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首页> 外文期刊>Oceanographic Literature Review >Sensitivity assessment of bathymetry and choice of tidal constituents on tidal-stream energy resource character-isation in the Gulf of California, Mexico
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Sensitivity assessment of bathymetry and choice of tidal constituents on tidal-stream energy resource character-isation in the Gulf of California, Mexico

机译:墨西哥海湾潮流能源人物潮流浴室浴碱度分组的敏感性评估及潮汐组分

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There has been a significant increase in the number of published tidal-stream energy resource assessments in recent years due to the growing availability of open-source hydrodynamic models, and freely available data for model bathymetry (e.g. GE-BCO_2014 and ETOPO) and boundary conditions (e.g. TPXO, FES, EOT). This study examines how the choice of bathymetry and tidal constituents affects the quantification of a tidal-stream energy resource, by conducting sensitivity tests for the Gulf of California. We find that the mean KPD (Kinetic Power Density) and annual mean power are significantly underestimated when using just GEBCO_2014 or ETOPO bathymetry data sources on their own. For the Midriff region, between San Lorenzo and San Esteban Islands (herein the San Lorenzo Passage), the annual mean power potential was estimated to be around 50 MW when using freely available bathymetry data, while the annual mean power increased to ~200 MW when using a bespoke dataset that was a combination of GEBCO and higher-resolution bathymetry provided by CICESE (The Centre for Scientific Research and Higher Education at Ensenada). Current speeds reduce from 2.4 m/s when using high-resolution to around 1.2 m/s and 0.8 m/s when using open source bathymetry products. Finally, we compared the estimated energy using tidal levels predicted from 29 tidal constituents compared with simulations that included just the principal semi-diurnal lunar (M_2) and solar (S_2) constituents. The annual mean KPD reduced by almost l/3rd in the San Lorenzo Passage, when just considering M_2 and S_2 constituents, suggesting that diurnal and higher order harmonic constituents are important for accurate resource assessments in this region.
机译:由于开源流体动力学模型的可用性越来越多,近年来,近年来发表的潮流能源资源评估数量有显着增加,以及用于模型沐浴浴(例如GE-BCO_2014和ETOPO)和边界条件的自由数据(例如TPXO,FES,EOT)。本研究探讨了沐浴和潮汐成分的选择如何通过对加利福尼亚州海湾进行敏感性测试来影响潮流能源的量化。我们发现,在使用Gebco_2014或Etopo Bathymetry数据来源时,均显着KPD(动力学电力密度)和年平均功率显着低估。对于中型地区,在圣洛伦佐和圣埃斯特班群岛(在这里San Lorenzo通道)之间,当使用自由可用的浴权数据时,年平均功率潜力估计为约50兆瓦,而年度平均力量增加到200兆瓦使用由Cicese提供的Gebco和高分辨率巴斯族的组合的定制数据集(埃塞纳达队的科学研究和高等教育中心)。当使用开源沐浴浴产品时,电流速度从2.4米/秒减少到大约1.2米/秒和0.8米/秒。最后,我们使用从29个潮汐成分预测的潮汐水平与包括仅包括主要半昼夜月球(M_2)和太阳能(S_2)成分的模拟相比,使用潮汐水平进行比较。当正常考虑M_2和S_2成分时,San Lorenzo通道中的年度平均KPD在San Lorenzo通道中减少了几乎L / 3RD,暗示昼夜和高阶谐波成分对于该地区准确的资源评估很重要。

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  • 来源
    《Oceanographic Literature Review 》 |2020年第9期| 2068-2068| 共1页
  • 作者单位

    School of Ocean and Earth Science National Oceanography Centre University of Southampton European Way Southampton SO14 3ZH United Kingdom;

    School of Ocean and Earth Science National Oceanography Centre University of Southampton European Way Southampton SO14 3ZH United Kingdom;

    School of Ocean and Earth Science National Oceanography Centre University of Southampton European Way Southampton SO14 3ZH United Kingdom;

    School of Ocean and Earth Science National Oceanography Centre University of Southampton European Way Southampton SO14 3ZH United Kingdom;

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