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Influence of a forward-facing step on crossflow instability and transition: An experimental study in a swept wing boundary-layer
A.F. Rius Vidales
Aerodynamics
Research output
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Thesis
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Dissertation (TU Delft)
37
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Dive into the research topics of 'Influence of a forward-facing step on crossflow instability and transition: An experimental study in a swept wing boundary-layer'. Together they form a unique fingerprint.
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Engineering
Aerodynamic Surface
50%
Aerodynamics
50%
Aircraft
50%
Boundary Layer
100%
Development
50%
Facing Step
100%
Global Warming
50%
Laminar Flow Control
100%
Laminar-Turbulent Transition
50%
Reduction
50%
Rotating Vortex
50%
Significant Increase
50%
Skin Friction Drag
50%
Swept Wings
100%
Technological Development
50%
Transport Aircraft
100%
INIS
aerodynamics
66%
air pollution abatement
33%
aircraft
100%
boundary layers
100%
control
66%
drag
33%
efficiency
33%
friction
33%
global warming
33%
growth
33%
increasing
33%
instability
100%
laminar flow
66%
market
33%
skin
33%
stabilization
33%
surfaces
33%
transport
66%
vortices
33%
Physics
Boundary Layer
100%
Laminar Boundary Layer
100%
Rotation
50%