Keyphrases
Non-steady
100%
Detached Eddy Simulation
100%
Large Eddy Simulation
100%
Wind Turbine Blade
100%
Atmospheric Boundary Layer Turbulence
100%
Rotor Blade
100%
Undergraduate Students
66%
Atmospheric State
66%
Fluctuating Force
66%
Atmospheric Surface Layer
66%
Wind Turbine Design
66%
Lower Order
66%
Penn State
66%
Wind Energy
33%
Wind Vector
33%
Atmospheric Boundary Layer
33%
High Variability
33%
Stall Noise
33%
Simulation Strategy
33%
High School
33%
Green Energy Projects
33%
Massively Parallel
33%
Technology Research
33%
Wind Data
33%
Web-based
33%
Downtime
33%
Atmospheric Wind
33%
Wind Power
33%
Quantitative Knowledge
33%
Wind Turbine
33%
Control System
33%
Surface Turbulence
33%
Trailing Vortex
33%
Design Model
33%
Computational Capability
33%
Boundary Layer Separation
33%
Detailed Dynamics
33%
Design Tools
33%
Rotor Aerodynamics
33%
Turbulent Structure
33%
Aerodynamic Model
33%
Turbine Loads
33%
Space-time Simulation
33%
Drive Shaft
33%
Public Service Broadcaster
33%
Coherent Turbulent Structures
33%
Digital Learning Objects
33%
Gearbox Design
33%
Steady Force
33%
Test-bed Facilities
33%
Gearbox
33%
Fluctuating Wind Field
33%
Dynamic Stall
33%
Blade pitch Control
33%
Rotor
33%
Wind Input
33%
Body-fitted
33%
Pseudospectrum
33%
Rotating Blade
33%
Loading Force
33%
Computational Testing
33%
Boundary Layer Dynamics
33%
Vortex Formation
33%
Engineering
Boundary Layer Turbulence
100%
Detached Eddy Simulation
100%
Rotor Blade
100%
Wind Turbines Design
66%
Rotors
66%
Wind Power
66%
Gearbox
66%
Boundary Layer Separation
33%
Pitch Control
33%
Relative Magnitude
33%
Relative Orientation
33%
Field Data
33%
Blade Span
33%
Bending Vibration
33%
Vortex
33%
Design Model
33%
Simulation Time
33%
Control System
33%
Broad Range
33%
Steady Force
33%
Boundary Layer
33%
Turbine
33%
Energy Project
33%
Green Energy
33%