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Extreme wave phenomena in down-stream running modulated waves

机译:下游运行调制波中的极端波现象

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Modulational, Benjamin-Feir, instability is studied for the down-stream evolution of surface gravity waves. An explicit solution, the soliton on finite background, of the NLS equation in physical space is used to study various phenomena in detail. It is shown that for sufficiently long modulation lengths, at a unique position where the largest waves appear, phase singularities are present in the time signal. These singularities are related to wave dislocations and lead to a discrimination between successive 'extreme' waves and much smaller intermittent waves. Energy flow in opposite directions through successive dislocations at which waves merge and split, causes the large amplitude difference. The envelope of the time signal at that point is shown to have a simple phase plane representation, and will be described by a symmetry breaking unfolding of the steady state solutions of NLS. The results are used together with the maximal temporal amplitude MTA, to design a strategy for the generation of extreme (freak, rogue) waves in hydrodynamic laboratories.
机译:对于表面重力波的下游演变,研究了调制的本杰明·费尔(Benjamin-Feir)不稳定性。 NLS方程在物理空间中的显式解(有限背景上的孤子)用于详细研究各种现象。结果表明,对于足够长的调制长度,在最大波出现的唯一位置,时间信号中存在相位奇异点。这些奇异性与波位错有关,并导致在连续的“极限”波与更小的间歇波之间进行区分。能量沿相反方向流过连续的位错,在这些位错处波合并并分裂,从而引起较大的振幅差。时间信号在该点的包络被显示为具有简单的相平面表示,并且将通过对称打破NLS稳态解的展开来描述。将结果与最大时间振幅MTA一起使用,以设计一种在水动力实验室中生成极端(畸形,无赖)波的策略。

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