Ishmael Yevugah, Xiang-Zhao Kong, Antoine Jacquey, Christopher P. Green, Hartmut Holländer et Pooneh Maghoul
Article de revue (2025)
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Libre accès au plein texte de ce document Version officielle de l'éditeur Conditions d'utilisation: Creative Commons: Attribution (CC BY) Télécharger (2MB) |
Abstract
In domal and bedded rock salt geothermal reservoirs, geochemical dissolution of the in-situ rock salt formation can alter fluid transport properties, thus impacting fluid flow. Coupled Hydro-mechanical–chemical (HMC) modeling is a useful tool to evaluate fluid transport through rock salt geothermal systems and to assess their economic potential. Existing continuum-based numerical simulation of fluid transport through rock salt relies on the polyhedral orientation of rock salt crystal boundaries as potential fluid pathways, employing a deformation-dependent permeability model to depict pressure-driven fluid flow through rock salt. However, this numerical approach is exclusively HM-coupled and overlooks the influence of halite dissolution/precipitation on the permeability model. This study extends the deformation-dependent permeability model to account for halite dissolution by adopting a reverse mineral growth approach. Using this extended (HMC-coupled) model, we capture the relevance of geochemical reactions on the response of rock salt formations undergoing pressure-driven fluid percolation. The resulting simulations predict a lower fluid pressure than the HM-coupled scenario, highlighting the impact of halite dissolution on fluid flow through rock salt.
Mots clés
| Département: | Département des génies civil, géologique et des mines |
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| Organismes subventionnaires: | NSERC / CRSNG |
| Numéro de subvention: | RGPIN-2022-04502 |
| URL de PolyPublie: | https://publications.polymtl.ca/61950/ |
| Titre de la revue: | International Journal of Rock Mechanics and Mining Sciences (vol. 186) |
| Maison d'édition: | Elsevier |
| DOI: | 10.1016/j.ijrmms.2024.105985 |
| URL officielle: | https://doi.org/10.1016/j.ijrmms.2024.105985 |
| Date du dépôt: | 16 janv. 2025 14:22 |
| Dernière modification: | 22 oct. 2025 14:56 |
| Citer en APA 7: | Yevugah, I., Kong, X.-Z., Jacquey, A., Green, C. P., Holländer, H., & Maghoul, P. (2025). Fully coupled hydro-mechanical–chemical continuum modeling of fluid percolation through rock salt. International Journal of Rock Mechanics and Mining Sciences, 186, 105985 (15 pages). https://doi.org/10.1016/j.ijrmms.2024.105985 |
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