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Spectral modeling of unidirectional nonlinear wave propagation over arbitrary depths
S. Beji
*
, K. Nadaoka
*
Corresponding author for this work
Department of Shipbuilding and Ocean Engineering
Istanbul Technical University
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Keyphrases
Energy Loss
100%
Weakly Nonlinear Waves
100%
Nonlinear Random Waves
100%
Constant Depth
100%
Wave Propagation
100%
Nonlinear Wave Equation
100%
Unidirectional Waves
100%
Second Harmonic Generation
100%
Arbitrary Depth
100%
Nonlinear Wave Propagation
100%
Dispersive Wave Equations
100%
Spectral Wave Model
100%
Varying Depth
100%
Spectral Modeling
100%
Breaking Waves
100%
Dissipation Term
100%
Variable Bathymetry
100%
Wave Traveling
100%
Engineering
Good Agreement
100%
Energy Dissipation
100%
Wave Model
100%
Random Wave
100%
Measured Data
100%
Harmonic Generation
100%
Breaking Wave
100%
Dissipation Term
100%
Traveling Wave
100%
Earth and Planetary Sciences
Bathymeter
100%
Random Wave
100%
Nonlinear Wave
100%
Breaking Wave
100%
Harmonic Generation
100%
Traveling Wave
100%
Energy Dissipation
100%
Wave Equation
100%
Physics
Wave Propagation
100%
Nonlinear Wave
100%
Wave Equation
50%
Traveling Wave
50%
Random Wave
50%
Harmonics
50%