albanian Road Authority Database. Search in Google Scholar

D2.1, Cross-Border Multi Hazard Assessment, Identification of all relevant natural and human-induced hazards in the cross-border region, 2020. Comprehensive Risk Assessment of Basic Services and Transport Infrastructure, 101004830 - CRISIS - UCPM-2020-PP-AG, http://www.crisis-project.org/. Search in Google Scholar

D4.1, Cross-border risk assessment of basic services and transport infrastructure. Harmonized regional risk exposure model. Search in Google Scholar

STUCCHI, et al.: The SHARE European Earthquake Catalogue (SHEEC) 1000–1899. Journal of Seismology, Vol. 17, 2013, pp. 523-544, doi: 10.1007/s10950-012-9335-2. Open DOISearch in Google Scholar

PAGANI, M. - GARCIA-PELAEZ, J. - GEE, R. - JOHNSON, K. - POGGI, V. - STYRON, R. - WEATHERILL, G. - SIMIONATO, M. - VIGANÒ, D. - DANCIU, L. - MONELLI, D.: Global Earthquake Model (GEM) Seismic Hazard Map (version 2018.1 - December 2018), doi.org/10.13117/GEM-GLOBAL-SEISMIC-HAZARD-MAP-2018.1. Search in Google Scholar

SULSTAROVA, E. – ALIAJ, S. H. – MUÇO, B.: Harta e zonave të burimeve sizmike, 2005. Search in Google Scholar

Qendra Sizmologjike, Akademia e Shkencave, Kusht Teknik Projektimi për ndërtimet antisizmike - KTP-N.2-89. Miratuar me Vendim nr. 40 datë 10.01.1989 të këshillit shkencor të Ministrisë së Ndërtimit, Qendra Sizmologjike, Akademia e Shkencave, Tirana, Albania, 1989. Search in Google Scholar

BASOZ, N. - MANDER, J.: Enhancement of the Highway Transportation Lifeline Module in HAZUS. National Institute of Building Sciences, 1999, 57 p. Search in Google Scholar

PRIESTLEY, M. J. N. – SEIBLE, F. – CALVI, G. M.: Seismic Design and Retrofit of Bridges. John Wiley & Sons, Inc., 1996. Search in Google Scholar

XHAFERAJ, I. Studim mbi vlerësimin sizmik te urave b/a ekzistuese nëpërmjet kurbave të fragilitetit. PhD Thesis, 2016, www.upt.al. Search in Google Scholar

XHAFERAJ, I. – SHKODRANI, N.: Seismic assessment method for existing reinforced concrete bridges in Albania. Proceedings of the 1st Croatian Conference on Earthquake Engineering, 1CroCEE, 2021. Search in Google Scholar

MORANDI, P. - MANZINI, C. F. - BORZI, B. - MAURO, A. - VECCHI, A. - TISALVI, M. - IACOBINI, F.: Simplified seismic vulnerability assessment of railway masonry arch bridges. E-Proceedings of the 10th New York City Bridges Conference, 2019. Search in Google Scholar

BELOTTI, D. - FAMA, A. - DI MEO, A. - BOEZI, B.: Fragility curves for large-scale assessment of RC railway bridges. 7th ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering, 2019, DOI: 10.7712/120119.7254.18882. Open DOISearch in Google Scholar

Hazus Earthquake Model Technical Manual: Hazus 4.2 SP 3. FEMA, 2004. Search in Google Scholar

INFRANAT D3.2. D3.2. Portfolio of bridge typology numerical models and fragility functions. Brussels: European Civil Protection and Humanitarian Aid Operations, 2018. Search in Google Scholar

CROWLEY, H. – SILVA, V. – MARTINS, L. – ROMAO, X. – PEREIRA, N.: Open models and software for assessing the vulnerability of the European building stock. 8th International Conference on Computational Methods in Structural Dynamics and Earthquake Engineering, 2021. Search in Google Scholar

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