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Assessment of tidal current energy in the Minas Passage, Bay of Fundy

机译:芬迪湾米纳斯通道的潮流能评估

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The tidal power available for electricity generation from in-stream turbines placed in the Minas Passage of the Bay of Fundy is examined. A previously derived theory is adapted to model the effect of turbine drag on the flow through the Minas Passage and the tidal amplitude in the Minas Basin. The theoretical maximum power production over a tidal cycle is determined by the product of the amplitude of the forcing tide in the Bay of Fundy and the undisturbed volumetric flowrate through the Minas Passage. Although the extraction of the maximum power will reduce the flowrate through the Minas Passage and the tides in the Minas Basin by over 30 per cent, a significant portion of the maximum power can be extracted with little change in tidal amplitude as the initial power generation causes only an increase in the phase lag of the basin tides. Two-dimensional, finite-element, numerical simulations of the Bay of Fundy-Gulf of Maine system agree remarkably well with the theory. The simulations suggest that a maximum of 7 GW of power can be extracted by turbines. They also show that any power extraction in the Minas Passage pushes the Bay of Fundy-Gulf of Maine system closer to resonance with the forcing tides, resulting in increased tidal amplitudes throughout the Gulf of Maine. Although extracting the maximum power produces significant changes, 2.5 GW of power can be extracted with a maximum 5 per cent change in the tidal amplitude at any location. Finally, the simulations suggest that a single turbine fence across the Minas Passage can extract the same power as turbines throughout the passage but that partial turbine fences are less efficient. [PUBLICATION ABSTRACT]
机译:检查了位于芬迪湾Minas通道中的流轮机可用于发电的潮汐能。先前得出的理论适用于模拟涡轮阻力对通过Minas通道的流量和Minas盆地的潮汐幅度的影响。潮汐周期内理论上的最大发电量取决于芬迪湾中强迫潮汐的振幅与通过米纳斯河道的不受干扰的体积流量的乘积。尽管最大功率的提取将使通过Minas通道和Minas盆地潮汐的流量减少30%以上,但由于初始功率的产生,潮汐振幅几乎没有变化,但可以提取很大一部分最大功率。流域潮汐的相位滞后只会增加。缅因州芬迪湾海湾的二维有限元数值模拟与该理论非常吻合。仿真表明,涡轮机最多可提取7吉瓦的功率。他们还表明,米纳斯河通道中的任何功率提取都将缅因州芬迪湾海湾系统推向更接近与强迫潮汐的共振,从而导致整个缅因湾的潮汐振幅增大。尽管提取最大功率会产生显着变化,但可以提取2.5 GW的功率,任何位置的潮汐幅度最大变化5%。最后,模拟结果表明,横跨米纳斯通道的单个涡轮机围栏可以提取与整个通道中的涡轮机相同的功率,但部分涡轮机围栏效率较低。 [出版物摘要]

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