PSI - Issue 64
Manuel Boccolini et al. / Procedia Structural Integrity 64 (2024) 2206–2213 Manuel Boccolini/ Structural Integrity Procedia 00 (2024) 000 – 000
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Fig. 9. Installation of a BEMS interface in the company's offices
5. Conclusion The Manini Connect monitoring system provides an advanced solution for interpreting the structural behavior of buildings, enabling intelligent and predictive maintenance management based on integrated monitoring, optimizing interventions and ensuring maximum functionality over time. Its diffusion, moreover, stands out for its facilitated installation costs and significant reduction in insurance premiums, thus promoting a vision of eco-sustainability in the construction sector. The industrialization of the system translates into a financial benefit through the annual reduction of all-risk insurance premiums for buildings equipped with the system. The flexibility and modular expandability of its architecture allow for widespread application, extending its use to other potential sectors such as the protection of artistic-architectural heritage and large public works. A future development of the system potential concerns a tentative integration with the Italian national net of accelerometers, as well as with the Department of Civil Protection, in order to provide additional useful information about the local distribution of both demand by the natural/anthropic event, and response by the monitored buildings. References Bosio, M., Di Salvatore, C., Bellotti, D., Capacci, L., Belleri, A., Piccolo, V., Cavalieri, F., Dal Lago, B., Riva, P., Magliulo, G., Nascimbene, R., Biondini, F., 2023. Modelling and seismic response analysis of non-residential single-storey existing precast buildings in Italy. Journal of Earthquake Engineering 27(4), 1047–1068. Casali, L., Dal Lago, B., Fulco, A., Mezzi, M., 2023. Environmental impact reduction of precast multi-storey buildings by crescent-moon seismic dampers hidden in beam-column joints. Proceedings of Life-Cycle of Structures and Infrastructure Systems – IALCCE2023 – 8th International Symposium on Life-Cycle Civil Engineering, Biondini F., Frangopol, D.M. (Eds), Milan, Italy, 2nd-6th July, 2523–2530. Coviello, G., Zichi A., Bellini, S., 2020. BIM and BMS for the management of the building: the Manini Connect case for Digital Twin services. 2nd level Master Thesis, European Master in Building Information Modeling BIM A+, F.lli Pesenti Master School, Politecnico di Milano. Dal Lago, B., 2017. Experimental and numerical assessment of the service behaviour of an innovative long-span precast roof element. International Journal of Concrete Structures and Materials 11(2), 261–273. Dal Lago, B., 2021. Vulnerability assessment of precast industrial facilities. Seismic Vulnerability Assessment of Civil Engineering Structures at Multiple Scales: From Single Buildings to Large-Scale Assessment, T.M. Ferreira and H. Rodrigues (ed.), Elsevier, 205–228. Dal Lago, B., Dal Lago, A., Marchetti, U., Basso, A., 2021. Behaviour and overstrength of a precast concrete roof with prestressed elements subjected to snow loading. Italian Concrete Days 2020 (ICD2020), Napoli, Italy, 10th-12th June. Dal Lago, B., Martinelli, L., Foti, F., 2022. Slender precast voided slabs under walking-induced vibration. Structural Concrete 23(6), 3416–3443. Dal Lago, B., Tucci, P., 2023. Causes of local collapse of a precast concrete industrial roof after a fire event. Computers & Concrete 31(5), 371– 384. Foti, F., Dal Lago, B., 2021. Mitigation of wind-induced vibrations in high-rise dry-assembled precast concrete residential tower buildings. 10th UBT International Conference on Civil Engineering, Infrastructure and Environment, Pristina, Kosovo, 29th-30th October, Paper No. 301. Fulco, A., Casali, L., Dal Lago, B., Comodini, F., Mezzi, M., 2024. Energy dissipation systems to optimize the seismic performance of precast residential buildings. Proceedings of 18th World Conference of Earthquake Engineering (18WCEE), Milan, Italy, 30th June-05th July, in print.
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