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Initial wave breaking dynamics of Peregrine-type rogue waves: a numerical and experimental study

机译:peregrine型流氓波的初始波浪破碎动力学:数值和实验研究

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摘要

The Peregrine breather, today widely regarded as a prototype for spatio-temporally localized rogue waves on the ocean caused by nonlinear focusing, is analyzed by direct numerical simulations based on two-phase Navier-Stokes equations. A finite-volume approach with a volume of fluid method is applied to study the Peregrine breather dynamics up to the initial stages of wave breaking. The comparison of the numerical results with laboratory experiments to validate the numerical approach shows very good agreement and suggests that the chosen method is an effective tool to study modulation instability and breather dynamics in water waves with high accuracy even up to the onset of wave breaking. The numerical results also indicate some previously unnoticed characteristics of the flow fields below the water surface of breathers, which might be of significance for short-term prediction of rogue waves. Recurrent wave breaking is also observed.
机译:通过基于两相Navier-Stokes方程的直接数值模拟,对如今被广泛认为是由非线性聚焦引起的海洋上时空局部无赖波的原型的Peregrine呼吸器进行了分析。采用有限体积方法和一定体积的流体方法来研究游eg呼吸器直至波浪破碎初期的动力学。将数值结果与实验室实验进行比较,以验证数值方法的一致性,这表明所选择的方法是一种有效的工具,即使在波浪破裂之前,也可以高精度地研究水波的调制不稳定性和呼吸动力学。数值结果还表明,呼吸器水面以下流场的某些先前未被注意到的特征,这可能对流浪的短期预测具有重要意义。还观察到反复的波浪破碎。

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