Keyphrases
Aerodynamic Damping
71%
Aeroelastic Characteristics
71%
Axial Compressor Rotor
71%
Numerical Methodology
71%
Mistuning
71%
Low Speed Axial Compressor
71%
Interfacial Materials
71%
Blade Curvature
71%
Curvature Constraint
71%
Artificial Neural Network Modeling
71%
Electrical Contact Resistance
71%
Numerical Optimization
71%
Forced Response
53%
Blade Twist
53%
Aerodynamic Performance
53%
Amplitude Magnification
53%
Thermal Grease
47%
Forward Lean
35%
Frequency Mistuning
35%
Isentropic Efficiency
35%
Total Pressure Ratio
35%
Von Mises Stress
35%
Error Coefficient
23%
Generator Optimization
23%
Low TCR
23%
Process-based
17%
Aerodynamic Characteristics
17%
In-house Code
17%
Aeroelastic Analysis
17%
Optimization Approach
17%
Twist Angle
17%
Blade Tip
17%
Response Mean
17%
Flutter
17%
Pressure Surface
17%
Blade Aerodynamics
17%
Rotor
17%
Aerodynamic Analysis
17%
Multidisciplinary Design Optimization
17%
Aeroelastic Performance
17%
Exit Routes
17%
Peak Efficiency
17%
Deformation Process
17%
Optimization Framework
17%
Free-form Deformation
17%
Flow Angle
17%
Backward Sweep
17%
Linear Correlation
17%
Vibration Amplitude
17%
Gaussian Process
17%
Rotor Blade
17%
Kriging
17%
Compressor Rotor
14%
Streamwise
14%
Self-organizing Map Method
7%
Yield Limit
7%
Polynomial Chaos Kriging
7%
Aluminum Alloy Material
7%
Verification Analysis
7%
Free-form Deformation Method
7%
Strength Requirement
7%
Structural Strength
7%
Aerodynamic Performance Prediction
7%
Engineering
Compressor Rotor
100%
Aerodynamic Performance
92%
Rotors
89%
Design Method
71%
Axial Compressors
71%
Aerodynamic Damping
71%
T Cell Receptor
71%
Maximum Stress
71%
Force Response
53%
Isentropic Efficiency
50%
Finite Element Method
42%
Optimization Method
42%
Multidisciplinary Design Optimization
42%
Pressure Ratio
35%
Freeform Deformation
32%
Surrogate Model
28%
Streamwise
28%
Optimization Approach
17%
Backward Twist
17%
Peak Efficiency
17%
Aerodynamic Analysis
17%
Pressure Surface
17%
Twist Angle
17%
Gaussians
17%
Blade Tip
17%
Exit Flow
17%
Rotor Blade
17%
Structural Performance
14%
Design Optimization
14%
Penalty Function
14%
Computational Cost
14%
Performance Prediction
14%
Self-Organizing Map
14%
Engineering
14%
Design Space
14%
Structural Strength
14%
Strength Requirement
14%
Computational Fluid Dynamics
14%
Dominant Component
10%