Simulation analysis of enhanced fluidization leaching process and geothermal synergy in deep ground metal mines
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Published:2024
Issue:2 Part B
Volume:28
Page:1219-1227
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ISSN:0354-9836
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Container-title:Thermal Science
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language:en
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Short-container-title:Therm sci
Author:
Zhang Deqing1, Wang Ende1, Luan Jinpeng1, Wang Xue2
Affiliation:
1. Northeastern University School of Resources and Civil Engineering, Shenyang, China 2. Liaoning Geological And Mineral Survey Institute Co. Ltd., Shenyang, China
Abstract
Based on the mining of deep metal mineral resources and the current in-situ
leaching mining process of uranium ore, combined with the technological
characteristics of ?fluidized mining of metal ore? and ?deep geothermal
development?, an innovative concept of strengthening the fluidized leaching
process of deep metal ore - geothermal co mining is proposed, A numerical
simulation method was used to analyze the turbulent flow and heat transfer
characteristics of a new type of heat transfer enhancement element - a swirl
plate as a support between tubes. The renormalization two equation
turbulence model was used for numerical simulation, and the SIMPLEC
algorithm was used for pressure and velocity coupling, and the enhanced wall
treatment method was used for wall treatment. The periodic changes in the
cross-sectional flow field and turbulence intensity of the unit flow channel
were analyzed, as well as the synergistic relationship between the flow
field and temperature field on the cross-section. The corresponding
variation trends of the average Nusselt number and the average synergy angle
of the cross-section were compared. The experimental results show that the
270-4.25 cyclone sheet can more fully utilize the enhanced heat transfer of
the spin flow, and the overall average Nusselt number is higher than
180-2.0, which is consistent with the experimental results. That is, ?m is
low where high Nub and ?m is high where low Nub is low, indicating that the
changing trend of the two is fully consistent with the field synergy
principle. This paper systematically analyzes the basic theoretical
bottleneck, key technical problems and future development trend in the
process of geothermal joint mining of deep metal mine, and aims to provide
reference for the strengthening of geothermal joint mining and geothermal
joint mining of deep metal ore.
Publisher
National Library of Serbia
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