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A Numerical Approach to Evaluate the Geothermal Potential of a Flooded Open-Pit Mine: Example from the Carey Canadian Mine (Canada).

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Lacombe, Samuel; Comeau, Félix-Antoine ORCID logoORCID: https://orcid.org/0000-0003-3983-7943 et Raymond, Jasmin ORCID logoORCID: https://orcid.org/0000-0002-7486-9185 (2025). A Numerical Approach to Evaluate the Geothermal Potential of a Flooded Open-Pit Mine: Example from the Carey Canadian Mine (Canada). Energies , vol. 18 , nº 11. p. 2714. DOI: 10.3390/en18112714.

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Résumé

Abandoned mines represent an innovative and under-exploited resource to meet current energy challenges, particularly because of their geothermal potential. Flooded open-pits, such as those located in the Thetford Mines region (Eastern Canada), provide large, thermally stable water reservoirs, ideal for the use of geothermal cooling systems. Thermal short-circuiting that can impact the system performance affected by both free and forced convective heat transfer is hard to evaluate in these large water reservoirs subject to various heat sink and sources. Thus, this study’s objective was to evaluate the impact of natural heat transfer mechanisms on the performance of an open-loop geothermal system that could be installed in a flooded open-pit mine. Energy needs of an industrial plant using water from the flooded Carey Canadian mine were considered to develop a 3D numerical finite element model to evaluate the thermal impact associated with the operation of the system considering free and forced convection in the flooded open-pit, the natural flow of water into the pit, climatic variations at the surface and the terrestrial heat flux. The results indicate that the configuration of the proposed system meets the plant cooling needs over a period of 50 years and can provide a cooling power of approximately 2.3 MW. The simulations also demonstrated the importance of understanding the hydrological and hydrogeological systems impacting the performance of the geothermal operations expected in a flooded open-pit mine.

Type de document: Article
Mots-clés libres: thermal energy; finite element; simulation; modeling; cooling; open-loop; thermal short-circuiting; surface water; groundwater; mine water
Centre: Centre Eau Terre Environnement
Date de dépôt: 18 juill. 2025 15:10
Dernière modification: 18 juill. 2025 15:10
URI: https://espace.inrs.ca/id/eprint/16554

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