Simplified seismic loss assessment for optimal structural retrofit of RC buildings

Author:

Gentile Roberto1ORCID,Galasso Carmine23

Affiliation:

1. Institute for Risk and Disaster Reduction, University College London, London, UK

2. Department of Civil, Environmental and Geomatic Engineering, University College London, London, UK

3. Scuola Universitaria Superiore (IUSS) Pavia, Pavia, Italy

Abstract

This study deals with selecting optimal seismic retrofit solutions for reinforced concrete (RC) buildings. To this aim, multi-criteria decision-making (MCDM) is implemented explicitly considering earthquake-induced economic loss as a decision criterion. Fragility (i.e. likelihood of damage levels vs intensity measure ( IM) levels) and vulnerability (i.e. likelihood of loss levels vs IM levels) relationships are derived by using three increasingly refined analysis methods: Simple Lateral Mechanism Analysis; numerical pushover; time-history analysis. A seismically deficient RC school index building, with construction details typical of developing countries, is used for illustrative purposes. Concrete jacketing, addition of concrete walls, and addition of steel braces are the considered retrofit alternatives. Intensity-based expected loss and expected annual loss are adopted in the MCDM, among other criteria, independently derived with the three analysis methods. It is shown that, given the adopted loss-analysis methodology, the ranking of the retrofit alternatives is insensitive to both analysis methods and loss metrics, even when the weight for the seismic loss criterion is high. These findings suggest that simplified methods can be effectively employed in the conceptual/preliminary design of retrofit alternatives.

Publisher

SAGE Publications

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

Reference47 articles.

1. EqHaz: An Open-Source Probabilistic Seismic-Hazard Code Based on the Monte Carlo Simulation Approach

2. Correlation of Spectral Acceleration Values from NGA Ground Motion Models

3. Benayoun R, Roy B, Sussman N (1966) Manual de Reference du Programme Electre. Mote de Synthese et Formaton, No. 25. Paris: Direction Scientifique SEMA.

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