Pierre L’Hermite , Anne Jost , Valérie Plagnes , Yifan Wang , Isabelle Blanc-Potard , Damien Regnier , Michael Descostes
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The model integrates a simple representation of material heterogeneity, based on a sieve analysis, and the vegetation transpiration due to the presence of bushes and coniferous trees on the surface of the pile. Climate change may affect the recharge and discharge over the next 100 years with median annual discharge varying between +4.4 % and −12 % depending on greenhouse gas emission scenarios.</div></div><div><h3>New hydrological insights of the region</h3><div><em>:</em> The calibrated model correctly simulates water discharge at the pile outlet and allows its simulation under climate change. Discharge simulations show that effluents generated during events below the 200-year return period rainfall events could be stored in a buffer basin to avoid any environmental contamination. These simulations are essential to ensure sustainable future water management at this former mining site.</div></div>","PeriodicalId":48620,"journal":{"name":"Journal of Hydrology-Regional Studies","volume":"56 ","pages":"Article 101984"},"PeriodicalIF":4.7000,"publicationDate":"2024-10-09","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Modeling present and future flows in a tailings pile at the former Le Cellier uranium mine (France)\",\"authors\":\"Pierre L’Hermite , Anne Jost , Valérie Plagnes , Yifan Wang , Isabelle Blanc-Potard , Damien Regnier , Michael Descostes\",\"doi\":\"10.1016/j.ejrh.2024.101984\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><h3>Study region</h3><div>The former uranium mine near Le Cellier, France represents an opportunity to investigate unsaturated flow in real conditions through a tailings pile resulting from heap leaching. Sustainable water management requires the understanding of its flows, to limit chemical reactions and avoid the migration of contaminants into the environment.</div></div><div><h3>Study focus</h3><div>Daily monitoring of drain discharge and monthly monitoring of physicochemical parameters at the pile outlet provide reliable information on how fast the pile reacts to precipitation. A two-dimensional dual-porosity model was developed with HYDRUS 2D at a daily time step. The model integrates a simple representation of material heterogeneity, based on a sieve analysis, and the vegetation transpiration due to the presence of bushes and coniferous trees on the surface of the pile. Climate change may affect the recharge and discharge over the next 100 years with median annual discharge varying between +4.4 % and −12 % depending on greenhouse gas emission scenarios.</div></div><div><h3>New hydrological insights of the region</h3><div><em>:</em> The calibrated model correctly simulates water discharge at the pile outlet and allows its simulation under climate change. Discharge simulations show that effluents generated during events below the 200-year return period rainfall events could be stored in a buffer basin to avoid any environmental contamination. These simulations are essential to ensure sustainable future water management at this former mining site.</div></div>\",\"PeriodicalId\":48620,\"journal\":{\"name\":\"Journal of Hydrology-Regional Studies\",\"volume\":\"56 \",\"pages\":\"Article 101984\"},\"PeriodicalIF\":4.7000,\"publicationDate\":\"2024-10-09\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Journal of Hydrology-Regional Studies\",\"FirstCategoryId\":\"89\",\"ListUrlMain\":\"https://www.sciencedirect.com/science/article/pii/S2214581824003331\",\"RegionNum\":2,\"RegionCategory\":\"地球科学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q1\",\"JCRName\":\"WATER RESOURCES\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Hydrology-Regional Studies","FirstCategoryId":"89","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S2214581824003331","RegionNum":2,"RegionCategory":"地球科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"WATER RESOURCES","Score":null,"Total":0}
Modeling present and future flows in a tailings pile at the former Le Cellier uranium mine (France)
Study region
The former uranium mine near Le Cellier, France represents an opportunity to investigate unsaturated flow in real conditions through a tailings pile resulting from heap leaching. Sustainable water management requires the understanding of its flows, to limit chemical reactions and avoid the migration of contaminants into the environment.
Study focus
Daily monitoring of drain discharge and monthly monitoring of physicochemical parameters at the pile outlet provide reliable information on how fast the pile reacts to precipitation. A two-dimensional dual-porosity model was developed with HYDRUS 2D at a daily time step. The model integrates a simple representation of material heterogeneity, based on a sieve analysis, and the vegetation transpiration due to the presence of bushes and coniferous trees on the surface of the pile. Climate change may affect the recharge and discharge over the next 100 years with median annual discharge varying between +4.4 % and −12 % depending on greenhouse gas emission scenarios.
New hydrological insights of the region
: The calibrated model correctly simulates water discharge at the pile outlet and allows its simulation under climate change. Discharge simulations show that effluents generated during events below the 200-year return period rainfall events could be stored in a buffer basin to avoid any environmental contamination. These simulations are essential to ensure sustainable future water management at this former mining site.
期刊介绍:
Journal of Hydrology: Regional Studies publishes original research papers enhancing the science of hydrology and aiming at region-specific problems, past and future conditions, analysis, review and solutions. The journal particularly welcomes research papers that deliver new insights into region-specific hydrological processes and responses to changing conditions, as well as contributions that incorporate interdisciplinarity and translational science.