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Approximations to the scattering of water waves by steep topography

机译:陡峭地形对水波散射的近似

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摘要

A new method is developed for approximating the scattering of linear surface gravity waves on water of varying quiescent depth in two dimensions. A conformal mapping of the fluid domain onto a uniform rectangular strip transforms steep and discontinuous bed profiles into relatively slowly varying, smooth functions in the transformed free-surface condition. By analogy with the mild-slope approach used extensively in unmapped domains, an approximate solution of the transformed problem is sought in the form of a modulated propagating wave which is determined by solving a second-order ordinary differential equation. This can be achieved numerically, but an analytic solution in the form of a rapidly convergent infinite series is also derived and provides simple explicit formulae for the scattered wave amplitudes. Small-amplitude and slow variations in the bedform that are excluded from the mapping procedure are incorporated in the approximation by a straightforward extension of the theory. The error incurred in using the method is established by means of a rigorous numerical investigation and it is found that remarkably accurate estimates of the scattered wave amplitudes are given for a wide range of bedforms and frequencies.
机译:开发了一种新方法,用于近似估算二维静态深度在线性静态水上的散射。流体域在均匀矩形带上的共形映射将陡峭和不连续的床剖面转换为在转换后的自由表面条件下相对缓慢变化的平滑函数。通过与在未映射域中广泛使用的缓坡方法进行类比,以调制传播波的形式寻求转换问题的近似解,该传播波是通过求解二阶常微分方程确定的。这可以通过数值实现,但是还可以导出快速收敛的无穷级数形式的解析解,并且可以为散射波振幅提供简单的显式公式。通过直接扩展该理论,可以将近似过程中所包含的床形中的小幅度变化和缓慢变化纳入到近似中。使用该方法产生的误差是通过严格的数值研究确定的,并且发现对于宽范围的床形和频率,给出了散射波幅度的非常准确的估计。

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