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Analysis of water hammer in pipelines by partial fraction expansion of transfer function in frequency domain
Jun-Shin Lee, Bong-Ki Kim, Wook-Ryun Lee and Ki-Yong Oh
The Journal of Mechanical Science and Technology, vol. 24, no. 10, pp.1975-1980, 2010
Abstract : Understanding water hammer is very important to the prevention of excessive pressure build-up in pipelines. Many researchers have
studied this phenomenon, drawing effective solutions through the time- and frequency-domain approaches. For the purposes of enhancing
the advantages of the frequency-domain approach and, thereby, rendering investigations of the dynamic characteristics of pipelines
more effective, we propose partial fraction expansion of the transfer function between the unsteady flow source and a given section. We
simulate the proposed approach using a vibration element inserted into a simple pipeline, deducing much useful physical information
pertaining to pipeline design. We conclude that locating the resonance of the vibration element between the first and second resonances
of the pipeline can mitigate the excessive pressure build-up attendant on the occurrence of water hammer. Our method of partial fraction
expansion is expected to be useful and effective in analyses of unsteady flows in pipelines.
Keyword : Design of pipeline; Water hammer; Frequency-domain analysis; Partial fraction expansion; Piston-type accumulator; Bladder-type accumulator |
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