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Disturbance field characteristics of a transversely excited burner
Jacqueline O'Connor
, Tim Lieuwen
Mechanical Engineering
Research output
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Contribution to journal
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Article
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peer-review
112
Scopus citations
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Dive into the research topics of 'Disturbance field characteristics of a transversely excited burner'. Together they form a unique fingerprint.
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Keyphrases
Burner
100%
Transverse Acoustics
100%
Field Characteristics
100%
Nozzle
50%
Long Wavelength
50%
Annulus
50%
Annular Jet
50%
Combustor
25%
Acoustics
25%
Low-NOx
25%
Left-handed
25%
Longitudinal Direction
25%
Transverse Direction
25%
Complex Interactions
25%
Swirl Stabilized Flame
25%
Acoustic Waves
25%
Shape Change
25%
Mode Shape
25%
Flow Field Characteristics
25%
Shear Layer
25%
Flame Response
25%
Fluid Mechanics
25%
Right-sided
25%
Acoustic Field
25%
Non-reacting
25%
Acoustic Excitation
25%
Near-field Region
25%
Acoustic Velocity
25%
Premixed
25%
Acoustic Instability
25%
Acoustic Disturbance
25%
Acoustic Mode
25%
Transverse Excitation
25%
Antinode
25%
Wave Mechanics
25%
Acoustic Fluid
25%
Vortical Structures
25%
Engineering
Superposition
100%
Nodes
50%
Axisymmetric
50%
Combustor
50%
Flow Field
50%
Data Show
50%
Centerline
50%
Mode Shape
50%
Shape Change
50%
Shear Layer
50%
Fluid Mechanics
50%
Acoustic Field
50%
Field Region
50%
Acoustic Mode
50%
Antinode
50%