Skip to main navigation
Skip to search
Skip to main content
Northern Arizona University Home
Home
Profiles
Departments and Centers
Scholarly Works
Activities
Grants
Datasets
Prizes
Search by expertise, name or affiliation
Water Distribution System Failure Risks with Increasing Temperatures
Emily N. Bondank
, Mikhail V. Chester
,
Benjamin L. Ruddell
Informatics, Computing, and Cyber Systems, School of
Research output
:
Contribution to journal
›
Article
›
peer-review
31
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Water Distribution System Failure Risks with Increasing Temperatures'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Increased Temperature
100%
System Failure
100%
Water Distribution Systems
100%
Failure Risk
100%
Service Outage
100%
Summer Temperature
50%
Percent Increase
50%
Pumping Unit
50%
Phoenix
25%
Las Vegas
25%
Climate Change
25%
Water Quality
25%
Water System
25%
Ambient Temperature
25%
Temperature Rise
25%
Effective Strategies
25%
Hardware Components
25%
Hot Summer
25%
Temperature Stress
25%
Fault Tree Model
25%
Chlorine Disinfection
25%
Component Failure
25%
Estimated Time to Failure
25%
Related Failure
25%
Chlorine Residual
25%
Operational Reliability
25%
Water Utilities
25%
Engineered Water Systems
25%
Unit Failure
25%
Potable Water Systems
25%
Engineering
Increasing Temperature
100%
Outages
100%
Water Distribution System
100%
Percent Increase
50%
Pumping Unit
50%
Noncompliance
50%
Disinfection
25%
Climate Change
25%
Temperature Increase
25%
Model Tree
25%
Residual Chlorine
25%
Component Failure
25%
Hardware System
25%
Related Failure
25%
Hardware Component
25%
Temperature Stress
25%