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STUDY ON THE SPECTRAL MODELS FOR WAVES IN FINITE WATER DEPTH.
Norden E. Huang
, Paul A. Hwang
, Hsiang Wang
, Steven R. Long
, Larry F. Bliven
Cognitive Intelligence and Precision Healthcare Research Center
Research output
:
Contribution to journal
›
Article
›
peer-review
17
Scopus citations
Overview
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Dive into the research topics of 'STUDY ON THE SPECTRAL MODELS FOR WAVES IN FINITE WATER DEPTH.'. Together they form a unique fingerprint.
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Keyphrases
Spectral Model
100%
Finite Water Depth
100%
Peak Frequency
66%
Control Parameters
33%
Solitary Waves
33%
Snow
33%
Wave Model
33%
Three-parameter
33%
Shallow Water Waves
33%
Spectral Function
33%
Stokes Wave
33%
Cnoidal Waves
33%
Intermediate Water Depth
33%
Deep-water Waves
33%
Wave Expansion
33%
Ursell number
33%
Engineering
Spectral Model
100%
Peak Frequency
66%
Optical Spectrum
66%
Good Agreement
33%
Deep Water
33%
Good Approximation
33%
Wave Model
33%
Elastic Wave
33%
Solitary Wave
33%
Physics
Water Wave
100%
Solitary Wave
50%
Elastic Wave
50%
Deep Water
50%
Shallow Water
50%
Cnoidal Wave
50%
Intermediate Water
50%
Earth and Planetary Sciences
Water Depth
100%
Water Wave
66%
Solitary Wave
33%
Shallow Water
33%
Deep Water
33%
Elastic Wave
33%
Intermediate Water
33%
Cnoidal Wave
33%