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Spectral Decomposition of Regulatory Thresholds for Climate-Driven Fluctuations in Hydro- and Wind Power Availability

机译:水电和风电可用性中气候驱动波动的调节阈值的频谱分解

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摘要

Climate-driven fluctuations in the runoff and potential energy of surface water are generally large in comparison to the capacity of hydropower regulation, particularly when hydropower is used to balance the electricity production from covarying renewable energy sources such as wind power. To define the bounds of reservoir storage capacity, we introduce a dedicated reservoir volume that aggregates the storage capacity of several reservoirs to handle runoff from specific watersheds. We show how the storage bounds can be related to a spectrum of the climate-driven modes of variability in water availability and to the co-variation between water and wind availability. A regional case study of the entire hydropower system in Sweden indicates that the longest regulation period possible to consider spans from a few days of individual sub-watersheds up to several years, with an average limit of a couple of months. Watershed damping of the runoff substantially increases the longest considered regulation period and capacity. The high covariance found between the potential energy of the surface water and wind energy significantly reduces the longest considered regulation period when hydropower is used to balance the fluctuating wind power.
机译:与水力调节能力相比,气候驱动的径流和地表水势能波动通常较大,尤其是在使用水力发电来平衡风力发电等可再生能源发电量的情况下。为了定义水库蓄水能力的界限,我们引入了一个专用的水库容积,该容积汇总了几个水库的蓄水能力,以处理特定流域的径流。我们展示了存储界限如何与水驱动的可变性的气候驱动模式的频谱以及水和风的可用性之间的协变量相关。瑞典整个水电系统的区域案例研究表明,考虑单个子集水区的几天至长达数年(最长为数月)的可能的最长监管期。分水岭的径流阻尼大大增加了最长的调节周期和调节能力。当使用水力发电来平衡波动的风能时,地表水的势能与风能之间的高协方差极大地缩短了最长的调节周期。

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