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Response of wave energy to tidal currents in the western sea of Jeju Island, Korea

机译:韩国济州岛西海波动力对潮流的反应

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摘要

This study focuses on the changes in wave energy in response to tidal currents in the western sea of Jeju Island where high-energy wave conditions along with strong tidal currents are usual. Here, an ocean-wave coupled modeling system was used to investigate the effect of tidal currents on the wave energy condition. A comparative experiment with and without tidal currents shows that the current largely affects wave energy in terms of the wave spectrum as a response to the relative direction between waves and currents. When the direction of the tidal current is the same as that of wave propagation, the magnitude of wave height is reduced with energy transfer from shorter periods of 7-9 s to longer periods of 10-12 s, resulting in a decrease (increase) of shorter (longer) wave energy. This reaction is reversed when the tidal current flows in a direction opposite to that of wave propagation. The uncoupled model tends to overestimate/underestimate the wave energy during the ebb/flood tides when the waves follow/oppose the currents by approximately 25%. This study demonstrates that ocean-wave coupling is capable of improving model wave conditions, and therefore, this model is useful for estimating potential wave energy resource and candidate sites.
机译:本研究重点介绍了济州岛西海潮流的波动变化,其中高能量​​波条件以及强烈的潮流。这里,使用海浪耦合建模系统来研究潮汐电流对波能量条件的影响。具有和不具有潮汐电流的比较实验表明,电流在大量影响波谱方面的波动能量,作为对波和电流之间的相对方向的响应。当潮汐电流的方向与波传播的方向相同时,波浪高度的大小从7-9秒的较短时段的能量转移减小到10-12秒,导致减少(增加)更短(更长)的波能量。当潮流在与波传播相反的方向上流动时,该反应被逆转。当波在遵循/反对电流约25%时,未耦合的模型倾向于高估/低估了潮起潮/洪水潮汐期间的波能量。该研究表明,海浪耦合能够改善模型波条件,因此,该模型可用于估计潜在的波能源资源和候选站点。

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    《Oceanographic Literature Review》 |2021年第5期|1160-1161|共2页
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