Absorptive Resilience Phase Assessment Based on Criticality Performance Indicators for Water Distribution Networks

Author:

Ayala-Cabrera David1ORCID,Piller Olivier2ORCID,Herrera Manuel3ORCID,Gilbert Denis4,Deuerlein Jochen5

Affiliation:

1. Postdoctoral Research Fellow, Dept. of Water, National Research Institute of Science and Technology for Environment and Agriculture, Ingeniousware GmbH, Cestas F-33612, France; Doctor of Engineering, Ingeniousware GmbH, Jollystraße 11, Karlsruhe 76137, Germany (corresponding author). ORCID: .

2. Senior Research Scientist, Dept. of Water, Bordeaux Regional Centre, National Research Institute of Science and Technology for Environment and Agriculture, UR ETBX, 50 Ave. de Verdun, Gazinet, Cestas F-33612, France; Adjunct Senior Lecturer, School of Civil, Environmental, and Mining Engineering, Univ. of Adelaide, Adelaide, SA 5005, Australia. ORCID:

3. Research Associate, Dept. of Engineering, Univ. of Cambridge, 17 Charles Babbage Rd., Cambridge CB3 0FS, UK. ORCID:

4. Research Engineer, Dept. of Water, Bordeaux Regional Centre, Irstea, UR ETBX, 50 Ave. de Verdun, Gazinet, Cestas F-33612, France.

5. Senior Researcher, 3S Consult GmbH, Albtalstrae 13, D 76137 Karlsruhe, Germany; Adjunct Senior Lecturer, School of Civil, Environmental, and Mining Engineering, Univ. of Adelaide, Adelaide, SA 5005, Australia.

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

Reference87 articles.

1. Consequence management of chemical intrusion in water distribution networks under inexact scenarios

2. Multiobjective Optimization of Operational Responses for Contaminant Flushing in Water Distribution Networks

3. Alonso C. D. 2008. “Programación óptima de la renovación de tuberías en un sistema de abastecimiento urbano: Análisis de los factores de influencia.” M.S. thesis Hydraulic Engineering and Environment Dept. Universitat Politècnica de València.

4. Design of optimal water distribution systems

5. GPR-Based Water Leak Models in Water Distribution Systems

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