Energy Analysis for Transient-Leak Interaction and Implication to Leak Detection in Water Pipeline Systems

被引:2
作者
Pan, Bin [1 ]
Keramat, Alireza [1 ]
Duan, Huan-Feng [1 ]
机构
[1] Hong Kong Polytech Univ, Dept Civil & Environm Engn, Hung Hom, Kowloon, Hong Kong 999077, Peoples R China
关键词
Pipeline; Transient flow; Pipe leak; Transient energy analysis; Energy exchange; TURBULENT FRICTION; FREQUENCY-RESPONSE; DAMAGE DETECTION; FLOW; VISCOELASTICITY; SINGLE; PIPES;
D O I
10.1061/JHEND8.HYENG-13348
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Any transient event in a pipeline system is an energy process, implying that the dynamic response can be interpreted and analyzed through energy transfer between different forms, including potential (internal), kinetic, and losses. This water hammer energy approach to investigating the impacts of leaks uncovers notable insights about transient-leak interaction in fluid-filled pipelines. In this paper, the energy exchanges in leaky conveyance pipeline systems, including elastic and viscoelastic pipes with various leak sizes and locations, are analyzed and compared with intact pipe cases, thus revealing the extent to which a leak can vary the transient internal and kinetic energy intensity. The results are supported by an extensive numerical analysis that describes transient energy in different cases and illustrates transient stability conditions from a new perspective. Finally, practical implications for developing transient-based leak detection methods are drawn specifically when data from multiple stations are available, and the limitations of this study are summarized in the end of the paper.
引用
收藏
页数:12
相关论文
共 43 条
[1]   Numerical analysis of the transient pressure damping in a single polymeric pipe with a leak [J].
Brunone, B. ;
Meniconi, S. ;
Capponi, C. .
URBAN WATER JOURNAL, 2018, 15 (08) :760-768
[2]   Transient test-based technique for leak detection in outfall pipes [J].
Brunone, B .
JOURNAL OF WATER RESOURCES PLANNING AND MANAGEMENT-ASCE, 1999, 125 (05) :302-306
[3]   Energy Assessment of Pressurized Water Systems [J].
Cabrera, E. ;
Gomez, E. ;
Cabrera, E., Jr. ;
Soriano, J. ;
Espert, V. .
JOURNAL OF WATER RESOURCES PLANNING AND MANAGEMENT, 2015, 141 (08)
[4]   Energy relationships in transient pipe flow with fluid-structural interaction [J].
Cao, Huade ;
Wei, Dingbang ;
Xia, Jianxin .
OCEAN ENGINEERING, 2022, 264
[5]   Time-domain Analysis of Laboratory Experiments on the Transient Pressure Damping in a Leaky Polymeric Pipe [J].
Capponi, Caterina ;
Meniconi, Silvia ;
Lee, Pedro J. ;
Brunone, Bruno ;
Cifrodelli, Marco .
WATER RESOURCES MANAGEMENT, 2020, 34 (02) :501-514
[6]  
Chaudhry M.H., 2014, Applied hydraulic transients, V3rd
[7]   Energy Analysis of the Resonant Frequency Shift Pattern Induced by Nonuniform Blockages in Pressurized Water Pipes [J].
Che, T. C. ;
Duan, H. F. ;
Pan, B. ;
Lee, P. J. ;
Ghidaoui, M. S. .
JOURNAL OF HYDRAULIC ENGINEERING, 2019, 145 (07)
[8]   Transient wave-based methods for anomaly detection in fluid pipes: A review [J].
Che, Tong-Chuan ;
Duan, Huan-Feng ;
Lee, Pedro J. .
MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2021, 160
[9]   Impacts of leaks on energy consumption in pumped systems with storage [J].
Colombo, AF ;
Karney, BW .
JOURNAL OF WATER RESOURCES PLANNING AND MANAGEMENT-ASCE, 2005, 131 (02) :146-155
[10]   Energy and costs of leaky pipes: Toward comprehensive picture [J].
Colombo, AF ;
Karney, BW .
JOURNAL OF WATER RESOURCES PLANNING AND MANAGEMENT-ASCE, 2002, 128 (06) :441-450