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Free and Forced Components of Shoaling Long Waves in the Absence of Short-Wave Breaking

机译:在没有短波破碎的情况下,在没有短波破碎的情况下自由和强制部件

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摘要

Long waves are generated and transform when short-wave groups propagate into shallow water, but the generation and transformation processes are not fully understood. In this study we develop an analytical solution to the linearized shallow-water equations at the wave-group scale, which decomposes the long waves into a forced solution (a bound long wave) and free solutions (free long waves). The solution relies on the hypothesis that free long waves are continuously generated as short-wave groups propagate over a varying depth. We show that the superposition of free long waves and a bound long wave results in a shift of the phase between the short-wave group and the total long wave, as the depth decreases prior to short-wave breaking. While it is known that short-wave breaking leads to free-long-wave generation, through breakpoint forcing and bound-wave release mechanisms, we highlight the importance of an additional free-long-wave generation mechanism due to depth variations, in the absence of breaking. This mechanism is important because as free long waves of different origins combine, the total free-long-wave amplitude is dependent on their phase relationship. Our free and forced solutions are verified against a linear numerical model, and we show how our solution is consistent with prior theory that does not explicitly decouple free and forced motions. We also validate the results with data from a nonlinear phase-resolving numerical wave model and experimental measurements, demonstrating that our analytical model can explain trends observed in more complete representations of the hydrodynamics.
机译:当短波组传播到浅水中时,产生长波并进行变换,但不完全理解生成和转换过程。在这项研究中,我们在波浪组刻度下对线性化浅水方程的分析解决方案进行了分解,它将长波分解成强制溶液(绑定的长波)和自由溶液(空闲长波)。解决方案依赖于假设,即作为短波组在变化深度上传播的作为短波组连续产生自由的长波。我们表明,自由长波和绑定的长波叠加导致短波组和总长波之间的相位的偏移,因为在短波断裂之前深度降低。虽然已知短波破碎导致自发的长波产生,但通过断点强制和绑定波释放机制,我们在缺失中突出了由于深度变化而导致的额外的自由度产生机制的重要性打破。这种机制很重要,因为由于不同起源的自由长波相结合,总自由波幅度取决于它们的相位关系。我们的自由和强制解决方案是针对线性数值模型的验证,我们展示了我们的解决方案如何与未明确脱离自由和强制动议的先前理论一致。我们还通过从非线性相位解析数值波模型和实验测量的数据验证结果,表明我们的分析模型可以解释在更完整的流体动力学表示中观察到的趋势。

著录项

  • 来源
    《Journal of Physical Oceanography》 |2021年第5期|1465-1487|共23页
  • 作者单位

    CSIRO Oceans & Atmosphere Crawley WA Australia|Univ Western Australia Sch Earth Sci Crawley WA Australia;

    Univ Western Australia Sch Earth Sci Crawley WA Australia|Univ Western Australia Oceans Grad Sch Crawley WA Australia;

    Univ Western Australia Sch Earth Sci Crawley WA Australia;

    Univ Western Australia Oceans Grad Sch Crawley WA Australia|Delft Univ Technol Fac Civil Engn & Geosci Environm Fluid Mech Sect Delft Netherlands;

    DYNECO DHYSED IFREMER Plouzane France;

    Univ Western Australia Sch Earth Sci Crawley WA Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ocean dynamics; Shallow-water equations; Wind waves;

    机译:海洋动力学;浅水方程;风波;
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