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Localized coherence of freak waves

机译:怪异波的局部相干

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This paper investigates in detail a possible mechanism of energy convergence leading to freak waves. We give examples of a freak wave as a (weak) pseudo-maximal wave to illustrate the importance of phase coherence. Given a time signal at a certain position, we identify parts of the time signal with successive high amplitudes, so-called group events, that may lead to a freak wave using wavelet transform analysis. The local coherence of the critical group event is measured by its time spreading of the most energetic waves. Four types of signals have been investigated: dispersive focusing, normal sea condition, thunderstorm condition and an experimental irregular wave. In all cases presented in this paper, it is shown that a high correlation exists between the local coherence and the appearance of a freak wave. This makes it plausible that freak waves can be developed by local interactions of waves in a wave group and that the effect of waves that are not in the immediate vicinity is minimal. This indicates that a local coherence mechanism within a wave group can be one mechanism that leads to the appearance of a freak wave.
机译:本文详细研究了导致畸变波的能量收敛的可能机制。我们以畸变波作为(弱)伪最大波给出示例,以说明相位相干的重要性。在给定位置的时间信号的情况下,我们使用小波变换分析来识别时间信号中具有连续高幅度的部分,即所谓的组事件,这些部分可能会导致出现怪胎。临界组事件的局部相干性是通过其对最强波的时间扩散来衡量的。已经研究了四种信号:色散聚焦,正常海况,雷暴天气和实验性不规则波。在本文提出的所有情况下,都表明局部相干性与怪胎波的出现之间存在高度相关性。这使得可以通过波组中的波的局部相互作用产生异常波,并且使不在附近的波的影响最小化,这是合理的。这表明波组内的局部相干机制可能是导致出现奇异波的一种机制。

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