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Modelling effects of tidal currents on waves at a tidal stream energy site

机译:在潮汐流能量站点上模拟潮流对波浪的影响

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Whereas tidal stream energy sites may be characterised by significant wave and current interactions, numerical resource assessments routinely ignored these processes neglecting, in particular, current induced modifications of waves. Here, these effects are investigated in locations exposed to ocean waves, evaluating performances of a phase-averaged numerical wave model to approach observed semi diurnal modulations of wave heights, periods and directions, off and within the Fromveur Strait (western Brittany), a region with strong potential for tidal array development. The introduction of tidal forcings in the wave model is found to improve predictions by approaching the large-scale influence of current induced refraction leading to variations of the significant wave height by nearly 30% at the deep water wave buoy. The model reproduces furthermore, with the inclusion of an additional dissipation term, the localised steepening and waves breaking on negative current gradients, limiting the overestimation of the significant wave height at the shallow-water wave buoy within the Fromveur Strait. Tidal currents may finally lead to a strong increase in wave power, over 100 % in northern entrances of straits, contributing to the variability of the wave energy flux. (C) 2017 Elsevier Ltd. All rights reserved.
机译:尽管潮汐流的能量站点可能具有明显的波浪和电流相互作用,但数值资源评估通常忽略了这些过程,尤其是忽略了电流引起的波浪修正。在这里,在暴露于海浪的位置研究了这些影响,评估了相位平均数值波模型的性能,以接近从弗洛韦尔海峡(布列塔尼西部)及其附近地区观察到的波高,周期和方向的半日调制具有发展潮汐阵列的巨大潜力。通过接近潮流感应折射的大规模影响,导致深水波浮标处的有效波高变化近30%,波浪模型中引入潮汐强迫可以改善预测。此外,该模型还通过附加的耗散项,局部陡峭化和波浪在负电流梯度上破裂来重现模型,从而限制了对弗罗弗海峡内浅水波浮标处有效波高的高估。潮流最终可能会导致海浪功率大幅增加,在海峡北部入口处超过100%,从而导致海浪能量通量的变化。 (C)2017 Elsevier Ltd.保留所有权利。

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