首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >The evolution of large non-breaking waves in intermediate and shallow water. I. Numerical calculations of uni-directional seas
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The evolution of large non-breaking waves in intermediate and shallow water. I. Numerical calculations of uni-directional seas

机译:中等和浅水中大的不间断波浪的演化。一,单向海的数值计算

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In deep water it is well known that the evolution of the largest waves in realistic, broadbanded frequency spectra is governed by dispersive focusing. However, as the water depth reduces this process weakens and the relative significance of wave modulation is shown to be increasingly important. This leads to very different extreme wave groups, the properties of which are critically dependent upon the local nonlinearity. To explore these effects, and to provide a physical explanation for their occurrence, two complementary wave models are employed. The combined numerical results show that the nature of large uni-directional waves varies depending on the relative water depth. As the water depth reduces, both the bound and resonant interactions become more significant. However, the third-order resonant terms have the most profound influence. By modifying both the amplitude and phase of the underlying linear wave components, the largest waves arise as a local instability within a truncated quasi-regular wave train; the latter appearing because of an initial narrowing of the underlying frequency spectrum. Furthermore, the numerical calculations show that, with large changes in both the spectral shape and the phasing of the wave components, both the maximum crest elevations and wave heights are less than those predicted by linear theory.
机译:在深水中,众所周知,现实的宽带频谱中最大波的演化受色散聚焦控制。但是,随着水深的减小,该过程减弱,并且波调制的相对重要性变得越来越重要。这导致极端波组非常不同,极端波组的特性严格取决于局部非线性。为了探索这些影响,并为它们的发生提供物理解释,采用了两个互补的波浪模型。组合的数值结果表明,大的单向波的性质随相对水深而变化。随着水深的减小,束缚和共振相互作用都变得更加重要。但是,三阶共振项具有最深远的影响。通过同时修改基本线性波分量的幅度和相位,最大的波会在截断的准规则波列内作为局部不稳定性而出现。后者的出现是由于底层频谱的最初变窄。此外,数值计算表明,随着频谱形状和波分量相位的变化较大,最大波峰高度和波高均小于线性理论所预测的值。

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