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Underground pumped storage hydroelectricity using abandoned works (deep mines or open pits) and the impact on groundwater flow

机译:使用废弃工程(深矿或露天矿)的地下抽水蓄能水电及其对地下水流量的影响

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摘要

Underground pumped storage hydroelectricity (UPSH) plants using open-pit or deep mines can be used in flat regions to store the excess of electricity produced during low-demand energy periods. It is essential to consider the interaction between UPSH plants and the surrounding geological media. There has been little work on the assessment of associated groundwater flow impacts. The impacts on groundwater flow are determined numerically using a simplified numerical model which is assumed to be representative of open-pit and deep mines. The main impact consists of oscillation of the piezometric head, and its magnitude depends on the characteristics of the aquifer/geological medium, the mine and the pumping and injection intervals. If an average piezometric head is considered, it drops at early times after the start of the UPSH plant activity and then recovers progressively. The most favorable hydrogeological conditions to minimize impacts are evaluated by comparing several scenarios. The impact magnitude will be lower in geological media with low hydraulic diffusivity; however, the parameter that plays the more important role is the volume of water stored in the mine. Its variation modifies considerably the groundwater flow impacts. Finally, the problem is studied analytically and some solutions are proposed to approximate the impacts, allowing a quick screening of favorable locations for future UPSH plants.
机译:使用露天或深矿的地下抽水蓄能水电站(UPSH)可以在平坦区域使用,以存储在低需求能源期间产生的多余电力。必须考虑UPSH工厂与周围地质介质之间的相互作用。评估相关地下水流量影响的工作很少。使用简化的数值模型以数值方式确定对地下水流量的影响,该模型被认为是露天和深矿的代表。主要影响包括测压头的振荡,其大小取决于含水层/地质介质,矿山以及抽水和注入间隔的特性。如果考虑平均测压扬程,则它在UPSH工厂活动开始后的早期下降,然后逐渐恢复。通过比较几种方案来评估使影响最小的最有利水文地质条件。在水力扩散率低的地质介质中,冲击强度较小。但是,起更重要作用的参数是矿井中存储的水量。它的变化极大地改变了地下水流量的影响。最后,对该问题进行了分析研究,并提出了一些解决方案以近似影响,从而可以快速筛选出将来的UPSH工厂的有利位置。

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