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Research article

An Analytical Safety Tree for Heritage Buildings: Application to the Archaeological Museum “Domenico Ridola”, Matera (Italy)

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Received 03 Apr 2024, Accepted 17 Jul 2024, Published online: 24 Jul 2024

References

  • Acito, M., M. Bocciarelli, C. Chesi, and G. Milani. 2014. Collapse of the clock tower in Finale Emilia after the May 2012 Emilia Romagna earthquake sequence: Numerical insight. Engineering Structures 72 (August 1):70–91. doi:10.1016/j.engstruct.2014.04.026.
  • Allender, P. J. 1979. Fire safety analysis for public mass transit trains. Fire and Materials 3 (2):84–90. doi:10.1002/fam.810030206.
  • Bartoli, G., M. Betti, and A. Vignoli. 2016 June 1. A numerical study on seismic risk assessment of historic masonry towers: A case study in San Gimignano. Bulletin of Earthquake Engineering 14 (6):1475–518. doi:10.1007/s10518-016-9892-9.
  • Betti, M., L. Galano, and P. B. Lourenço. 2021 May 15. Territorial seismic risk assessment of a sample of 13 masonry churches in Tuscany (Italy) through simplified indexes. Engineering Structures 235:111479. doi:10.1016/j.engstruct.2020.111479.
  • Betti, M., L. Galano, and A. Vignoli. 2014 March 1. Comparative analysis on the seismic behaviour of unreinforced masonry buildings with flexible diaphragms. Engineering Structures 61:195–208. doi:10.1016/j.engstruct.2013.12.038.
  • Borri, A., M. Corradi, and A. De Maria. 2020. The failure of masonry walls by disaggregation and the masonry quality index. Heritage 3 (4):1162–98, December 1. doi:10.3390/heritage3040065.
  • Cantagallo, C., E. Spacone, D. Perrucci, N. Liguori, and C. Verazzo. 2020 September 1. A multilevel approach for the cultural heritage vulnerability and strengthening: Application to the Melfi Castle. Buildings 10 (9):158. doi:10.3390/buildings10090158.
  • Castori, G., M. Corradi, A. De Maria, R. Sisti, and A. Borri. 2018. A numerical study on seismic damage of masonry fortresses. Bulletin of Earthquake Engineering 16 (10):4561–80. doi:10.1007/s10518-018-0390-0.
  • C.I.N.E. v. 1 0.4. 2009. Condizioni d’Instabilità Negli Edifici - C.I.N.E. (Versione 1.0.4, Settembre 2009) Disponibile on Line ReLUIS http://www.Reluis.It/Doc/Emergenza_terremoto_abruzzo/CINE_1.0.4.Xls.
  • Circolare. 2019. Istruzioni per l’applicazione Dell’«Aggiornamento Delle “Norme Tecniche per Le Costruzioni”» Di Cui al D.M. 17 Gennaio 2018 (in Italian). Rome, Italy: Italian Ministry of Infrastructure and Transportation, July.
  • Cross, T., F. De Luca, R. De Risi, G. Camata, and M. Petracca. 2023 January 1. Micro-modelling of stone masonry template buildings as a strategy for seismic risk assessment in developing countries. Engineering Structures 274:114910. doi:10.1016/j.engstruct.2022.114910.
  • Danzi, E., L. Fiorentini, and L. Marmo. 2021 March 1. FLAME: A parametric fire risk assessment method supporting performance based approaches. Fire Technology 57 (2):721–65. doi:10.1007/s10694-020-01014-9.
  • D’Ayala, D., and S. Paganoni. 2011. Assessment and analysis of damage in L’Aquila Historic City Centre after 6th April 2009. Bulletin of Earthquake Engineering 9 (1):81–104. doi:10.1007/s10518-010-9224-4.
  • D’Ayala, D., and E. Speranza. 2003 February 1. Definition of collapse mechanisms and seismic vulnerability of historic masonry buildings. Earthquake Spectra 19 (3):479–509. doi:10.1193/1.1599896.
  • De Felice, G., and R. Giannini. 2001. Out-of-plane seismic resistance of masonry walls. Journal of Earthquake Engineering 5 (2):253–71. www.worldscientific.com.
  • DeLong, T. W. 1970. A fault tree Manual. Army materiel command texarkana tx intern training center.
  • Galea, P., R. P. Borg, D. Farrugia, M. Agius, S. D’Amico, A. Torpiano, and M. Bonello. 2015. Proceedings of the International Conference: Georisks in the Mediterranean and Their Mitigation. Valletta Campus: University of Malta. Accessed July 20–21, 2015. Mistral Service sas.
  • Giuffrè, A. 1993. Sicurezza e Conservazione Dei Centri Storici. Il Caso Ortigia, 279. Roma: Laterza.
  • Giuffrè, A., and C. Carocci. 1997. Codice Di Pratica per La Sicurezza e La Conservazione Dei Sassi Di Matera,302. Matera: La Bautta. Zétema.
  • Gulhane, A., A. Vyas, R. Mitra, R. Oruche, G. Hoefer, S. Valluripally, P. Calyam, and A. Hoque. 2019. Security, privacy and safety risk assessment for virtual reality learning environment applications. In 16th IEEE Annual Consumer Communications & Networking Conference (CCNC), Las Vegas, USA, 1–9.
  • Lagomarsino, S., and S. Podestà. 2004. Seismic vulnerability of ancient churches: I. Damage assessment and emergency planning. Earthquake Spectra 20 (2):377–94. doi:10.1193/1.1737735.
  • Lerup, L., D. Cronrath, and J. K. C. Liu. 1977. Learning from fire: A fire protection primer for architects. Berkeley: U.S. Department of Commerce. National Fire Prevention & Control Administration.
  • Longo, S. 1992. La Fondazione Del Monastero Di Santa Chiara in Matera. Bollettino Della Biblioteca Provinciale Di Matera 20–21:89–91.
