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Resource assessment for future generations of tidal-stream energy arrays

机译:下一代潮汐能阵列的资源评估

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Tidal-stream energy devices currently require spring tide velocities (SV) in excess of 2.5 m/s and water depths in the range 25-50 m. The tidal-stream energy resource of the Irish Sea, a key strategic region for development, was analysed using a 3D hydrodynamic model assuming existing, and potential future technology. Three computational grid resolutions and two boundary forcing products were used within model configuration, each being extensively validated. A limited resource (annual mean of 4 TJ within a 90 km(2) extent) was calculated assuming current turbine technology, with limited scope for long-term sustainability of the industry. Analysis revealed that the resource could increase seven fold if technology were developed to efficiently harvest tidal-streams 20% lower than currently required (SV > 2 m/s) and be deployed in any water depths greater than 25 m. Moreover, there is considerable misalignment between the flood and ebb current directions, which may reduce the practical resource. An average error within the assumption of rectilinear flow was calculated to be 20 degrees, but this error reduced to similar to 3 degrees if lower velocity or deeper water sites were included. We found resource estimation is sensitive to hydrodynamic model resolution, and finer spatial resolution (<500 m) is required for regional-scale resource assessment when considering future tidal-stream energy strategies. (C) 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:潮汐能设备目前需要超过2.5 m / s的潮汐速度(SV)和25至50 m的水深。爱尔兰海是重要的发展战略区域,其潮汐能资源使用3D流体动力学模型进行了分析,假定存在现有技术和潜在的未来技术。在模型配置中使用了三个计算网格分辨率和两个边界强制乘积,每个都经过了广泛的验证。假设使用当前的涡轮机技术,则计算出有限的资源(在90 km(2)范围内,年均4 TJ),并且该行业的长期可持续性范围有限。分析显示,如果开发出可以有效地采集比目前所需的低20%(SV> 2 m / s)的潮汐流并将其部署在任何大于25 m的水深中的资源,该资源将增加7倍。此外,洪水方向和退潮方向之间存在相当大的偏差,这可能会减少实际资源。在直线流动的假设范围内,平均误差经计算为20度,但如果包括较低的速度或较深的水位,则该误差减小到3度左右。我们发现资源估算对流体动力学模型分辨率敏感,在考虑未来的潮汐流能策略时,需要更精细的空间分辨率(<500 m)来进行区域规模的资源评估。 (C)2015作者。由Elsevier Ltd.发布。这是CC BY-NC-ND许可(http://creativecommons.org/licenses/by-nc-nd/4.0/)下的开放获取文章。

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