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Energy dissipation and the spectral distribution of whitecaps

机译:能量耗散和白帽的频谱分布

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Energy dissipation by breaking water waves is quantified indirectly using remote observations (digital video recordings) and directly using in situ observations (acoustic Doppler velocity profiles). The analysis is the first validation using field data to test the Duncan-Phillips formulation relating energy dissipation to the spectral distribution of whitecap speeds and lengths. Energy dissipation estimates are in agreement over two orders of magnitude, and demonstrate a promising method for routine observation of wave breaking dynamics. Breaking statistics are partitioned into contributions from waves at the peak of the wave-height spectrum and waves at higher frequencies in the spectrum. Peak waves are found to be only 10% of the total breaking rate, however peak waves contribute up to 75% of the total dissipation rate. In addition, breaking statistics are found to depend on the peak wave steepness and the energy input by the wind.
机译:通过使用远距离观测(数字视频记录)间接量化通过破坏水波而产生的能量消耗,并直接使用原位观测(声学多普勒速度剖面)直接量化。该分析是首次使用现场数据验证Duncan-Phillips公式的有效性,该公式将能量耗散与白帽速度和长度的频谱分布相关联。耗能估计值在两个数量级上是一致的,并且证明了一种有前景的常规观察破波动力学的方法。破坏统计数据分为波高频谱峰值处的波和频谱中较高频率处的波的贡献。发现峰值波仅占总破碎率的10%,但是峰值波占总耗散率的75%。另外,发现破裂统计取决于峰值波陡度和风输入的能量。

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