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Nonlinear Four-Wave Interactions and Freak Waves

Journal of Physical Oceanography · 2003 · Vol. 33(4) · pp. 863–884
Peter A. E. M. Janssen

Abstract

Four-wave interactions are shown to play an important role in the evolution of the spectrum of surface gravity waves. This fact follows from direct simulations of an ensemble of ocean waves using the Zakharov equation. The theory of homogeneous four-wave interactions, extended to include effects of nonresonant transfer, compares favorably with the ensemble-averaged results of the Monte Carlo simulations. In particular, there is good agreement regarding spectral shape. Also, the kurtosis of the surface elevation probability distribution is determined well by theory even for waves with a narrow spectrum and large steepness. These extreme conditions are favorable for the occurrence of freak waves.

Ocean Waves and Remote SensingCoastal and Marine DynamicsTropical and Extratropical Cyclones ResearchRogue waveKurtosisPhysicsStatistical physicsNonlinear systemElectromagnetic spectrumWind waveMonte Carlo methodSurface waveGravitational wave
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References
Nonlinear Modulation of Gravity Waves
Journal of the Physical Society of Japan · 1972 · 546 citations
The disintegration of wave trains on deep water Part 1. Theory
Journal of Fluid Mechanics · 1967 · 2,478 citations
On the Quantum Correction For Thermodynamic Equilibrium
Physical Review · 1932 · 9,003 citations
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