Coastal wave refraction in variable currents over a varying bathymetry.

IF 3.9 2区 工程技术 Q1 MECHANICS
Journal of Fluid Mechanics Pub Date : 2025-09-15 eCollection Date: 2025-09-25 DOI:10.1017/jfm.2025.10573
Trygve Halsne, Yan Li
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引用次数: 0

Abstract

Refraction is the predominant mechanism causing spatially inhomogeneous surface gravity wave fields. However, the complex interplay between depth- and current-induced wave refraction remains poorly understood. Assuming weak currents and slowly varying bathymetry, we derive an analytical approximation to the wave ray curvature, which is validated by an open-source ray tracing framework. The approximation has the form of linear superposition of a current- and a depth-induced component, each depending on the gradients in the ambient fields. This separation enables quantification of their individual and combined contributions to refraction. Through analysis of a few limiting cases, we demonstrate how the sign and magnitude of these components influence the wave refraction, and identify conditions where they either amplify or counteract each other. We also identify which of the two plays a dominant role. These findings provide physically resolved insights into the influence of current and depth gradients on wave propagation, and are relevant for applications related to remote sensing and coastal wave forecasting services.

在不同水深的不同海流中海岸波的折射。
折射是引起空间非均匀表面重力波场的主要机制。然而,深度和电流引起的波折射之间复杂的相互作用仍然知之甚少。假设弱电流和缓慢变化的测深,我们推导出了波射线曲率的解析近似,并通过一个开源的射线追踪框架进行了验证。该近似具有电流和深度感应分量的线性叠加形式,每个分量都取决于环境场的梯度。这种分离可以量化它们对折射的单独和综合贡献。通过对一些极限情况的分析,我们证明了这些分量的符号和大小如何影响波的折射,并确定了它们相互放大或抵消的条件。我们还确定了两者中哪一个起主导作用。这些发现为水流和深度梯度对波浪传播的影响提供了物理解决的见解,并与遥感和沿海波浪预报服务相关的应用有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.50
自引率
27.00%
发文量
945
审稿时长
5.1 months
期刊介绍: Journal of Fluid Mechanics is the leading international journal in the field and is essential reading for all those concerned with developments in fluid mechanics. It publishes authoritative articles covering theoretical, computational and experimental investigations of all aspects of the mechanics of fluids. Each issue contains papers on both the fundamental aspects of fluid mechanics, and their applications to other fields such as aeronautics, astrophysics, biology, chemical and mechanical engineering, hydraulics, meteorology, oceanography, geology, acoustics and combustion.
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