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Surface wave interaction with oblique internal waves.

机译:面波与倾斜的内部波相互作用。

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摘要

The results of a theoretical and experimental study of a resonant interaction between a surface wave and two internal waves are presented. It is shown that the motion of a surface wave in a horizontally infinite two-layer fluid can lead to generation of two oblique internal waves.; Two analytical models are developed. The first model is based on a three-dimensional formulation of weakly non-linear interaction of the waves in a two-layer medium. The second model has a two-dimensional viscous formulation and serves to explore the effects of the viscosity of the lower layer on both forcing and damping in the interaction.; Using the three-dimensional model, the effects of different parameters of the system on the interaction are investigated by changing each parameter separately and observing the effects on the evolution of the internal waves. Of particular importance is the effect of the direction angle of the internal wave pair on the interaction. It is shown that the more oblique the internal waves are to the surface wave, the higher their growth rates are.; Besides producing further damping, higher viscosity may also enhance the generation of the internal waves by increasing the surface-wave induced shear at the interface. The two-dimensional viscous model is used to investigate this effect of viscosity along with the corresponding dissipation effect on the interaction. The results indicate that although the forcing increases with viscosity, the damping effect of viscosity is more significant.; A series of experiments were carried out in a wave flume to test the theoretical results. Salt water was used as the lower layer and fresh water as the upper layer. The experiments led to generation of a three-dimensional internal wave pattern at the interface. It is shown that the pattern is created by the reflection of the oblique internal waves from the flume sidewalls. Wavelengths, frequencies, and amplitudes of the internal waves were measured for comparison with the theoretical values. The experiments confirm the theoretical results in general.; In contrast with the past theoretical studies, it is shown that viscosity is not essential to the excitation and growth of the internal waves. Also, it is shown that contrary to Hill's (1997) theoretical results, there are no specific bounds for growth of the internal waves on the density ratio of the two layers, the frequency of the surface wave, and the direction angle of the internal waves. In particular, it is demonstrated that the instability of the internal waves is not a selective process, and it may occur over wide ranges of the parameters. (Abstract shortened by UMI.)
机译:给出了表面波和两个内部波之间的共振相互作用的理论和实验研究的结果。结果表明,在水平无限的两层流体中表面波的运动会导致产生两个倾斜的内波。开发了两种分析模型。第一个模型基于两层介质中波的弱非线性相互作用的三维表示。第二种模型具有二维粘性公式,用于探讨下层粘度对相互作用中的强迫和阻尼的影响。使用三维模型,通过分别更改每个参数并观察对内部波的演化的影响,研究了系统的不同参数对相互作用的影响。特别重要的是内波对的方向角对相互作用的影响。结果表明,内部波相对于表面波越倾斜,其增长率就越高。除了产生进一步的阻尼之外,更高的粘度还可以通过增加界面处的表面波感应剪切来增强内部波的产生。二维粘性模型用于研究粘度的这种影响以及对相互作用的相应耗散作用。结果表明,尽管强迫随着黏度的增加而增加,但黏度的阻尼作用更为显着。在波浪槽中进行了一系列实验以测试理论结果。盐水用作下层,淡水用作上层。实验导致在界面处产生三维内部波型。示出了通过来自槽侧壁的倾斜内波的反射来产生图案。测量内部波的波长,频率和幅度,以与理论值进行比较。实验证实了理论结果。与过去的理论研究相比,表明粘度对于内波的激发和增长不是必不可少的。另外,与希尔(1997)的理论结果相反,两层的密度比,表面波的频率和内部波的方向角对内部波的生长没有特定的限制。 。特别地,证明了内部波的不稳定性不是选择性过程,并且它可能在较宽的参数范围内发生。 (摘要由UMI缩短。)

著录项

  • 作者

    Jamali, Mirmosadegh.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Engineering Civil.; Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;等离子体物理学;
  • 关键词

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