Keyphrases
High-speed Jet
100%
Time-resolved PIV
77%
Near-field
76%
Low-dimensional Modeling
65%
Axisymmetric Jet
58%
Far-field Pressure
58%
Flow Field
55%
Large Windows
51%
Flow Physics
48%
Proper Orthogonal Decomposition
42%
Jet Flow
39%
Far-field Acoustics
37%
Syracuse University
37%
Modeling Techniques
35%
Active Flow Control
34%
Time-resolved
32%
Reduced Order Model
31%
Field Velocity
28%
Potential Core
28%
Jet Flow Field
28%
Velocity Field
27%
Far-field Noise
26%
OASPL
26%
Time-resolved Data
25%
Closed-loop Control
25%
Closed-loop
23%
Reduced Order Modeling
23%
Low-dimensional Models
22%
POD Modes
22%
Particle Image Velocimetry
20%
Jet Noise
20%
Cluster-based
19%
Flow Control
19%
Shear Layer
18%
Subsonic Jet
18%
Potential Core Length
16%
Streamwise
16%
High-resolution
16%
Time-resolved Particle Image Velocimetry (TR-PIV)
16%
Actuation
15%
Stochastic Estimation
15%
Acoustic Data
15%
Compressed Sensing
15%
Airfoil Data
15%
Intermittent Dynamics
15%
Interacting Wakes
15%
Artificial Neural Network
15%
Near-far
13%
Deep Neural Network
13%
Microphone
13%
Engineering
Axisymmetric
93%
Velocity Field
80%
Dimensional Modeling
79%
Proper Orthogonal Decomposition
63%
Field Pressure
60%
Potential Core
55%
Particle Image Velocimetry
53%
Flow Physic
48%
Energetics
45%
Acoustic Far Field
38%
Flow Field
36%
Dimensional Model
36%
Open Loop
34%
Control Flow
33%
Closed Loop Control
32%
Reduced Order Model
32%
Sound Pressure Level
32%
Streamwise
30%
Closed Loop
30%
Anechoic Chamber
26%
Flow Structure
23%
Observables
22%
Shear Layer
21%
Hydrodynamics
20%
Noise Field
18%
Downstream Location
18%
High Resolution
17%
Field Data
16%
Nozzle Exit
16%
Experimental Data Set
15%
Artificial Neural Network
15%
Compressive Sensing
15%
Coherent Structure
14%
Actuation
14%
Turbulent Flow
14%
Open Loop Control
9%
Synthetic Jet Actuator
9%
Pipeline Fluid Flow
7%
Acoustic Source
7%
Microphone Signal
7%
Engine Design
7%
Turbulent Boundary Layer
7%
Spatial Resolution
7%
Limitations
7%
Airfoil
7%
Convergent
7%
Mixing Layer
7%