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On the wind-induced growth of slow water waves of finite steepness

机译:由风引起的有限陡缓水波的增长

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Determining characteristic growth rates for water waves travelling more slowly than the wind has continued to be a key unresolved problem of air-sea interaction for over half a century. Analysis of previously reported and recently acquired laboratory wave data shows a systematic decline in normalized wave growth with increasing mean wave steepness that has not previously been identified. The normalized growth dynamic range is comparable with previously observed scatter amongst other laboratory data gathered in the slow wave range. Strong normalized growth rates are observed at low wave steepnesses, implying an efficient wave-coherent tangential stress contribution. Data obtained during this study show quantitative agreement with the predictions of others of the interactions between short wind waves and the longer lower-frequency waves. Measured normalized wave growth rates are consistent with numerically predicted growth due to wave drag augmented by significant wave-coherent tangential stress.
机译:在半个多世纪的时间里,确定水波的特征增长率要比风慢得多,一直是海-气相互作用尚未解决的关键问题。对先前报告和最近获取的实验室波浪数据的分析显示,归一化的波浪生长会随着平均波浪陡度的增加而出现系统性下降,这是以前未发现的。归一化的生长动态范围可与之前在慢波范围内收集的其他实验室数据中观察到的散布相比。在低波陡度下观察到强的归一化增长率,这意味着有效的波相干切向应力贡献。在这项研究中获得的数据表明,与短风波和较长的低频波之间相互作用的其他预测相吻合。测得的归一化波增长率与由于显着的波相干切向应力所增加的波阻力引起的数值预测的增长一致。

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