Engineering
Vertical Axis Wind Turbine
100%
Computational Fluid Dynamics
65%
Power Output
58%
Aerodynamics
50%
Models
50%
Development
50%
Validation
50%
Turbulence
50%
Research
50%
Fluid Flow
33%
Performance
33%
Experiments
33%
Determines
25%
Testing
21%
Maximum Efficiency
16%
Simulation
16%
Estimation
16%
Turbine Efficiency
16%
Hybrid
16%
Reynolds-Averaged Navier-Stokes
16%
Wind Power
16%
Flow Mechanism
16%
Significant Increase
16%
Power Coefficient
16%
Wind
16%
Energy Market
16%
Horizontal Axis Wind Turbine
14%
Stream Velocity
8%
Dynamic Model
8%
Accuracy
8%
Vorticity
8%
Streamwise
8%
Flow Characteristic
8%
Turbulent Kinetic Energy
8%
Lifting Line
8%
Surfaces
8%
Roughness
8%
Free Vortex
8%
Consensus
7%
Investment
7%
Requirements
7%
Efficiency
7%
Analysis Method
7%
High Cost
7%
Demonstrates
7%
Computational Time
7%
Physics
Wind Turbine
100%
Turbine
80%
Arrays
66%
Impact
65%
Output
58%
Standard
50%
Aerodynamics
50%
Turbulence Model
50%
Wakes
50%
Performance
33%
Computational Fluid Dynamics
32%
Model
25%
Area
16%
Adjusting
16%
Simulation
16%
Fish
16%
Charge Flow Device
16%
Windpower Utilization
16%
Coefficients
16%
Estimates
8%
Inlet Flow
8%
Kinetic Energy
8%
Flow Characteristics
8%
Streams
8%
Speed
8%
Surface Roughness
8%
Vorticity
8%
Eddy
8%