论海浪调制不稳定性的特征和特征

A. Babanin
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引用次数: 1

摘要

色散环境中非线性波的调制不稳定性在广泛的物理介质中是已知的,从非线性光学到等离子体中的波。自从它在60年代初被发现用于表面水波以来,人们发现它负责或能够促成破碎和流氓波,膨胀,冰破裂,波流相互作用甚至可能产生喷雾的主题。然而,自早期以来,关于调制不稳定性(本质上是一种一维现象)是否在定向波场中活跃(即现实的定向谱是否足够窄以维持这种非线性行为)的争论仍在继续。这里我们讨论了非线性表面重力波演化的明显特征,这些特征应归因于海洋风浪场的不稳定性。这些包括:平均陡峭度的破波阈值;断裂前光谱能量的上移;波的不对称和偏态振荡;在断裂过程中载波的能量损失。我们还将提到波浪的线性/非线性叠加,这通常被认为是海洋中破碎或异常波浪的对应(或竞争)机制。我们认为,这两种机制在物理上都是可能的,而原位异常波的问题是它们在特定情况下的相对意义的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Signatures and Features of Modulational Instability in Ocean Waves
Modulational instability of nonlinear waves in dispersive environments is known across a broad range of physical media, from nonlinear optics to waves in plasmas. Since it was discovered for the surface water waves in the early 60s, it was found responsible for, or able to contribute to the topics of breaking and rogue waves, swell, ice breakup, wave-current interactions and perhaps even spray production. Since the early days, however, the argument continues on whether the modulational instability, which is essentially a one-dimensional phenomenon, is active in directional wave fields (that is whether the realistic directional spectra are narrow enough to maintain such nonlinear behaviours). Here we discuss the distinct features of the evolution of nonlinear surface gravity waves, which should be attributed as signatures to this instability in oceanic wind-generated wave fields. These include: wave-breaking threshold in terms of average steepness; upshifting of the spectral energy prior to breaking; oscillations of wave asymmetry and skewness; energy loss from the carrier waves in the course of the breaking. We will also refer to the linear/nonlinear superposition of waves which is often considered a counterpart (or competing) mechanism responsible for breaking or rogue waves in the ocean. We argue that both mechanisms are physically possible and the question of in situ abnormal waves is a problem of their relative significance in specific circumstances.
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