Merging Fluid Transient Waves and Artificial Neural Networks for Burst Detection and Identification in Pipelines

Author:

Bohorquez Jessica1ORCID,Simpson Angus R.2,Lambert Martin F.3ORCID,Alexander Bradley4ORCID

Affiliation:

1. Ph.D. Candidate, School of Civil, Environmental and Mining Engineering, Univ. of Adelaide, Adelaide 5005, Australia. ORCID: .

2. Professor, School of Civil, Environmental and Mining Engineering, Univ. of Adelaide, Adelaide 5005, Australia (corresponding author).

3. Professor, School of Civil, Environmental and Mining Engineering, Univ. of Adelaide, Adelaide 5005, Australia. ORCID: .

4. Senior Lecturer, School of Computer Science, Univ. of Adelaide, Adelaide 5005, Australia. ORCID: .

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

Reference45 articles.

1. Water leakage detection using remote sensing, field spectroscopy and GIS in semiarid areas of Cyprus

2. Hybrid Statistical Process Control Method for Water Distribution Pipe Burst Detection

3. Implicit state-estimation technique for water network monitoring

4. Leak Detection and Topology Identification in Pipelines Using Fluid Transients and Artificial Neural Networks

5. Bohorquez J. A. R. Simpson and M. F. Lambert. 2018. “Characterization of transient pressure traces due to the effects of different anomalies and features in water pipelines.” In Proc. 13th Pressure Surges Conf. 151–169. Canfield UK: BHR Group.

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