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Mixing Driven by Breaking Nonlinear Internal Waves
N. L. Jones
, G. N. Ivey
, M. D. Rayson
, S. M. Kelly
Physics & Astronomy (Duluth)
Research output
:
Contribution to journal
›
Article
›
peer-review
39
Scopus citations
Overview
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Keyphrases
Nonlinear Internal Waves
100%
Heat Flux
50%
Wave Form
50%
Diapycnal Mixing
50%
Heat Transfer
25%
Sediment Transport
25%
Wave Packet
25%
Stabilizing Effect
25%
Local Velocity
25%
Bulk Properties
25%
Continental Shelf
25%
Maximum Density
25%
Wave Propagation Speed
25%
Wave Steepness
25%
Trapped Cores
25%
Shear Current
25%
Nutrient Replenishment
25%
Symmetric Waves
25%
Earth and Planetary Sciences
Internal Wave
100%
Heat Flux
50%
Earth Surface Sediment Transport
25%
Replenishment
25%
Continental Shelf
25%
Wave Packet
25%