Numerical Investigation on the Performance of a Prototyped Tidal Turbine
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-67152-4_20
Reference12 articles.
1. Finnegan, W., Fagan, E., Flanagan, T., Doyle, A., Goggins, J.: Operational fatigue loading on tidal turbine blades using computational fluid dynamics. Renew. Energy 152, 430–440 (2020)
2. Bahaj, A.S., Molland, A.F., Chaplin, J.R., Batten, W.M.J.: Power and thrust measurements of marine current turbines under various hydrodynamic flow conditions in a cavitation tunnel and a towing tank. Renew. Energy 32(3), 407–426 (2007)
3. Galloway, P.W., Myers, L.E., Bahaj, A.B.S.: Quantifying wave and yaw effects on a scale tidal stream turbine. Renew. Energy 63, 297–307 (2014)
4. O’Rourke, F., Boyle, F., Reynolds, A., Kennedy, D.M.: Hydrodynamic performance prediction of a tidal current turbine operating in non-uniform inflow conditions. Energy 93(2), 2483–2496 (2015)
5. Amiri Tavasoli, S., Jalal Hemmati, S., Niazi, S., Jalali, A.: The effects of blade configurations on performance of a tidal vertical axis turbine. In: Boundary Layer Flows - Modelling, Computation, and Applications of Laminar, Turbulent Incompressible and Compressible Flows. IntechOpen (2023). https://doi.org/10.5772/intechopen.105645
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