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Solution of Rayleigh's instability equation for arbitrary wind profiles
S. Beji
*
, K. Nadaoka
*
Corresponding author for this work
Department of Shipbuilding and Ocean Engineering
Tokyo Inst. Technol., 2-12-1 O.
Research output
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Article
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peer-review
11
Citations (Scopus)
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Keyphrases
Rayleigh Instability
100%
Wind Profile
100%
Instability Equation
100%
Wave Growth
60%
Rayleigh Equation
40%
Logarithmic Wind Profile
40%
Growth Rate
20%
Analytical Solution
20%
Power Law
20%
Water Waves
20%
Dispersion Relation
20%
Sea Surface
20%
Air-sea Interface
20%
Shear Instability
20%
Wind-induced
20%
Conte
20%
Bessel Equation
20%
Growth Problems
20%
Integral Expressions
20%
Engineering
Rayleigh Instability
100%
Rayleigh Equation
100%
Dispersion Relation
50%
Shear Instability
50%
Bessel's Equation
50%
Singular Point
50%
Ocean Surface
50%