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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Wave-current interactions in a wave-dominated tidal inlet
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Wave-current interactions in a wave-dominated tidal inlet

机译:波浪主导的潮汐进口中的波流相互作用

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Wave-current interactions play a major role in the dynamics of shallow tidal inlets. This study investigates these interactions at a natural inlet, with a strong focus on current-induced changes on wave propagation. The analysis of hydrodynamic data collected at the Albufeira lagoon, Portugal, revealed spatiotemporal variations of water levels and wave heights along the inlet, attributed to wave-current interaction processes. We compared the simulations of a coupled wave-circulation modeling system, computed with and without waves, and propagated with and without current feedback. The wave-induced setup inside the lagoon represented 7%-15% of the offshore significant wave height. The accuracy of the wave's predictions improved when current feedback was included. During ebb, the currents increased the wave height at the mouth of the inlet (up to 20%) and decreased the wave height in the inlet (up to 40%), due to current-induced refraction, steepness dissipation, and partial blocking. During flood, the currents decreased the wave height in the inlet (up to 10%) and increased the wave height at the exterior parts of the ebb shoal (up to 10%), due to current-induced refraction. These effects significantly attenuate seaward sediment fluxes during ebb and contribute to the sediment accretion in the inlet.
机译:波流相互作用在浅潮汐入口的动力学中起主要作用。这项研究调查了自然入口处的这些相互作用,并着重研究了电流引起的波传播变化。对葡萄牙阿尔布费拉泻湖所收集的水动力数据进行的分析显示,沿波进口的水位和波高的时空变化归因于波流相互作用过程。我们比较了耦合波环流建模系统的仿真,计算了有无波,并在有无电流反馈的情况下传播。泻湖内的波浪诱发装置占离岸有效波浪高度的7%-15%。当包含电流反馈时,波浪预测的准确性会提高。在退潮期间,由于电流引起的折射,陡峭度消散和部分阻塞,电流使入口处的波高增加(最高20%),并降低入口处的波高(最高40%)。在洪水期间,由于电流引起的折射,电流降低了入口处的波高(最高10%),并增加了浅滩外部的波高(最高10%)。这些作用在退潮期间显着减弱了向海的沉积物通量,并有助于增加进口中的沉积物。

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