首页> 外文期刊>Ocean Dynamics >Far-field effects of tidal energy extraction in the Minas Passage on tidal circulation in the Bay of Fundy and Gulf of Maine using a nested-grid coastal circulation model
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Far-field effects of tidal energy extraction in the Minas Passage on tidal circulation in the Bay of Fundy and Gulf of Maine using a nested-grid coastal circulation model

机译:巢网沿海环流模型在米纳斯河道提取潮汐能对芬迪湾和缅因湾潮汐环流的远场影响

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The Bay of Fundy in eastern Canada has the highest tides in the world. Harnessing the tidal energy in the region has long been considered. In this study, the effects of tidal in-stream energy extraction in the Minas Passage on the three-dimensional (3D) tidal circulation in the Bay of Fundy (BoF) and the Gulf of Maine (GoM) are examined using a nested-grid coastal ocean circulation model based on the Princeton Ocean Model (POM). The nested-grid model consists of a coarse-resolution (~4.5 km) parent sub-model for the GoM and a high-resolution (~1.5 km) child sub-model for the BoF. The tidal in-stream energy extraction in the model is parameterized in terms of nonlinear Rayleigh friction in the momentum equation. A suite of numerical experiments are conducted to determine the ranges of extractable tidal in-stream energy and resulting effects on the 3D tidal circulation over the Bay of Fundy and the Gulf of Maine (BoF-GoM) in terms of the Rayleigh friction coefficients. The 3D model results suggest that the maximum energy extraction in the Minas Passage increases tidal elevations and tidal currents throughout the GoM and reduces tidal elevations and circulation in the upper BoF, especially in the Minas Basin. The far-field effect of tidal energy extraction in the Passage on the 3D tidal circulation in the BoF-GoM is examined in two cases of harnessing tidal in-stream energy from (a) the entire water column and (b) the lower water column within 20 m above the bottom in the Passage. The 3D model results demonstrate that tidal in-stream energy extraction from the lower water column has less impact on the tidal elevations and circulation in the BoF-GoM than the energy extraction from the whole water column in the Minas Passage.
机译:加拿大东部的芬第湾是世界上潮汐最高的国家。长期以来,人们一直在考虑利用该地区的潮汐能。在这项研究中,使用嵌套网格检查了Minas通道中潮汐流能量提取对芬迪湾(BoF)和缅因湾(GoM)的三维(3D)潮汐循环的影响。基于普林斯顿海洋模型(POM)的沿海海洋环流模型。嵌套网格模型包括用于GoM的粗分辨率(〜4.5 km)父子模型和用于BoF的高分辨率(〜1.5 km)子子模型。根据动量方程中的非线性瑞利摩擦,参数化了模型中的潮汐流能。进行了一组数值实验,以瑞利摩擦系数的形式确定潮汐流中可提取能量的范围以及对芬迪湾和缅因湾(BoF-GoM)上3D潮汐循环的影响。 3D模型结果表明,在Minas通道中最大的能量提取会增加整个GoM的潮汐高度和潮流,并减小BoF上部(尤其是在Minas盆地)的潮汐高度和环流。在两个利用(a)整个水柱和(b)下部水柱的潮汐流能的案例中,研究了BoF-GoM通道中潮汐能提取对3D潮汐循环的远场效应。在通道底部上方20 m之内。 3D模型结果表明,与从Minas通道的整个水柱中提取能量相比,从较低水柱中提取潮汐流中能量对BoF-GoM中的潮汐高度和环流的影响较小。

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