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Shoaling mode-2 internal solitary-like waves
Magda Carr
, Marek Stastna
,
Peter A. Davies
, Koen J. van de Wal
Civil Engineering
Research output
:
Contribution to journal
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Article
›
peer-review
442
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Dive into the research topics of 'Shoaling mode-2 internal solitary-like waves'. Together they form a unique fingerprint.
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Keyphrases
Solitary Waves
100%
Wave Run-up
100%
Boundary Layer Separation
66%
Vortex Formation
66%
Wave Form
66%
Resuspension
66%
Unicode
66%
Reflected Wave
33%
Wave Amplitude
33%
Wave Speed
33%
Release Process
33%
Numerical Investigation
33%
Boundary Layer
33%
Reynolds number
33%
Slope Angle
33%
Steep Slope
33%
Laboratory Investigation
33%
Pycnocline
33%
Boundary Layer Dynamics
33%
Amplitude Wave
33%
Lock-release
33%
Shallow Slope
33%
Slope Steepness
33%
Modified Gravity
33%
Shoaling Process
33%
Runout Distance
33%
Separation Vortex
33%
Base Size
33%
Engineering
Boundary Layer Separation
100%
Vortex
100%
Boundary Layer
100%
Resuspension
100%
Waveform
100%
Oscillatory
50%
Length Scale
50%
Reynolds' Number
50%
Slope Angle
50%
Sin
50%
Pycnocline
50%
Reflected Wave
50%
Earth and Planetary Sciences
Laminar Boundary Layer
100%
Boundary Layer
100%
Resuspension
100%
Slope Angle
50%
Pycnocline
50%
Reynolds Number
50%
Reflected Wave
50%
Microgravity
50%