在真实剪切流上由平移和振荡源产生的表面波

Yan Li, S. Ellingsen
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引用次数: 1

摘要

我们分析了由任意深度依赖的水平背景流上的平移振荡表面扰动产生的表面波,重点是确定多普勒共振。对于无量纲频率τ = ωV/g (ω:振荡频率,V:源速度,g:重力加速度)的临界值,产生的波不能逃逸。在没有剪切的情况下,共振值是众所周知的1/4;剪切流的存在改变了这一点。我们推导了研究这个问题的理论和数值工具,并提出了据我们所知的真实测量剪切电流上源的多普勒共振的第一个计算。研究(数值得到的)色散关系的图形解,可以推导出确定存在于传播方向不同扇区的远场波的数量的准则,并由此推导出多普勒共振的准则。作为流的例子,我们研究了一个典型的风驱动流,以及一个在哥伦比亚河河口测量的流。我们表明,将这些电流建模为均匀的或基于表面测量的线性深度依赖可能会导致很大的差异,特别是对于长波长和中等波长。
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Surface Waves Generated by a Translating and Oscillating Source Atop Realistic Shear Flows
We analyze surface waves generated by a translating, oscillating surface disturbance atop a horizontal background flow of arbitrary depth dependence, with a focus on determining the Doppler resonance. For a critical value of the dimensionless frequency τ = ωV/g (ω: oscillation frequency, V: source velocity, g: gravitational acceleration) at which generated waves cannot escape. In the absence of shear the resonant value is famously 1/4; the presence of a shear current modifies this. We derive the theoretical and numerical tools for studying this problem, and present the first calculation of the Doppler resonance for a source atop a real, measured shear current to our knowledge. Studying graphical solutions to the (numerically obtained) dispersion relation allows derivation of criteria determining the number of far-field waves that exist in different sectors of propagation directions, from which the criteria for Doppler resonance follow. As example flows we study a typical wind-driven current, and a current measured in the Columbia River estuary. We show that modeling these currents as uniform or with a linear depth dependence based on surface measures may lead to large discrepancies, in particular for long and moderate wavelengths.
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