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Spatial evolution of an initially narrow-banded wave train

机译:最初窄带波动火车的空间演变

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AbstractNonlinear evolution of narrow-banded unidirectional gravity wave trains along wave flume is studied both experimentally and numerically. The spatial version of the Zakharov equation serves as the theoretical model. The frequency domains of spatially linearly unstable disturbances to a monochromatic wave, as well as the frequencies of the most linearly unstable modes are determined theoretically as functions of the carrier wave steepness; these results serve as a reference for the following study. The effect of the spectral width on the evolution along the tank is considered for bi-modal initial spectra, as well as for spectra consisting of a carrier wave and two sidebands with small but finite amplitude. Good agreement between the experimental results and numerical simulations is obtained. The variation of the frequency spectra along the tank resulting from nonlinearity, as well as of the maximum envelope and crest height is investigated as a function of the initial conditions. Fermi–Pasta–Ulam recurrence is obtained for frequency spacing between the initial spectral harmonics approximately corresponding to most unstable disturbance. For narrower spectra, the evolution pattern becomes irregular, numerous additional harmonics are generated by nonlinearity; in this process very steep waves can be generated. The relevance of those findings to appearance of rogue waves is discussed.
机译:<标题>抽象 ara id =“par1”>在实验和数值上研究了沿波浪沿波的窄带单向重力波列的非线性演变。 Zakharov方程的空间版本用作理论模型。在理论上作为载波陡度的功能确定空间线性不稳定的扰动以及最线性不稳定模式的频率的频率域以及最具线性不稳定模式的频率;这些结果是以下研究的参考。对于双模态初始光谱,考虑光谱宽度对罐中的进化的影响,以及由具有小但有限幅度的载波和两个边带组成的光谱。获得实验结果和数值模拟之间的良好一致性。根据初始条件,研究了由非线性导致的罐以及最大包络和最大包络和嵴高度的频率的变化。获得FERMI-面乌拉姆复发,用于初始光谱谐波之间的频率间距,大致对应于最不稳定的干扰。对于较窄的光谱,进化模式变得不规则,非线性产生许多额外的谐波;在该过程中,可以产生非常陡峭的波。讨论了这些发现对流氓波的外观的相关性。

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