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Multi-element airfoil configurations for wind turbines
Adam M. Ragheb
,
Michael S. Selig
Aerospace Engineering
Research output
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Chapter in Book/Report/Conference proceeding
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Conference contribution
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Keyphrases
Wind Turbine
100%
Airfoil
100%
High-lift
100%
Multi-element Airfoil
100%
Ratio Coefficient
66%
Lift Coefficient
66%
Lift-to-drag Ratio
66%
Blade Root
66%
Operating Conditions
33%
Computational Study
33%
Reynolds number
33%
Geometry-aware
33%
Strut
33%
Multipoint
33%
Aerodynamics
33%
Flap
33%
Multi-element
33%
Technology Design
33%
Blade Loading
33%
Angle of Attack
33%
Megawatt
33%
Inviscid
33%
Performance Increase
33%
Slat
33%
Element Configuration
33%
Unsteady Aerodynamics
33%
Inverse Airfoil Design
33%
Starting Performance
33%
Airfoil Geometry
33%
Stall Characteristics
33%
Blade Fatigue
33%
Utility-scale Wind Turbine
33%
Thick Airfoil
33%
Spar Cap
33%
Engineering
Airfoil
100%
Element Airfoil
100%
Compressed Air Motors
100%
Lift Coefficient
50%
Lift to Drag Ratio
50%
Blade Root
50%
Aerodynamics
50%
Reynolds' Number
25%
Max
25%
Design Method
25%
Flaps
25%
Angle-of-Attack
25%
Airfoil Geometry
25%
Thick Airfoil
25%