International Journal of Rotating Machinery · 2008 · 13 citations · 12 references
Wave Energy ExtractionElectrical EngineeringEnergy HarvestingEngineeringImpulse TurbineMean Line AnalysisAerospace EngineeringEnergy ConversionWind Turbine BladesGas Turbine EngineAerodynamicsEnergy ExtractionWind Turbine ModelingWind Turbine AerodynamicsWave EnergyVibration ControlFluid Machinery
This work presents a mean line analysis for the prediction of the performance and aerodynamic loss of axial flow impulse turbine wave energy extraction, which can be easily incorporated into the turbine design program. The model is based on the momentum principle and the well‐known Euler turbine equation. Predictions of torque, pressure drop, and turbine efficiency showed favorable agreement with experimental results. The variation of the flow incidence and exit angles with the flow coefficient has been reported for the first time in the field of wave energy extraction. Furthermore, an optimum range of upstream guide vanes setting up angle was determined, which optimized the impulse turbine performance prediction under movable guide vanes working condition.
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Mechanics and thermodynamics of propulsion
R. P. Kroon · Journal of the Franklin Institute · 1965 · 532 citations
Fluid dynamics and heat transfer of turbomachinery
Choice Reviews Online · 1996 · 434 citations
Heat Transfer Process, Engineering, Aerospace Engineering +11