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Merging velocity measurements and modeling to improve understanding of tidal stream resource in Alderney Race

机译:合并速度测量和建模,提高艾尔德尼竞赛潮流资源的理解

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Tidal circulation and tidal stream resource in Alderney Race (Raz Blanchard) were assessed by using a towed acoustic Doppler current profiler (ADCP) system and tidal modeling. Optimal Interpolation (OI) was applied to process the underway velocity measurements recorded at neap tide flood and ebb flow. The interpolation technique allows reconstructing space-time evolution of the velocity field within the domain during surveying periods. The method employs velocity covariances derived from numerical simulations by a 2D hydrodynamic model MARS. Model covariances are utilized by the OI algorithm to obtain the most likely evolution of the velocity field under the constraints provided by the ADCP observations and their error statistics. The resulting velocity fields were used for assessing the tidal stream resource at site. The largest overall difference between the kinetic power density derived from simulated and interpolated velocity fields was found for ebb tide. Model simulations constrained by velocity measurements demonstrated a significant (up to 30%) decrease of power available in the flow. A significant change in spatial pattern of power density distribution was also identified. It is demonstrated that by merging high resolution velocity measurements at tidal energy site with modeling the tidal stream potential estimation becomes more accurate. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过使用牵引声学多普勒电流分析器(ADCP)系统和潮汐建模,评估Alderney Race(RAZ Blanchard)的潮汐循环和潮汐流资源。应用了最佳插值(OI)来处理在NeA潮泛洪水和潮流流中记录的进入速度测量。插值技术允许在测量期间重建域内的速度场的时空演变。该方法采用由2D流体动力模型火星衍生自数型模拟的速度考。通过OI算法利用模型协方差,以在ADCP观察和其误差统计数据提供的约束下获得速度场的最可能演变。得到的速度字段用于评估位点的潮汐流资源。发现了从模拟和内插速度场得出的动力密度之间的最大总差异用于退潮。由速度测量限制的模型模拟显示出流量中可用功率的显着(高达30%)。还鉴定了功率密度分布的空间模式的显着变化。据证明,通过利用在潮汐能位点的高分辨率速度测量,通过建模潮汐流电位估计变得更准确。 (c)2019 Elsevier Ltd.保留所有权利。

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