Articles | Volume 45
https://doi.org/10.5194/adgeo-45-51-2018
https://doi.org/10.5194/adgeo-45-51-2018
27 Jul 2018
 | 27 Jul 2018

Numerical study of the Martelange mine to be used as underground reservoir for constructing an Underground Pumped Storage Hydropower plant

Estanislao Pujades, Philippe Orban, Pierre Archambeau, Sebastien Erpicum, and Alain Dassargues

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Cited articles

Academy of Science of South Africa: Science Business Society Dialogue Conference: Strengthening the Science Business Society Dialogue in the SADC Region, Johannesburg, South Africa, 28–30 November 2017, http://research.assaf.org.za/handle/20.500.11911/99?show=full, last access: 24 July 2018. 
Allen, R. D., Doherty, T. J., and Kannberg, L. D.: Underground pumped hydroelectric storage, NASA STI/Recon Technical Report N, 85, 1984. 
Alvarado, R., Niemann, A., and Wortberg, T.: Underground Pumped-Storage Hydroelectricity using existing Coal Mining Infrastructure, in: E-proceedings of the 36th IAHR World Congress, The Hague, the Netherlands, 28 June–3 July 2015, 2016. 
Barnes, F. S. and Levine, J. G. (Eds.): Large Energy Storage Systems Handbook, CRC Press, USA, 2011. 
Bear, J. and Cheng, A. H.-D.: Modeling Groundwater Flow and Contaminant Transport, Springer Science and Business Media, 2010. 
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Short summary
The main concern of UPSH using abandoned mines is the water exchanges between the underground reservoir and the surrounding medium, which are relevant in terms of environmental impact and the system efficiency. This work is based in real abandoned slate mine and investigates how the geometry of the mine affects the groundwater exchanges and their associated consequences.