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On the non-linear energy transfer in a gravity-wave spectrum Part 1. General theory
Journal of Fluid Mechanics · 1962 · Vol. 12(4) · pp. 481–500
Klaus Hasselmann✉(Universität Hamburg)
Abstract
The energy flux in a finite-depth gravity-wave spectrum resulting from weak non-linear couplings between the spectral components is evaluated by means of a perturbation method. The fifth-order analysis yields a fourth-order effect comparable in magnitude to the generating and dissipating processes in wind-generated seas. The energy flux favours equidistribution of energy and vanishes in the limiting case of a white, isotropic spectrum. The influence on the equilibrium structure of fully developed wave spectra and on other phenomena in random seas is discussed briefly.
Ocean Waves and Remote SensingCoastal and Marine DynamicsOceanographic and Atmospheric ProcessesPhysicsEnergy fluxIsotropyPerturbation (astronomy)Perturbation theory (quantum mechanics)Energy transferSpectral lineWavenumberLimitingEnergy spectrum
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Nonlinear Four-Wave Interactions and Freak Waves
Journal of Physical Oceanography · 2003 · 743 citations
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