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Modelling impacts of tidal stream turbines on surface waves

机译:模拟潮汐流涡轮机对面波的影响

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A high resolution Computational Flow Dynamics (CFD) numerical model is built based on a laboratory experiment in this research to study impacts of tidal turbines on surface wave dynamics. A reduction of similar to 3% in wave height is observed under the influence of a standalone turbine located 0.4 m from the free surface. The artificial wave energy dissipation routine 'OBSTACLE' within FVCOM is shown to effectively capture the correct level of wave height reduction, reproducing the CFD results with significantly less computational effort.The turbine simulation system is then applied to a series of test cases to investigate impact of a standalone turbine on bed shear stress. Results suggest an apparent increase in bed stress (similar to 7%) up-stream of the turbine due to the inclusion of surface waves. However, in the immediate wake of the turbine, bed stress is dominated by the presence of the turbine itself, accounting for a similar to 50% increase, with waves having a seemingly negligible effect up to 9D (D is the turbine diameter) downstream of the turbine. Beyond this point, the effect of waves on bed shear stress become apparent again. The influence of OBSTACLE on bed stress is also noticeable in the far wake, showing a reduction of similar to 2% in wave height. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究的实验室实验的基础上,建立了高分辨率计算流动力学(CFD)数值模型,以研究潮汐涡轮机对表面波动力学的影响。在距自由表面0.4 m处的独立涡轮机的影响下,观察到波高降低了约3%。 FVCOM中的人造波能量消散程序'OBSTACLE'被显示为有效地捕获了正确的波高降低水平,以显着较少的计算量来再现CFD结果,然后将涡轮仿真系统应用于一系列测试案例以研究影响涡轮对床切应力的影响结果表明,由于包含了表面波,涡轮上游的床层应力明显增加(约7%)。但是,在涡轮机立即唤醒后,床面应力主要由涡轮机本身的存在所决定,大约增加了50%,而波流在其下游直至9D时似乎微不足道(D是涡轮机直径)。涡轮机。超过这一点,波浪对床层剪应力的影响再次变得明显。遥远的时候,障碍物对床应力的影响也很明显,表明波高降低了约2%。 (C)2018 Elsevier Ltd.保留所有权利。

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