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Standing waves on water of uniform depth: on their resonances and matching with short-crested waves

机译:均匀深度的水上的驻波:它们的共振并与短波匹配

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摘要

Numerical calculations of the resonant interactions of three-dimensional short-crested waves very near their two-dimensional standing wave limit are performed for water of uniform depth. A detailed study of the properties of the solutions indicates that both classes of waves admit multiple solutions that are connected to each other through turning points. It is also shown that the solutions match each other at the limit. Then a study on the superharmonic instabilities (resonant interactions) of short-crested waves was performed in the vicinity of the standing wave limit. The matching allowed extrapolation of the short-crested wave stability results to standing waves. The results are that for resonant waves, superharmonic instabilities associated with harmonic resonance are dominant. The possible jumps from one solution to another may lead to a drastic change of the wave itself. Since the superharmonic instability enhances this property one may conclude that this class of waves can be considered non-stationary. By contrast, non-resonant waves are weakly unstable or stable and are the only waves that are likely to exist. Thus, this class of waves can be considered as quasi-permanent. [References: 10]
机译:对于均匀深度的水,进行了非常接近二维驻波极限的三维短波的共振相互作用的数值计算。对解决方案属性的详细研究表明,两种类型的波都允许通过转折点相互连接的多个解决方案。还显示出解在极限处彼此匹配。然后在驻波极限附近对短波的超谐不稳定性(共振相互作用)进行了研究。匹配允许将短波稳定度结果外推到驻波。结果是,对于谐振波,与谐波谐振相关的超谐波不稳定性占主导地位。从一种解决方案可能跳到另一种解决方案可能会导致波本身发生急剧变化。由于超谐波不稳定性增强了这一特性,因此可以得出这样的结论:此类波动可以被认为是非平稳的。相比之下,非谐振波是弱不稳定或稳定的,并且是唯一可能存在的波。因此,这类波动可被认为是准永久性的。 [参考:10]

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