LAPSE:2023.22083
Published Article
LAPSE:2023.22083
Numerical Study of the Winter−Kennedy Flow Measurement Method in Transient Flows
Binaya Baidar, Jonathan Nicolle, Bhupendra K. Gandhi, Michel J. Cervantes
March 23, 2023
This paper explores the possibility of using the Winter−Kennedy (WK) method for transient flow rate measurement in hydraulic turbines. Computational fluid dynamic (CFD) analysis of a numerical model of an axial turbine was carried out for accelerating and decelerating flows. Those were obtained by linearly opening and closing of the guide vanes, respectively, while retaining the inlet pressure constant during the simulations. The behavior of several WK configurations on a cross-sectional plane and along the azimuthal direction of the spiral casing was studied during the transients. The study showed that there are certain WK configurations that are more stable than others. The physical mechanism behind the stability (or instability) of the WK method during transients is presented. Using the steady WK coefficient obtained at the best efficiency point (BEP), the WK method could estimate the transient flow rate with a deviation of about 7.5% and 3.5%, for accelerating and decelerating flow, respectively.
Keywords
Computational Fluid Dynamics, flow rate, hydropower, transient flow, Winter–Kennedy
Suggested Citation
Baidar B, Nicolle J, Gandhi BK, Cervantes MJ. Numerical Study of the Winter−Kennedy Flow Measurement Method in Transient Flows. (2023). LAPSE:2023.22083
Author Affiliations
Baidar B: Division of Fluid and Experimental Mechanics, Luleå University of Technology, SE-97187 Luleå, Sweden
Nicolle J: Institut de recherche d’Hydro-Québec (IREQ), Varennes, QC J3X 1S1, Canada
Gandhi BK: Department of Mechanical and Industrial Engineering, Indian Institute of Technology, Roorkee, Uttarakhand 247667, India
Cervantes MJ: Division of Fluid and Experimental Mechanics, Luleå University of Technology, SE-97187 Luleå, Sweden
Journal Name
Energies
Volume
13
Issue
6
Article Number
E1310
Year
2020
Publication Date
2020-03-11
Published Version
ISSN
1996-1073
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Original Submission
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PII: en13061310, Publication Type: Journal Article
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doi:10.3390/en13061310
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