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首页> 外文期刊>Theoretical and Experimental Plant Physiology >Surface waves on currents with arbitrary vertical shear
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Surface waves on currents with arbitrary vertical shear

机译:在具有任意垂直剪切的电流上的表面波

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We study dispersion properties of linear surface gravity waves propagating in an arbitrary direction atop a current profile of depth-varying magnitude using a piecewise linear approximation and develop a robust numerical framework for practical calculation. The method has been much used in the past for the case of waves propagating along the same axis as the background current, and we herein extend and apply it to problems with an arbitrary angle between the wave propagation and current directions. Being valid for all wavelengths without loss of accuracy, the scheme is particularly well suited to solve problems involving a broad range of wave vectors, such as ship waves and Cauchy-Poisson initial value problems. We examine the group and phase velocities over different wavelength regimes and current profiles, highlighting characteristics due to the depth-variable vorticity. We show an example application to ship waves on an arbitrary current profile and demonstrate qualitative differences in the wake patterns between concave down and concave up profiles when compared to a constant shear profile with equal depth-averaged vorticity. We also discuss the nature of additional solutions to the dispersion relation when using the piecewise-linear model. These are vorticity waves, drifting vortical structures which are artifacts of the piecewise model. They are absent for a smooth profile and are spurious in the present context. Published by AIP Publishing.
机译:我们使用分段线性近似在近距离变化的当前曲线上传播的线表面重力波的分散特性,并使用分段线性近似进行稳健的数值框架进行实际计算。在过去的情况下,该方法用于沿着与背景电流相同的轴传播的波的情况,并且我们在此扩展并将其应用于波传播和电流方向之间的任意角度的问题。对于无需精度的无损失的所有波长有效,该方案特别适合解决涉及广泛波浪矢量的问题,例如船舶波和Cauchy-Poisson初始价值问题。我们在不同波长制度和电流型材上检查组和阶段速度,突出显示由于深度变量涡度引起的特性。我们示出了一个示例应用程序在任意电流配置文件上运送波浪,并且与具有相同深度平均涡度的恒定剪切曲线相比,在凹入下和凹陷型材之间展示抖动模式之间的定性差异。我们还使用分段 - 线性模型时讨论分散关系的附加解的性质。这些是涡旋波,漂移是分段模型的伪影的血管结构。它们不存在于平滑的轮廓,并且在当前背景下是虚假的。通过AIP发布发布。

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