Effect of Real-World Perturbations on Wave Breaking due to a Sharp-Crested Superharmonic Instability.

Water waves (Cham, Switzerland) Pub Date : 2025-01-01 Epub Date: 2025-03-20 DOI:10.1007/s42286-025-00116-7
A Mansar, M R Turner, T J Bridges, F Dias
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Abstract

The mechanism for the emergence of breaking water waves in deep water, based on the superharmonic instability of periodic Stokes waves, is tested for the effect of real-world perturbations (dissipation, approximation error, changes in depth, non-zero air density, fluctuations in wave and frame speed). An implicit perturbation is added to a large-amplitude unstable Stokes wave, which is then taken as initial data in a direct numerical solution of the Navier-Stokes equations, using the Basilisk numerical software package. An SVD-based filtering algorithm is used to extract the shape of the unstable wave that grows on the background Stokes wave. We find a dipole shape in the filtered wave that correlates with the superharmonic unstable mode. Our findings show that the inclusion of real-world effects has little qualitative effect, when they are kept small, on the emergence of breaking. We conclude that the mechanism of crest instability of Stokes waves leading to wave breaking is a robust mechanism that is likely to occur in nature.

实际扰动对锐峰超谐波不稳定性下破波的影响。
基于周期性Stokes波的超谐波不稳定性,对深水中破碎水波出现的机制进行了实际扰动(耗散,近似误差,深度变化,非零空气密度,波和帧速度波动)的影响进行了测试。将一个隐式扰动加到一个大振幅的不稳定Stokes波中,然后使用Basilisk数值软件包将其作为Navier-Stokes方程直接数值解的初始数据。采用基于奇异值分解的滤波算法提取生长在背景斯托克斯波上的不稳定波的形状。我们在滤波波中发现了与超谐波不稳定模相关的偶极子形状。我们的研究结果表明,当现实世界的影响保持较小时,对断裂的出现几乎没有定性影响。我们认为Stokes波波峰失稳导致破波的机制是一个很可能在自然界发生的强大机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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