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Mines as lower reservoir of an UPSH (Underground Pumped Storage Hydroelectricity): groundwater impacts and feasibility

机译:矿山作为UPSH(地下抽水蓄能水电)的下部水库:地下水的影响和可行性

摘要

The energy framework is currently characterized by an expanding use of renewable sources. However, their inter- mittence could not afford a stable production according to the energy demand. Pumped Storage Hydroelectricity (PSH) is an efficient possibility to store and release electricity according to the demand needs. Because of the topographic and environmental constraints of classical PSH, new potential suitable sites are rare in countries whose topography is weak or with a high population density. Nevertheless, an innovative alternative is to construct Underground Pumped Storage Hydroelectricity (UPSH) plants by using old underground mine works as lower reservoir. In that configuration, large amount of pumped or injected water in the underground cavities would impact the groundwater system. A representative UPSH facility is used to numerically determine the interactions with surrounding aquifers Different scenarios with varying parameters (hydrogeological and lower reservoir char- acteristics, boundaries conditions and pumping/injection time-sequence) are computed. Analysis of the computed piezometric heads around the reservoir allows assessing the magnitude of aquifer response and the required time to achieve a mean pseudo-steady state under cyclic solicitations. The efficiency of the plant is also evaluated taking the leakage into the cavity into account. Combining these two outcomes, some criterions are identified to assess the feasibility of this type of projects within potential old mine sites from a hydrogeological point of view.
机译:当前,能源框架的特点是可再生资源的使用不断扩大。但是,根据能源需求,它们的间歇性无法提供稳定的生产。抽水蓄能水电(PSH)是根据需求存储和释放电力的有效方法。由于经典PSH的地形和环境限制,在地形薄弱或人口密度高的国家中,很少有新的潜在合适地点。尽管如此,一种创新的替代方法是通过使用旧的地下矿山作为下层水库来建设地下抽水蓄能水电站(UPSH)。在这种配置下,地下空腔中的大量抽水或注入水会影响地下水系统。有代表性的UPSH设施用于数值确定与周围含水层的相互作用。计算出具有不同参数(水文地质和较低储层特征,边界条件和抽水/注入时间顺序)的不同情景。对储层周围计算出的测压压头的分析允许评估含水层响应的大小以及在周期性拉力下达到平均拟稳态所需的时间。还应考虑泄漏到型腔中的情况来评估设备的效率。结合这两个结果,确定了一些标准,以从水文地质的角度评估此类项目在潜在的老矿场内的可行性。

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