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The role of tidal asymmetry in characterizing the tidal energy resource of Orkney

机译:潮汐不对称在表征奥克尼潮汐能源中的作用

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When selecting sites for marine renewable energy projects, there are a wide range of economical and practical constraints to be considered, from the magnitude of the resource through to proximity of grid connections. One factor that is not routinely considered in tidal energy site selection, yet which has an important role in quantifying the resource, is tidal asymmetry, i.e. variations between the flood and ebb phases of the tidal cycle. Here, we present theory and develop a high-resolution three-dimensional ROMS tidal model of Orkney to examine net power output for a range of sites along an energetic channel with varying degrees of tidal asymmetry. Since power output is related to velocity cubed, even small asymmetries in velocity lead to substantial asymmetries in power output. We also use the 3D model to assess how tidal asymmetry changes with height above the bed, i.e. representing different device hub heights, how asymmetry affects turbulence properties, and how asymmetry is influenced by wind-driven currents. Finally, although there is minimal potential for tidal phasing over our study site, we demonstrate that regions of opposing flood- versus ebb-dominant asymmetry occurring over short spatial scales can be aggregated to provide balanced power generation over the tidal cycle.
机译:在为海洋可再生能源项目选择地点时,从资源的规模到并网的邻近性,都应考虑到广泛的经济和实际限制。潮汐能量的不对称性,即潮汐周期的洪水期和退潮期之间的变化,是潮汐能源选址中通常不考虑的一个因素,但在量化资源方面起着重要作用。在这里,我们提出理论并开发了Orkney的高分辨率三维ROMS潮汐模型,以检查潮汐不对称程度不同的高能通道沿一系列站点的净功率输出。由于功率输出与速度立方有关,因此即使速度的不对称性也会导致功率输出中的实质性不对称。我们还使用3D模型评估潮汐不对称性如何随床上方的高度变化,即代表不同的设备轮毂高度,不对称性如何影响湍流特性以及不对称性如何受到风流的影响。最后,尽管在我们的研究地点进行潮汐分阶段的可能性很小,但我们证明,可以将在短空间尺度上发生的洪灾与潮汐占主导地位的对立不对称区域聚集起来,以在潮汐周期内提供平衡的发电量。

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