Comparative Qualitative and Quantitative Analyses of the Seismic Performance of Water Networks during the Maule 2010, Christchurch 2010–2011, and Tohoku 2011 Earthquakes

Author:

Alberto Yolanda1ORCID,De la Llera Juan Carlos2,Aguirre Paula3ORCID,Monsalve Mauricio4,Molinos Maria5

Affiliation:

1. Assistant Professor, Dept. of Civil Engineering, Univ. of Chile, Santiago 8370449, Chile; Researcher, National Research Center for Integrated Disaster Risk Management, Blanco Encalada 2002, Metropolitan Region, Santiago 7820436, Chile (corresponding author). ORCID: .

2. Professor, Dept. of Civil Engineering, Pontifical Catholic Univ. of Chile, Santiago 7820436, Chile; Researcher, National Research Center for Integrated Disaster Risk Management, Santiago 7820436, Chile.

3. Assistant Professor, Institute for Mathematical and Computational Engineering, School of Engineering, Pontifical Catholic Univ. of Chile, Santiago 7820436, Chile; Researcher, National Research Center for Integrated Disaster Risk Management, Santiago 7820436, Chile. ORCID:

4. Adjunct Assistant Professor, Dept. of Computer Science, Pontifical Catholic Univ. of Chile, Santiago 7820436, Chile; Researcher, National Research Center for Integrated Disaster Risk Management, Santiago 7820436, Chile.

5. Associate Professor, Dept. of Civil Engineering, Pontifical Catholic Univ. of Chile, Santiago 7820436, Chile; Researcher, National Research Center for Integrated Disaster Risk Management, Santiago 7820436, Chile.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Management, Monitoring, Policy and Law,Water Science and Technology,Geography, Planning and Development,Civil and Structural Engineering

Reference94 articles.

1. AIDIS (Asociación Interamericana de Ingeniería Sanitaria y Ambiental). 2010. “Terremoto en Chile. Impactos en el sector sanitario.” In Chilean chapter of the Interamerican Association of Sanitary and Environmental Engineering. Santiago, Chile: AIDIS Chile.

2. Alexoudi M. K. Kakderi and K. Pitilakis. 2008. “Seismic risk of interdependent lifeline system using fuzzy reasoning.” In Proc. 14th World Conf. on Earthquake Engineering 1–8. Tokyo: International Association of Earthquake Engineering.

3. Aung Z. and K. Watanabe. 2009. “A framework for modeling interdependencies in Japan’s critical infrastructures.” In Proc. Int. Federation for Information Processing 2009: Critical Infrastructure Protection III IFIP AICT 311 edited by C. Palmer and S. Shenoi 243–257. Amsterdam Netherlands: International Federation for Information Processing.

4. Investigating the technical dimension of water supply resilience to disasters

5. A Decision-Support Algorithm for Post-Earthquake Water Services Recovery and Its Application to the 22 February 2011 Mw6.2 Christchurch Earthquake

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