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Theoretical method of selecting number of buckets for the design and verification of a Pelton turbine

Authors
Kim, Jeong-WonJo, In ChanPark, Joo HoonShin, YouhwanChung, Jin Taek
Issue Date
2017
Publisher
TAYLOR & FRANCIS LTD
Keywords
Angle of attack; hydraulic machinery design; hydraulics of renewable energy systems; laboratory studies; number of buckets; Pelton turbine; speed ratio
Citation
JOURNAL OF HYDRAULIC RESEARCH, v.55, no.5, pp.695 - 705
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF HYDRAULIC RESEARCH
Volume
55
Number
5
Start Page
695
End Page
705
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/86425
DOI
10.1080/00221686.2017.1354933
ISSN
0022-1686
Abstract
In this study, we develop a theoretical formula for determining the optimum number of buckets required for achieving the maximum possible efficiency of a Pelton turbine. In addition, by deriving an improved formula for determining the speed ratio limit at which a missing jet begins, we obtain a valid condition for the selection of the number of buckets. To validate these formulas, we conduct a performance test on a pico-scale Pelton turbine by using runners with different numbers of buckets. The results of the performance test validate both the formula for bucket selection, by confirming that the calculated number of buckets maximizes the efficiency of the Pelton turbine, and the formula for the speed ratio limit. We conduct an additional performance test on a micro-scale Pelton turbine, the results of which also verify the formula for selecting the number of buckets. This study should help researchers determine the appropriate number of buckets when designing a highly efficient Pelton turbine.
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