Keyphrases
Aerodynamic Loads
15%
Aerodynamics
34%
Arm Design
15%
Blade Element Momentum Theory
22%
Collective pitch
15%
Cost-effective Design
13%
Counter-rotating
15%
Design Approach
15%
Dual-rotor Wind Turbine
15%
Dynamic Inflow
31%
Dynamic Stall
28%
Dynamic Stall Model
31%
Fatigue Load
34%
Force Model
15%
Frequency Prediction
13%
Grand Challenges
15%
Gust
15%
High Angle of Attack
31%
Horizontal Axis Wind Turbine
23%
Individual pitch
15%
Inflow Effect
31%
Lessons Learned
15%
Lift Force
15%
Load Forecasting
15%
Measurement Approach
15%
Measurement Design
15%
Measurement Modeling
15%
Modeling Approach
15%
Negative Damping
13%
Parked Condition
13%
Pragmatic Model
15%
Rotor
26%
Second-order Dynamics
31%
Small Wind Turbine
42%
Software Design
13%
Stall Delay
15%
Stall Phenomenon
13%
Tangential Force
15%
Turbulence
15%
Turbulent Region
15%
Vortex Lift
15%
Vortex Shedding
26%
Wind Energy
36%
Wind Farm
18%
Wind Tunnel
17%
Wind Tunnel Test
15%
Wind Turbine
71%
Wind Turbine Aerodynamics
31%
Wind Turbine Farm
23%
Wind Turbine Technology
15%
Engineering
Actual Load
5%
Aerodynamic Load
15%
Airfoil
15%
Angle-of-Attack
36%
Annual Energy Production
7%
Axial Velocity
10%
Blade Element Momentum
26%
Blade Element Momentum Theory
15%
Blade Section
5%
Blade Turbine
5%
Collected Data
7%
Compressed Air Motors
100%
Constant Time
10%
Construction Design
7%
Design Code
11%
Engineering
15%
Engineering Model
23%
Experimental Finding
5%
Extreme Load
7%
Extreme Loading
7%
Fatigue Load
28%
Fatigue Loading
21%
Field Measurement
7%
Force Model
15%
Free Vortex
5%
Frequency Vibration
15%
Gust Loads
5%
Horizontal Axis Wind Turbine
23%
Induced Velocity
15%
Induction Factor
15%
Lift Force
15%
Load Distribution
5%
Lookup Table
5%
Model Fidelity
9%
Negative Damping
15%
Rotational
5%
Rotational Effect
5%
Rotor Blade
5%
Rotor Plane
15%
Rotors
32%
Safety Factor
15%
Steady Wind
5%
Tangential Force
15%
Transients
21%
Tunnel
15%
Vertical Axis Wind Turbine
7%
Vortex
15%
Vortex Shedding
31%
Wind Tunnel Test
15%
Wind Turbines Design
14%