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Effects of Lake–Reservoir Pumped-Storage Operations on Temperature and Water Quality

机译:Lake-Chabloir泵送储存操作对温度和水质的影响

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摘要

Pumped-storage (PS) hydropower plants are expected to make an important contribution to energy storage in the next decades with growing market shares of new renewable electricity. PS operations affect the water quality of the connected water bodies by exchanging water between them but also by deep water withdrawal from the upper water body. Here, we assess the importance of these two processes in the context of recommissioning a PS hydropower plant by simulating different scenarios with the numerical hydrodynamic and water quality model CE-QUAL-W2. For extended PS operations, the results show significant impacts of the water exchange between the two water bodies on the seasonal dynamics of temperatures, stratification, nutrients, and ice cover, especially in the smaller upper reservoir. Deep water withdrawal was shown to strongly decrease the strength of summer stratification in the upper reservoir, shortening its duration by ~1.5 months, consequently improving oxygen availability, and reducing the accumulation of nutrients in the hypolimnion. These findings highlight the importance of assessing the effects of different options for water withdrawal depths in the design of PS hydropower plants, as well as the relevance of defining a reference state when a PS facility is to be recommissioned.
机译:泵送储存(PS)水电站预计将在未来几十年中对储能的重要贡献,具有日益增长的可再生电力的市场份额。 PS操作通过在上水体之间交换水,影响所连接的水体的水质。在这里,我们通过模拟与数值流体动力学和水质模型CE-Qual-W2的不同情景来评估这两个过程的重要性。对于延长的PS操作,结果显示了两种水体之间的水交换对温度,分层,营养素和冰盖的季节性动态的显着影响,特别是在较小的上层储层中。显示了深度排水,强烈降低了上层储存器中夏季分层的强度,缩短其持续时间〜1.5个月,从而提高氧气可用性,降低了低聚营养物的积累。这些发现突出了评估PS水电站设计中不同选项对不同选择的影响的重要性,以及在要重新推荐PS设施时定义参考状态的相关性。

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