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Hydrodynamics control for the well field of in-situ leaching of uranium

Nuclear Engineering and Technology, ISSN: 1738-5733, Vol: 56, Issue: 10, Page: 4176-4183
2024
  • 2
    Citations
  • 0
    Usage
  • 3
    Captures
  • 1
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

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  • Citations
    2
  • Captures
    3
  • Mentions
    1
    • News Mentions
      1
      • News
        1

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Researchers from University of South China Publish New Studies and Findings in the Area of Nuclear Engineering (Hydrodynamics control for the well field of in-situ leaching of uranium)

2024 OCT 09 (NewsRx) -- By a News Reporter-Staff News Editor at Engineering Daily News -- Investigators publish new report on nuclear engineering. According to

Article Description

In this study, the groundwater hydrodynamics of two adjacent well sites were simulated under different pumping-injection ratios. The aim is to select an optimal pumping-injection ratio that can ensure the groundwater of the two well sites don't affect each other. In addition, the sulfur isotope composition of groundwater in the two well sites were analyzed to verify the simulated results. The results show that the flow velocity at different points outside the edge drilling hole decreases exponentially with the distance between the point and the edge hole. The streamline gradually extends outside of the borehole with the increase of leaching time. It is found that the optimal pumping-injection ratio is 1.003. In this case, the maximum distance between the moving front and the injection borehole is 28.44 m after leaching for 5 years. This indicates that the groundwater flow fields of the two well sites are well controlled. The significant difference in sulfur isotopes between the two well-sites further proves that the SO 4 2− in the acid mining zone does not affect the groundwater in the zone leached by CO 2 +O 2.

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