  • Lourenço, P. B., D. V. Oliveira, J. C. Leite, J. M. Ingham, C. Modena, and F. da Porto. 2013. Simplified indexes for the seismic assessment of masonry buildings: International database and validation. Engineering Failure Analysis 34 (December):585–605. doi:10.1016/j.engfailanal.2013.02.014.
  • Lourenço, P. B., and J. A. Roque. 2006. Simplified indexes for the seismic vulnerability of ancient masonry buildings. Construction and Building Materials 20 (4):200–08. doi:10.1016/j.conbuildmat.2005.08.027.
  • Lucibello, G., G. Brandonisio, E. Mele, and A. De Luca. 2013. Seismic damage and performance of palazzo centi after L’Aquila Earthquake: A paradigmatic case study of effectiveness of mechanical steel ties. Engineering Failure Analysis 34 (December):407–30. doi:10.1016/j.engfailanal.2013.09.011.
  • MiBACT. 2011. Guidelines for the seismic risk evaluation and reduction of the cultural heritage - alignment to the technical standards for constructions (in Italian).
  • Nadkarni, R. R., and B. Puthuvayi. 2020. A comprehensive literature review of multi-criteria decision making methods in heritage buildings. Journal of Building Engineering. Elsevier Ltd. 32:101814. doi:10.1016/j.jobe.2020.101814.
  • NIKER. 2010. Deliverable 3.1. Inventory of earthquake-induced failure mechanisms related to construction types, structural elements, and materials. Grant Agreement No. 244123. Padova, Italy: Università degli Studi di Padova.
  • NTC. 2008. Norme Tecniche per le Costruzioni. D.M. 14/01/2008. Gazzetta Ufficiale n.29 del 04/02/2008, Supplemento Ordinario n.30. Roma: Ministero delle Infrastrutture e dei Trasporti.
  • NTC. 2018. Aggiornamento delle Norme Tecniche per le Costruzioni. D.M. 17/01/2018. Gazzetta Ufficiale n. 4 del 20/02/2018, Supplemento Ordinario n.8. Roma: Ministero delle Infrastrutture e dei Trasporti.
  • Penna, A. 2015 April 1. Seismic assessment of existing and strengthened stone-masonry buildings: Critical issues and possible strategies. Bulletin of Earthquake Engineering 13 (4):1051–71. doi:10.1007/s10518-014-9659-0.
  • Petracca, M., G. Camata, E. Spacone, and L. Pelà. 2023. Efficient constitutive Model for continuous micro-modeling of masonry structures. International Journal of Architectural Heritage 17 (1):134–46. doi:10.1080/15583058.2022.2124133.
  • Puncello, I., and S. Caprili. 2023. Seismic assessment of historical masonry buildings at different scale levels: A review. Applied Sciences (Switzerland). MDPI.13 (3):1941. doi:10.3390/app13031941.
  • Quagliarini, E., M. Lucesoli, and G. Bernardini. 2021. How to create seismic risk scenarios in historic built environment using rapid data collection and managing. Journal of Cultural Heritage 48 (March 1):93–105. doi:10.1016/j.culher.2020.12.007.
  • Ravankhah, M., M. Schmidt, and T. Will. 2021 September 1. An indicator-based risk assessment framework for world heritage sites in seismic zones: The case of “bam and Its cultural Landscape” in Iran. International Journal of Disaster Risk Reduction 63:102405. doi:10.1016/j.ijdrr.2021.102405.
  • Romão, X., E. Paupério, and N. Pereira. 2016. A framework for the simplified risk analysis of cultural heritage assets. Journal of Cultural Heritage 20 (July 1):696–708. doi:10.1016/j.culher.2016.05.007.
  • Ruggieri, S., A. Cardellicchio, V. Leggieri, and G. Uva. 2021 December 1. Machine-learning based vulnerability analysis of existing buildings. Automation in Construction 132:103936. doi:10.1016/j.autcon.2021.103936.
  • Ruggieri, S., F. S. Liguori, V. Leggieri, A. Bilotta, A. Madeo, S. Casolo, and G. Uva. 2023 September 1. An archetype-based automated procedure to derive global-local seismic fragility of masonry building aggregates: META-FORMA-XL. International Journal of Disaster Risk Reduction 95:103903. doi:10.1016/j.ijdrr.2023.103903.
  • Ruggieri, S., D. Perrone, M. Leone, G. Uva, and M. A. Aiello. 2020 December 1. A prioritization RVS methodology for the seismic risk assessment of RC school buildings. International Journal of Disaster Risk Reduction 51:101807. doi:10.1016/j.ijdrr.2020.101807.
  • Sangiorgio, V., A. Nettis, G. Uva, F. Pellegrino, H. Varum, and J. M. Adam. 2022 March 1. Analytical fault tree and diagnostic aids for the preservation of historical steel truss bridges. Engineering Failure Analysis 133:105996. doi:10.1016/j.engfailanal.2021.105996.
  • Sevieri, G., C. Galasso, D. D’Ayala, R. De Jesus, A. Oreta, M. E. D. A. Grio, and R. Ibabao. 2020. A multi-hazard risk prioritisation framework for cultural heritage assets. Natural Hazards and Earth System Sciences 20 (5):1391–414, May 20. doi:10.5194/nhess-20-1391-2020.
  • Watts, J. M. 1978. A theoretical rationalization of a goal-oriented systems approach to building fire safety. University of Massachusetts.
  • Wu, C., and J. O. Geremia. 1973. Analog simulation of a fire safety probability Model for high-rise buildings. Fire Technology 9 (3):176–81. doi:10.1007/BF02624774.

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