论文标题

通过水平密度梯度将波耦合到海面电流

Coupling of waves to sea surface currents via horizontal density gradients

论文作者

Holm, Darryl D., Hu, Ruiao, Street, Oliver D.

论文摘要

此处报道的数学模型和数值模拟是通过卫星观测到海面温度和盐度的水平梯度的动机,这些梯度与快速振荡波的迅速变化的信封密切协调。当存在强烈的水平浮力梯度时,这种流体材料特性梯度与波壳的协调往往会发生。此处介绍的这种协调运动的非线性模型可能会为卫星图像的最佳设计提供未来的机会,该设计可以直接捕获波和电流的动态。此处得出的模型以两个近似级别出现:首先用于快速振荡的波,然后使用WKB方法获得其缓慢变化的包膜(SVE)近似值。此处为具有显着水平浮力梯度的自由表面得出的WKB波电流相互作用模型,表明这些相关性出现的机制是通过水平浮力梯度通过水平浮力梯度在表面电流上作用在表面上的快速振荡的膜的浮动力。在此模型中,浮力梯度在WKB波动量中明确出现,而浮力梯度与波 - 末端梯度不一致时,浮力又会产生密度加权的潜在涡度。

The mathematical models and numerical simulations reported here are motivated by satellite observations of horizontal gradients of sea surface temperature and salinity that are closely coordinated with the slowly varying envelope of the rapidly oscillating waves. This coordination of gradients of fluid material properties with wave envelopes tends to occur when strong horizontal buoyancy gradients are present. The nonlinear models of this coordinated movement presented here may provide future opportunities for the optimal design of satellite imagery that could simultaneously capture the dynamics of both waves and currents directly. The model derived here appears in two levels of approximation: first for rapidly oscillating waves, and then for their slowly varying envelope (SVE) approximation obtained by using the WKB approach. The WKB wave-current-buoyancy interaction model derived here for a free surface with significant horizontal buoyancy gradients indicates that the mechanism for the emergence of these correlations is the ponderomotive force of the slowly varying envelope of rapidly oscillating waves acting on the surface currents via the horizontal buoyancy gradient. In this model, the buoyancy gradient appears explicitly in the WKB wave momentum, which in turn generates density-weighted potential vorticity whenever the buoyancy gradient is not aligned with the wave-envelope gradient.

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