Engineering
Combustor
100%
Oscillation
100%
Acoustics
100%
Limit Cycle
100%
Three-Dimensional Models
100%
Fluid-Structure Interaction
100%
Zeros
50%
Heat Transfer Model
50%
Structural Vibration
50%
Finite Element Modeling
25%
Measured Data
25%
High Pressure
25%
Fluid
25%
Computational Fluid Dynamics
25%
Feedback Loop
25%
Flue Gas
25%
Experimental Result
25%
Amplitudes
25%
Mechanisms
25%
Numerical Approach
25%
Failure (Mechanical)
25%
Obtains
25%
Thermoacoustic Instability
25%
Model Prediction
25%
High Temperature
25%
Mechanical Loading
25%
Large Discrepancy
25%
Aerodynamics
25%
Pressure Fluctuation
25%
Deformation
25%
Gas Turbine Engine
25%
Combustion
25%
High Velocity
25%
Physics
Three Dimensional Models
100%
Oscillation
100%
Cycles
100%
Acoustics
75%
Model
75%
Pressure
75%
Heat
50%
Heat Transfer
50%
Vibration
50%
Combustion
25%
Speed
25%
Amplitudes
25%
Computational Fluid Dynamics
25%
Magnitude
25%
Temperature
25%
Gas Turbine Engines
25%
Act
25%
Gaseous State
25%
Stress Distribution
25%
Steel
25%
Cooling
25%
Pressure Oscillation
25%
Acoustic Wave
25%
Thermoacoustics
25%
Aerodynamics
25%
High Temperature
25%
Deformation
25%
Feedback
25%
Failure
25%
Variations
25%