首页> 外文期刊>Applied Energy >Characterising the spatial and temporal variability of the tidal-stream energy resource over the northwest European shelf seas
【24h】

Characterising the spatial and temporal variability of the tidal-stream energy resource over the northwest European shelf seas

机译:表征西北欧洲陆架海域潮汐能资源的时空变化

获取原文
获取原文并翻译 | 示例
           

摘要

As devices move from full-scale prototype to commercial installations, it is important that developers have detailed knowledge of the tidal energy resource. Therefore, the spatial distribution of the tidal currents over the northwest European shelf seas has been examined to improve understanding of the tidal-stream energy resource. Using a three-dimensional hydrodynamic model (ROMS) at 1 km spatial resolution, and applying device characteristics of the Seagen-S turbine, we show that the ratio of the amplitudes of the M-2 and S-2 tidal currents can lead to significant variability in annual practical power generation - variability that is not accounted for when considering only the mean peak spring tidal velocities, as is generally the case in resource feasibility studies. In addition, we show that diurnal inequalities (governed by K-1 and O-1 tidal constituents) and tidal asymmetries (governed by the relationship between My and its compound tide M-4) over the northwest European shelf seas can further affect power generation at potential high-energy sites. Based on these variabilities, the spatial distribution of the tidal-stream 'capacity factor' has been calculated. We find that mean peak spring tidal velocities can under-estimate the resource by up to 25%, and that annual practical power generation can vary by similar to 15% for regions experiencing similar mean peak spring tidal velocities, due to the influence of other tidal constituents. Therefore, even preliminary resource assessments should be based on annual average power density, rather than peak spring tidal velocity. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:随着设备从大型原型设备转移到商业设备,开发人员必须具有潮汐能资源的详细知识,这一点很重要。因此,已经研究了西北欧洲大陆架海域的潮流的空间分布,以增进对潮流资源的了解。使用空间分辨率为1 km的三维流体动力学模型(ROMS),并应用Seagen-S涡轮机的设备特性,我们表明M-2和S-2潮流的振幅比可导致显着年度实际发电量的可变性-仅考虑平均峰值春季潮汐速度时不考虑可变性,通常在资源可行性研究中就是这样。此外,我们表明,欧洲西北海域的昼夜不平等(由K-1和O-1潮汐成分控制)和潮汐不对称(由My和其复合潮汐M-4之间的关系控制)会进一步影响发电在潜在的高能量场所。基于这些可变性,已经计算出潮汐流“容量因子”的空间分布。我们发现,由于其他潮汐的影响,平均春季潮汐峰值速度可能低估资源25%,并且对于经历相似的平均春季潮汐峰值速度的区域,年度实际发电量可能会发生约15%的变化。成分。因此,即使是初步的资源评估也应该基于年平均功率密度,而不是峰值春季潮汐速度。 (C)2015作者。由Elsevier Ltd.发布

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号