Keyphrases
Coupled FSI
100%
Hybrid Turbulence Model
100%
Multidisciplinary Design Optimization
100%
Optimization Approach
100%
Wind Turbine
77%
Aerostructural Optimization
44%
Steady State
44%
Aerodynamics
44%
Reynolds-averaged Navier-Stokes Equations
33%
Tightly Coupled
33%
2-way
33%
OpenFOAM
33%
Rotor
33%
Aerodynamic Optimization
33%
FSI Simulation
22%
Wind Turbine Optimization
22%
Arbitrary Lagrangian-Eulerian
22%
Overset Mesh Method
22%
Adjoint Equation
22%
Turbine Rotor
22%
Structural Dynamics
22%
Wind Turbine Blade
22%
Fluid-structure Interaction
22%
Optimization Methods
11%
Computational Cost
11%
Aerodynamic Shape
11%
Two-way FSI
11%
Large Set
11%
Computing Equipment
11%
Turbulence Model
11%
Blade Optimization
11%
FSI Model
11%
Wind Turbine System
11%
Good Accuracy
11%
Software System
11%
Structural Sizing
11%
Biologically Inspired
11%
Computational Technology
11%
Beam Theory
11%
Parallel CFD
11%
Eulerian Mesh
11%
Turbomachinery
11%
Form Optimization
11%
CFD Simulation
11%
Engineering Community
11%
Interdisciplinarity
11%
Transient Operation
11%
Airplane
11%
NREL Phase VI Wind Turbine
11%
Aerodynamic Performance
11%
Flow Management
11%
Hardpoint
11%
Adjoint-based Methods
11%
Blade Structure
11%
Design Cost
11%
Unsteady Adjoint
11%
Finite Element Method Model
11%
Leonhard Euler
11%
Mesh Movement
11%
Geometric Design
11%
Cost Efficiency
11%
CFD Code
11%
Aviation Noise
11%
Transient Performance
11%
Aeroelastic Flutter
11%
Shape Structure
11%
Design Cycle
11%
Equation-based
11%
Aeroelastic Analysis
11%
Mesh Method
11%
URANS
11%
Aerodynamic Efficiency
11%
Multidisciplinary Analysis
11%
High-accurate
11%
Cross-sectional Shape
11%
Energy Engineering
11%
Aircraft Configuration
11%
Numerical Techniques
11%
Aerodynamic System
11%
Sequential Design
11%
Structural System
11%
High Dimension
11%
Mechanical Performance
11%
Two-way Interaction
11%
Blade Element Momentum Theory
11%
Adjoint-based Optimization
11%
Large Wind Turbine
11%
Optimization System
11%
Wind Energy
11%
Aerospace Engineering
11%
Optimization Study
11%
Internal Structure
11%
Time-accurate
11%
Structural Cost
11%
Biological Optimization
11%
Active Flow
11%
Coupling Method
11%
Generated Power
11%
Gradient-based Approach
11%
Design Optimization
11%
Engineering Application
11%
Arbitrary Lagrangian-Eulerian Method
11%
Governing Equation
11%
Multiphysics
11%
Modeling Capability
11%
Design Tools
11%
Computational Tools
11%
Fully Integrated
11%
Finite Element Method
11%
Fluid Dynamics
11%
Performance Metrics
11%
Aeroacoustics
11%
Structural Design
11%
Modeling Approach
11%
Field Approach
11%
Aerodynamic Analysis
11%
Single Blade
11%
Faculty Development
11%
Wind Turbine Design
11%
Modeling Method
11%
Whole-field
11%
Dynamic Design
11%
Grant Program
11%
Design Optimization Method
11%
Coupled Fluid-structure Interaction
11%
Wind Turbine Configuration
11%
Wind Turbine Simulation
11%
High Computational Cost
11%
Processing Power
11%
INIS
turbulence
100%
design
100%
hybrids
100%
modeling
100%
optimization
100%
wind turbines
61%
aerodynamics
46%
performance
23%
simulation
19%
rotors
19%
interactions
19%
steady-state conditions
15%
cost
15%
tools
11%
equations
11%
reynolds number
11%
navier-stokes equations
11%
lagrangian
11%
turbines
7%
finite element method
7%
applications
7%
physics
7%
fluids
7%
engineering
7%
configuration
7%
shape
7%
turbine blades
7%
dynamics
7%
power
7%
fluid-structure interactions
7%
computer codes
7%
noise
7%
Engineering
Wind Turbine
100%
Multidisciplinary Design Optimization
100%
Transients
57%
Computational Fluid Dynamics
35%
Rotors
35%
Design Optimization
28%
Reynolds-Averaged Navier-Stokes
21%
Openfoam
21%
Navier-Stokes Equation
21%
Dimensionality
14%
Adjoint Equation
14%
Structural Dynamics
14%
Finite Element Method
14%
Computational Cost
14%
Fluid-Structure Interaction
14%
Optimization Method
14%
Aerodynamic Design
14%
Processing Power
7%
Numerical Technique
7%
Blade Element Momentum Theory
7%
Scale Problem
7%
Planforms
7%
Wind Power
7%
Internal Structure
7%
Turbomachinery
7%
Practical Problem
7%
Software Systems
7%
Aerodynamic Surface
7%
Design Cycle
7%
Wind Turbine System
7%
Aerodynamic Efficiency
7%
Aerodynamic Performance
7%
Wind Turbines Design
7%
Good Accuracy
7%
Elastic Analysis
7%
Aerospace Engineering
7%
Complete Aircraft
7%
Blades Design
7%
Mechanical Performance
7%
Structural System
7%
Sectional Shape
7%
Aircraft
7%
Design Tool
7%
Energy Engineering
7%
Numerical Approach
7%
Shortfall
7%
Metrics
7%
Simulation Result
7%
Engineering Application
7%
Eulerian Method
7%
Single Blade
7%
Aerodynamic Analysis
7%