Simplified Analytical/Mechanical Procedure for Post-earthquake Safety Evaluation and Loss Assessment of Buildings

Author:

Pampanin S.

Abstract

AbstractThe crucial need to develop and implement simple and cost-effective repair and retrofit strategies and solutions for existing structures has been once again emphasized, if at all needed, by the recent catastrophic earthquake events. The significant socio-economic impacts of the Canterbury earthquakes sequence in 2010–2011 as well as of the “series” of independent events within few years in Italy (L’Aquila 2009; Emilia 2012; Central Italy 2016) have triggered a stepchange in the high-level approach towards the implementation of seismic risk reduction, introducing either a mandatory enforcement or significant financial incentives for a national-wide program to assess (and reduce by remedial intervention) the seismic vulnerability/capacity of the whole (non-dwelling) building stock, including safety and expected repairing costs (direct economic losses). This chapter provides an overview of the motivations, challenges and (possible) solutions for such a complex and delicate task with the intent to stimulate awareness, discussion and synergetic actions within the wider international community. Particular focus will be given to the development and on-going continuos refinement of a simplified analytical-mechanical methodology—referred to as SLaMA (Simple Lateral Mechanism Analysis) method—as part of a proposed integrated methodology for either pre- and post-earthquake safety evaluation and loss assessment of buildings, in order to support the engineering community and stakeholders through the various steps of the decision making process of risk (assessment and) reduction.

Publisher

Springer International Publishing

Reference42 articles.

1. Building Act (2004) Department of building and housing-Te Tari Kaupapa Whare, ministry of economic development, New Zealand Government, Wellington, New Zealand

2. Beetham T (2013) Simplified displacement based performance assessment of retrofit alternatives for decision making. Master thesis, IUSS, University of Pavia, Italy

3. Bianchi S, Ciurlanti, J, Pampanin S (2019) A SLaMA-based analytical procedure for the Cost/Performance-based evaluation of buildings. In: Compdyn Conference, Crete, Greece

4. Building (Earthquake-prone Buildings) Amendment Act (2016) New Zealand Government, Wellington, New Zealand

5. CERC (2012) Canterbury Earthquake Royal Commission, https://canterbury.royalcommission.govt.nz

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