Keyphrases
Accurate Simulation
25%
Actuator Disc
33%
Aerodynamic Model
50%
Argon
25%
Argon Plasma
25%
Atmospheric Boundary Layer
100%
Atmospheric Turbulence Effects
16%
Blade Element Theory
33%
Boussinesq Approximation
41%
Buoyancy
83%
Charge Carriers
25%
Charged Particles
25%
Closure Coefficient
41%
Cold Climate
50%
Density Variation
41%
Effect on Performance
50%
Electronegative
50%
Electronegative Gas
50%
Flow Field
41%
Gasses
50%
High-density Plasma
25%
Magnetoplasma
50%
Mathematical Model
25%
Microelectronics Industry
25%
Momentum Equation
41%
Monin-Obukhov Similarity Theory
25%
Negative Charge
25%
Negative Ions
25%
Neutral Condition
16%
Numerical Methods
41%
Numerical Simulation
50%
Numerical Solution
25%
Particle Content
25%
Power Balance
25%
Power Output
66%
Reynolds number
50%
Reynolds-averaged Navier-Stokes Equations
41%
Stable Atmospheric Boundary Layer
25%
Stall Regulated Wind Turbines
16%
Submicron
25%
Thermal Stratification
100%
Turbulence Effect
50%
Turbulence Intensity
33%
Turbulence Model
66%
Unstable Stratification
50%
Velocity Defect
16%
Wake Development
16%
Wake Velocity
16%
Wind Density
16%
Wind Turbine
100%
Engineering
Accurate Simulation
16%
Actuator Disk
29%
Aerodynamics
50%
Atmospheric Turbulence
12%
Blade Element Theory
29%
Blade Turbine
16%
Boundary Layer
100%
Boussinesq's Hypothesis
33%
Compressed Air Motors
100%
Disc Surface
16%
Experimental Observation
16%
Flow Distribution
16%
High Wind
12%
Low-Temperature
12%
Mathematical Model
16%
Mechanical Engineer
16%
Momentum Equation
33%
Navier-Stokes Equation
45%
Neutral Condition
16%
Nominal Power
12%
Numerical Method
33%
Numerical Solution
16%
Performance Prediction
16%
Power Curve
12%
Power Level
12%
Power Output
58%
Reynolds' Number
50%
Reynolds-Averaged Navier-Stokes
33%
Rotors
12%
Similarity
16%
Turbine
70%
Turbulence Intensity
25%
Physics
Actuator Disk
16%
Aerodynamics
50%
Argon Plasma
50%
Boundary Layer
100%
Charged Particle
50%
Compressed Air Motors
50%
Flow Distribution
16%
Mathematical Method
33%
Mathematical Model
16%
Measurement Theory
16%
Navier-Stokes Equation
33%
Numerical Solution
16%
Plasma Density
50%
Plasma Physics
50%
Thin Films
50%
Turbulence Model
50%