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Underground pumped storage hydropower plants using open pit mines: How do groundwater exchanges influence the efficiency?

机译:使用露天矿的地下抽水蓄能电站:地下水交换如何影响效率?

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摘要

Underground Pumped Storage Hydropower (UPSH) is a potential alternative to manage electricity production in flat regions. UPSH plants will interact with the surrounding porous medium through exchanges of groundwater. These exchanges may impact the surrounding aquifers, but they may also influence the efficiency of the pumps and turbines because affecting the head difference between the reservoirs. Despite the relevance for an accurate efficiency assessment, the influence of the groundwater exchanges has not been previously addressed.A numerical study of a synthetic case is presented to highlight the importance of considering the groundwater exchanges with the surrounding porous medium. The general methodology is designed in order to be further applied in the decision making of future UPSH plants introducing each case specific complexity. The underground reservoir of a hypothetical UPSH plant, which consists in an open pit mine, is considered and modelled together with the surrounding porous medium. Several scenarios with different characteristics are simulated and their results are compared in terms of (1) head difference between the upper and lower reservoirs and (2) efficiency by considering the theoretical performance curves of a pump and a turbine. The results show that the efficiency is improved when the groundwater exchanges increase. Thus, the highest efficiencies will be reached when (1) the underground reservoir is located in a transmissive porous medium and (2) the walls of the open pit mine do not constrain the groundwater exchanges (they are not waterproofed). However, a compromise must be found because the characteristics that increase the efficiency also increase the environmental impacts. Meaningful and reliable results are computed in relation to the characteristics of the intermittent and expected stops of UPSH plants. The frequency of pumping and injection must be considered to properly configure the pumps and turbines of future UPSH plants. If not, pumps and turbines could operate far from their best efficiency conditions.
机译:地下抽水蓄能电站(UPSH)是在平坦地区管理电力生产的潜在替代方案。 UPSH工厂将通过交换地下水与周围的多孔介质相互作用。这些交换可能会影响周围的含水层,但也可能会影响泵和涡轮机的效率,因为会影响储层之间的水头差。尽管有必要进行准确的效率评估,但以前尚未解决地下水交换的影响。进行了一个合成案例的数值研究,以强调考虑与周围多孔介质进行地下水交换的重要性。设计通用方法是为了将其进一步应用到未来UPSH工厂的决策中,从而引入每种情况的特定复杂性。假设的UPSH装置的地下储层由露天矿组成,并与周围的多孔介质一起进行建模。模拟了几种具有不同特性的场景,并根据(1)上下水库之间的扬程差和(2)通过考虑泵和涡轮机的理论性能曲线比较了它们的结果。结果表明,增加地下水交换量可以提高效率。因此,当(1)地下储层位于可渗透的多孔介质中并且(2)露天矿的壁不限制地下水交换(它们不防水)时,将达到最高效率。但是,必须找到一个折衷方案,因为提高效率的特性也会增加对环境的影响。根据UPSH设备的间歇性和预期停止的特性,可以计算出有意义且可靠的结果。必须考虑泵送和注入的频率,以正确配置未来UPSH工厂的泵和涡轮机。否则,泵和涡轮机可能无法达到最佳效率状态。

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