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Three-dimensional non-linear standing wave groups: Formal derivation and experimental verification

机译:三维非线性驻波组:形式推导和实验验证

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摘要

An analytical non-linear theory is presented for the interaction between three-dimensional sea wave groups and a seawall during an exceptionally high crest or deep trough in the water elevation. The solution to the second-order of the free-surface displacement and the velocity potential is derived by considering an irrotational, inviscid, incompressible flow bounded by a horizontal seabed and a vertical impermeable seawall. From this, an analytical expression for the non-linear wave pressure is obtained. The resulting theory can fully describe the mechanics at the seawall and in front of it, which are represented by a strongly inhomogeneous wave field, and demonstrate that it is influenced by characteristic parameters and wave conditions. The theoretical results are in good agreement with measurements conducted during a small-scale field experiment at the Natural Ocean Engineering Laboratory in Reggio Calabria (Italy). Comparisons of the theoretical and experimental results show that some distinctive phenomena involving the wave pressures of very high standing wave groups at a seawall, in the absence of either overturning or breaking waves, may be associated with non-linear effects.
机译:针对水位异常高的波峰或深谷期间的三维海浪群与海堤之间的相互作用,提出了一种分析非线性理论。通过考虑由水平海床和垂直不可渗透海堤限制的非旋转,不粘,不可压缩的流动,得出自由表面位移和速度势的二阶解。由此,获得非线性波动压力的解析表达式。由此产生的理论可以充分描述以强烈非均匀波场为代表的海堤及其前方的力学,并证明其受到特征参数和波浪条件的影响。理论结果与在意大利雷焦卡拉布里亚(Regio Calabria)的自然海洋工程实验室进行的小规模野外实验中进行的测量非常吻合。理论和实验结果的比较表明,在不存在翻转波或破碎波的情况下,一些独特的现象涉及海堤中非常高的驻波群的波压,可能与非线性效应有关。

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