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Unsteady flow around a two-dimensional section of a vertical axis turbine for tidal stream energy conversion

Authors
Jung, Hyun JuLee, Ju HyunRhee, Shin HyungSong, MuseokHyun, Beom-Soo
Issue Date
Dec-2009
Publisher
SOC NAVAL ARCHITECTS KOREA
Keywords
Tidal Stream Energy Conversion; Vertical Axis Turbine; Computational Fluid Dynamics
Citation
INTERNATIONAL JOURNAL OF NAVAL ARCHITECTURE AND OCEAN ENGINEERING, v.1, no.2, pp.64 - 69
Journal Title
INTERNATIONAL JOURNAL OF NAVAL ARCHITECTURE AND OCEAN ENGINEERING
Volume
1
Number
2
Start Page
64
End Page
69
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/21764
DOI
10.3744/JNAOE.2009.1.2.064
ISSN
2092-6782
Abstract
The two-dimensional unsteady flow around a vertical axis turbine for tidal stream energy conversion was investigated using a computational fluid dynamics tool solving the Reynolds-Averaged Navier-Stokes equations. The geometry of the turbine blade section was NACA653-018 airfoil. The computational analysis was done at several different angles of attack and the results were compared with the corresponding experimental data for validation and calibration. Simulations were then carried out for the two-dimensional cross section of a vertical axis turbine. The simulation results demonstrated the usefulness of the method for the typical unsteady flows around vertical axis turbines. The optimum turbine efficiency was achieved for carefully selected combinations of the number of blades and tip speed ratios.
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