Two-scale dynamics of flow past a partial cross-stream array of tidal turbines
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Publication:5165731
DOI10.1017/JFM.2013.340zbMath1291.76115OpenAlexW2043464788MaRDI QIDQ5165731
Takafumi Nishino, Richard H. J. Willden
Publication date: 30 June 2014
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: http://dspace.lib.cranfield.ac.uk/handle/1826/10457
Hydrology, hydrography, oceanography (86A05) Finite volume methods applied to problems in fluid mechanics (76M12) Wakes and jets (76D25)
Related Items (11)
Numerical study on the limit of power extraction by a dense cross-stream array of wind turbines ⋮ A one-dimensional model for tidal array design based on three-scale dynamics ⋮ Two-scale momentum theory for time-dependent modelling of large wind farms ⋮ On the arrangement of tidal turbines in rough and oscillatory channel flow ⋮ Performance and wake characteristics of tidal turbines in an infinitely large array ⋮ Fractal-like actuator disc theory for optimal energy extraction ⋮ Flow through a very porous obstacle in a shallow channel ⋮ Power extraction by a water turbine in inviscid free surface flow with vertical shear ⋮ Upper limit for tidal power with lateral bypass ⋮ Performance of an ideal turbine in an inviscid shear flow ⋮ Single and multi-row turbine performance in bounded shear flow
Cites Work
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- The numerical computation of turbulent flows
- The efficiency of an array of tidal turbines partially blocking a wide channel
- Tuning turbines in a tidal channel
- Tuning tidal turbines in-concert to maximise farm efficiency
- A free-surface and blockage correction for tidal turbines
- Numerical study of the turbulent flow past an airfoil with trailing edge separation
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