Engineering
Compressed Air Motors
100%
Turbine
52%
Structural Response
30%
Aerodynamic Design
30%
Design Engineering
30%
Rotors
23%
Hydrokinetics
20%
Quality Control
20%
Boundary Layer
20%
Fluid-Structure Interaction
20%
Wind Loading
20%
Tower
17%
Control Change
15%
Simulated Result
15%
Full Scale
14%
Blade Root
13%
Marine Energy
12%
Fatigue Load
10%
Fatigue Response
10%
Control Strategy
10%
Operational Data
10%
Steel Wire Rope
10%
Breaking Load
10%
Breakage
10%
Degradation Mechanism
10%
Strand
10%
Operational Load
10%
Wind Power
10%
Field Data
10%
Metrics
10%
Aerodynamics
10%
Renewable Energy
7%
Levelized Cost of Energy
6%
Simulation Result
5%
Pressure Force
5%
High Wind
5%
Power Output
5%
Site Condition
5%
Material Behavior
5%
Reduction Factor
5%
Rope Diameter
5%
Rigid Structure
5%
Lifting Operation
5%
Pressure Profile
5%
Strength Reduction Factor
5%
Diameter Ratio
5%
High Wind Speed
5%
Static Strength
5%
Capacity Reduction
5%
User Interfaces
5%
Earth and Planetary Sciences
Compressed Air Motors
30%
Data Quality
20%
Quality Control
20%
Hydromechanics
20%
Field Experiment
15%
Atmospheric Observation
10%
Boundary Layer
10%
Structural Response
10%
Wind Power
10%
Resource Assessment
8%
Wind Velocity
5%
Turbulent Flow
5%
Flow Distribution
5%
United States of America
5%
Radiation Measurement
5%
Atmospheric Radiation
5%
Oklahoma
5%
Aerodynamics
5%