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EFFECT OF WAVE-CURRENT INTERACTION ON STRONG TIDAL CURRENT

机译:波电流互作用对强潮汐电流的影响

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We consider the influence of wave-current interactions (WCI) on the tidal energy resource through changes in the velocity field of tidal currents. In order to investigate this, we have run three models: SWAN (stand-alone), ROMS (stand-alone) and COAWST (two-way coupled ROMS and SWAN model). The research area of our studies is Alderney Race, France, an area with strong currents, which has a strong potential for tidal turbine deployment. The time period used for the simulations was March 2008, when a strong storm hit the Alderney Race area and produced significant wave heights (H_s) of up to 7 m and a Stokes drift near the surface close to 0.3 m/s. Furthermore, in order to see the extent of the influence of large waves on current parameters, two virtual storms with larger waves have been generated by magnifying the wave energy spectrum and changing the frequency of the spectrum of the real storm in March 2008. The 3D and the barotropic velocity field were analysed in order to see if the WCI in the waters of Alderney Race during storm conditions can cause a significant increase or decrease of the current speed and through which mechanisms. This study also investigates the Turbulent Kinetic Energy (TKE) in order to portray the turbulent conditions in the area of interest which are important for resource characterisation and device design.
机译:我们考虑通过潮流速度场的变化,波流相互作用(WCI)对潮汐能源的影响。为了对此进行调查,我们运行了三种模型:SWAN(独立),ROMS(独立)和COAWST(双向耦合ROMS和SWAN模型)。我们研究的研究领域是法国Alderney Race,这是一个潮流旺盛的地区,具有部署潮汐涡轮机的强大潜力。用于模拟的时间段是2008年3月,当时强风暴袭击了奥尔德尼赛区,并产生了高达7 m的显着波高(H_s),斯托克斯漂移接近地表的速度接近0.3 m / s。此外,为了查看大波对当前参数的影响程度,2008年3月,通过放大波能谱并更改真实风暴的频谱频率,生成了两个波较大的虚拟风暴。3D分析了正压速度场和正压速度场,以了解暴风雨期间奥尔德尼种族水域中的WCI是否会引起当前速度的显着提高或降低,以及通过哪些机制。这项研究还研究了湍动能(TKE),以描绘感兴趣区域中的湍流条件,这对于资源表征和设备设计很重要。

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