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Assessment of Hydrodynamic Impacts Throughout the Bay of Fundy and Gulf of Maine Due to Tidal Energy Extraction by Tidal Lagoons

机译:由于潮汐泻湖的潮汐能提取,评估整个湾湾和缅因湾的流体动力学影响

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The Bay of Fundy is home to some of the world's largest tides and has long been identified as one of the world's premier locations for the installation of tidal power generating systems. This paper deals with the assessment of hydrodynamic impacts throughout the Bay of Fundy and Gulf of Maine due to power generation by tidal lagoons located in Minas Basin. The lagoon concept involves temporarily storing seawater behind an impoundment dike and generating power by gradually releasing the seawater through conventional low-head hydroelectric turbines. Tidal lagoons represent a relatively novel approach to tidal power generation, and are intended to achieve high efficiency while avoiding some of the environmental problems associated with tidal barrages. A detailed two-dimensional (depth-averaged) finite-element numerical model, based on the TELEMAC system, has been developed, calibrated against observed water levels and velocities, and applied to simulate tidal hydrodynamics throughout the Bay of Fundy and Gulf of Maine, both for existing conditions without a lagoon and for two scenarios with tidal lagoons operating in Minas Basin. A 12 km2 offshore lagoon with 14 turbines generating -124 MW on average and a 24 km2 coastal lagoon with 24 turbines generating -220 MW on average have been investigated. This paper provides a summary of the work that has been performed to date and presents results describing the local and far-field changes in water levels and tidal currents due to tidal lagoons operating in the upper Bay of Fundy.
机译:Quandy湾是世界上一些最大的潮汐的所在地,并且长期以来一直被确定为世界上最重要的位置,以安装潮汐发电系统。本文涉及在米纳斯盆地的潮汐泻湖的发电,对缅因湾和缅因湾的流体动力学影响进行了评估。泻湖概念涉及暂时将海水暂时地存储在蓄水堤和通过传统的低头水电涡轮机逐渐释放海水来发电。潮汐Lagoons代表了一种对潮汐发电的相对新颖的方法,并且旨在实现高效率,同时避免与潮汐屏障相关的一些环境问题。基于Telemac系统的详细的二维(深度平均)有限元数值模型已经开发,校准了观察到的水平和速度,并应用于在缅因湾的整个湾和缅因湾的潮气动力学中进行模拟。对于没有泻湖的现有条件以及两种情景,在Minas盆地运营的潮汐泻湖。 12平方公里的海上泻湖,具有14个涡轮机,平均产生-124兆瓦,并进行了24 km2沿海泻湖,平均为240 mw产生-220 mw。本文提供了迄今为止执行的工作摘要,并提出了由于在古代的上湾运行的潮汐泻湖而介绍了由于潮汐荔枝而导致的局部和远场变化的结果。

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