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A Systematic Review of Quantitative Resilience Measures for Water Infrastructure Systems
Water (Basel), 2018-02, Vol.10 (2), p.164
[Peer Reviewed Journal]
COPYRIGHT 2018 MDPI AG ;Copyright MDPI AG 2018 ;ISSN: 2073-4441 ;EISSN: 2073-4441 ;DOI: 10.3390/w10020164
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Title:
A Systematic Review of Quantitative Resilience Measures for Water Infrastructure Systems
Author:
Shin, Sangmin
;
Lee, Seungyub
;
Judi, David
;
Parvania, Masood
;
Goharian, Erfan
;
McPherson, Timothy
;
Burian, Steven
Subjects:
Aquatic resources
;
Cascading
;
Damage
;
Damage detection
;
Decision making
;
ENGINEERING
;
Evaluation
;
Infrastructure
;
Infrastructure (Economics)
;
Quantitative analysis
;
reliability
;
Resilience
;
Reviews
;
security
;
water
;
water distribution network
;
Water engineering
;
water infrastructure system
;
Water management
;
Water resources
;
water resources system
;
water supply
;
Water supply systems
Is Part Of:
Water (Basel), 2018-02, Vol.10 (2), p.164
Description:
Over the past few decades, the concept of resilience has emerged as an important consideration in the planning and management of water infrastructure systems. Accordingly, various resilience measures have been developed for the quantitative evaluation and decision-making of systems. There are, however, numerous considerations and no clear choice of which measure, if any, provides the most appropriate representation of resilience for a given application. This study provides a critical review of quantitative approaches to measure the resilience of water infrastructure systems, with a focus on water resources and distribution systems. A compilation of 11 criteria evaluating 21 selected resilience measures addressing major features of resilience is developed using the Axiomatic Design process. Existing gaps of resilience measures are identified based on the review criteria. The results show that resilience measures have generally paid less attention to cascading damage to interrelated systems, rapid identification of failure, physical damage of system components, and time variation of resilience. Concluding the paper, improvements to resilience measures are recommended. The findings contribute to our understanding of gaps and provide information to help further improve resilience measures of water infrastructure systems.
Publisher:
Basel: MDPI AG
Language:
English
Identifier:
ISSN: 2073-4441
EISSN: 2073-4441
DOI: 10.3390/w10020164
Source:
Geneva Foundation Free Medical Journals at publisher websites
ROAD: Directory of Open Access Scholarly Resources
ProQuest Central
DOAJ Directory of Open Access Journals
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