Two-Dimensional Seismic Response Analysis to Evaluate the Site Effects of the New Belvedere Bridge (L’Aquila, Central Italy)

Author:

Totani Ferdinando1ORCID

Affiliation:

1. Department of Civil Construction-Architecture and Environmental Engineering, University of L’Aquila, 67100 L’Aquila, Italy

Abstract

To evaluate the importance of the site effects of large structures such as the new Belvedere Bridge (L’Aquila), which crosses a 25 m deep and 100 m valley in the city, one-dimensional and two-dimensional analyses were used to model the seismic response. The results indicate that the valley effects and the geometry of the bridge construction section have a significant influence on ground motions, especially at the points where the natural morphology has been altered by civil works carried out over time. In the presence of vertically propagating shear waves (SVs), the synthetic parameters of seismic motion, such as the maximum ground acceleration (PGA), the amplification factors (AFs), and the elastic acceleration response spectra (Ses), are crucial aspects to identify. The different motions generated between the anchorage points of the bridge foundations, even though they exhibit reduced proportions, and the site effects should be considered in bridge design.

Publisher

MDPI AG

Subject

General Medicine

Reference33 articles.

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2. Seismic response analysis in the southern part of the historic centre of the City of L’Aquila (Italy);Ferraro;Soil Dyn. Earthq. Eng.,2016

3. Kramer, S.L. (1996). Geotechnical Earthquake Engineering, Pearson Education.

4. Psarropoulos, P.N. (2009). Coupled Site and Soil-Structure Interaction Effects with Application to Seismic Risk Mitigation, Springer.

5. Faccioli, E., Vanini, M., and Frassine, L. (2002, January 9–13). Complex site effects in earthquake ground motion, including topography. Proceedings of the 12th European Conference on Earthquake Engineering, London, UK.

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