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Low-head hydropower as a reserve power source: A case study of Northeastern Illinois

机译:低头水电作为储备电源:伊利诺伊州东北部的案例研究

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Wind power generation faces intermittency challenges, typically requiring reserve power sources to maintain reliability of the electricity grid. This study proposes that hydropower turbines installed at low head dams can provide reserve power generation to support wind power, avoiding the externalities associated with fossil-fuel plants and conventional hydropower. Low-head dams in the United States are used for flood control, securing municipal water supplies, and providing reservoir pools for recreation. As a case study, we estimated hydropower potential at 12 low-head dams along a 150-km reach of the Fox River (Northeastern Illinois, USA) using a calibrated river flow model. We analyzed the model's output to assess power generation capacity and reliability as a source of baseload power and as a component in a coupled wind-hydropower system. The modeled system performed reliably over a five-year time period despite significant long-term fluctuations in streamflow, offsetting the short-term variability of wind power. However, combining the low-head hydropower system with wind power limited the output of the system to the minimum generated by the low-head hydropower. The low-head hydropower system's small capacity and high break-even price suggest that it is better suited for local applications rather than grid-scale operations, especially if permitting regulations are considered.(c) 2021 Elsevier Ltd. All rights reserved.
机译:风力发电面临间歇性挑战,通常需要储备电源以维持电网的可靠性。本研究提出安装在低头坝上的水电涡轮机可以提供储备发电以支持风力,避免与化石燃料设备相关的外部性和传统的水电。美国的低头坝用于防洪,保护市政供水,并为娱乐提供水库池。作为一个案例研究,我们使用校准的河流模型,我们沿着福克斯河(美国东北伊利诺伊州伊利诺伊州)的150公里到达12个低头坝的水电​​潜力。我们分析了该模型的输出,以评估发电能力和可靠性作为基准电源的源,作为耦合风力水电系统中的组件。尽管流出中具有显着的长期波动,所以建模系统在五年的时间段内进行了5年的时间段,抵消了风电的短期变化。然而,将低头水电系统与风力电量限制在低头水电站产生的最小值上限制了系统的输出。低头水电系统的小容量和高休息价格表明,它更适合当地应用而不是网格规模的操作,特别是如果考虑了允许规定。(c)2021 Elsevier Ltd.保留所有权利。

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