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Dipole formation in the transient planar wall jet
Brian P. Conlon
*
,
Seth H Lichter
*
Corresponding author for this work
Mechanical Engineering
Research output
:
Contribution to journal
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Article
›
peer-review
14
Scopus citations
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Dive into the research topics of 'Dipole formation in the transient planar wall jet'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Boundary Layer
20%
Circulation
20%
Contrast
20%
Creativity
20%
Criterion
40%
Existence
20%
Flow Control
20%
Formulation
20%
Geophysical Fluid Dynamics
20%
Investigation
20%
Jet Flow
20%
Magnitude
40%
Ocean
20%
Plane
20%
Program
20%
Report
20%
Reynolds Number
20%
Set
20%
Shape
20%
Speed
20%
Summer
20%
Time
40%
Wall
100%
Width
20%
Wood
40%
INIS
boundary conditions
25%
boundary layers
12%
control
12%
dipoles
100%
fluid mechanics
12%
fluids
12%
holes
25%
jets
100%
motion
12%
oceans
12%
range
12%
reynolds number
12%
slip
25%
tracks
12%
velocity
12%
walls
100%
width
12%
wood
25%
Physics
Circulation
16%
Contrast
16%
Existence
16%
Flow Control
16%
Jet Flow
16%
Magnitude
33%
Plane
16%
Reynolds Number
16%
Shapes
16%
Speed
16%
Transients
100%
Vorticity
100%
Width
16%