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2023 | OriginalPaper | Buchkapitel

Dynamic Characterisation and Seismic Vulnerability Assessment of Existing Masonry Port Structures

verfasst von : Raffaele Tarantini, Alessandro Cardoni, Sebastiano Marasco, Jacopo Merlin, Enrico Pribaz, Gianluca Rupolo, Marco Domaneschi, Gian Paolo Cimellaro

Erschienen in: Seismic Isolation, Energy Dissipation and Active Vibration Control of Structures

Verlag: Springer International Publishing

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Abstract

This paper focuses on the dynamic identification and the seismic vulnerability assessment of an existing masonry port structure located in Livorno (Italy), which is a former railway station bombed and reconstructed after WWII. To this end, a historical-critical analysis, and an investigation and testing campaign has been carried out, along with a number of Ambient Vibration Tests (AVT). According to the Operational Modal Analysis (OMA), a Frequency Domain Decomposition (FDD) algorithm has been leveraged for dynamic identification. The severe noise around the harbour area and the poor soil quality make it difficult to identify the modal parameters of the structure, even if specific signal processing techniques were applied to remove the interferences. Although a ground sensor is not needed for output-only identification, it has been useful to identify a local phenomenon that it would have been arduous to figure out without its support. The investigations and the test outputs have been the baseline to create a finite element model, although not reproducing the real structural behaviour of some simplifying assumptions. However, the dynamic Structural Health Monitoring (SHM) outcomes have not been leveraged to calibrate it. A Modal Response Spectrum Analysis (MRSA) and a non-linear static (Pushover) analysis (POA) have been carried out to determine the structure capacity, and thus the Seismic Vulnerability Index (SVI) of the simplified model.

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Literatur
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Zurück zum Zitat Cimellaro, G.P., Piantà, S., De Stefano, A.: Output-only modal identification of ancient L’Aquila city hall and civic tower. J. Struct. Eng. 138(4) (2012) Cimellaro, G.P., Piantà, S., De Stefano, A.: Output-only modal identification of ancient L’Aquila city hall and civic tower. J. Struct. Eng. 138(4) (2012)
2.
Zurück zum Zitat Marasco, S., Zamani Noori, A., Domaneschi, M., Cimellaro, G.P.: Seismic vulnerability assessment indices for buildings: proposals, comparisons and methodologies at collapse limit states. Int. J. Disaster Risk Reduction 63, 102466 (2021)CrossRef Marasco, S., Zamani Noori, A., Domaneschi, M., Cimellaro, G.P.: Seismic vulnerability assessment indices for buildings: proposals, comparisons and methodologies at collapse limit states. Int. J. Disaster Risk Reduction 63, 102466 (2021)CrossRef
3.
Zurück zum Zitat Domaneschi, M., Zamani Noori, A., Pietropinto, M.M.V., Cimellaro, G.P.: Seismic vulnerability assessment of existing school buildings. Comput. Struct. 248, 106522 (2021) Domaneschi, M., Zamani Noori, A., Pietropinto, M.M.V., Cimellaro, G.P.: Seismic vulnerability assessment of existing school buildings. Comput. Struct. 248, 106522 (2021)
4.
Zurück zum Zitat Brincker, R., Zhang, L., Andersen, P.: Modal identification of output only systems using frequency domain decomposition. Smart Mater. Struct. 10(3) (2001) Brincker, R., Zhang, L., Andersen, P.: Modal identification of output only systems using frequency domain decomposition. Smart Mater. Struct. 10(3) (2001)
5.
Zurück zum Zitat Pasticier, L., Amadio, C., Fragiacomo, M.: Non-linear seismic analysis and vulnerability evaluation of a masonry building by means of the SAP2000 V 10 code. Earthquake Eng. Struct. Dynam. 37(3), 467–485 (2007)CrossRef Pasticier, L., Amadio, C., Fragiacomo, M.: Non-linear seismic analysis and vulnerability evaluation of a masonry building by means of the SAP2000 V 10 code. Earthquake Eng. Struct. Dynam. 37(3), 467–485 (2007)CrossRef
Metadaten
Titel
Dynamic Characterisation and Seismic Vulnerability Assessment of Existing Masonry Port Structures
verfasst von
Raffaele Tarantini
Alessandro Cardoni
Sebastiano Marasco
Jacopo Merlin
Enrico Pribaz
Gianluca Rupolo
Marco Domaneschi
Gian Paolo Cimellaro
Copyright-Jahr
2023
DOI
https://doi.org/10.1007/978-3-031-21187-4_90