Fakultät für Physik und Astronomie, Ruhr-Universität Bochum, D-44780 Bochum, Germany.
Phys Rev Lett. 2010 Jul 2;105(1):014501. doi: 10.1103/PhysRevLett.105.014501. Epub 2010 Jun 30.
The instability and nonlinear evolution of directional ocean waves is investigated numerically by means of simulations of the governing kinetic equation for narrow-band surface waves. Our simulation results reveal the onset of the modulational instability for long-crested wave trains, which agrees well with recent large-scale experiments in wave basins, where it was found that narrower directional spectra lead to self-focusing of ocean waves and an enhanced probability of extreme events. We find that the modulational instability is nonlinearly saturated by a broadening of the wave spectrum, which leads to the stabilization of the water-wave system. Applications of our results to other fields of physics, such as nonlinear optics and plasma physics, are discussed.
窄带表面波控制运动方程的数值模拟研究了定向海洋波的不稳定性和非线性演化。我们的模拟结果揭示了长峰波列的调制不稳定性的发生,这与最近波浪盆地中的大规模实验结果一致,实验结果表明较窄的定向谱导致了海洋波的自聚焦和极端事件发生的概率增加。我们发现,波谱的展宽使调制不稳定性非线性饱和,从而使水波系统稳定。我们还讨论了这些结果在非线性光学和等离子体物理等其他物理学领域的应用。