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      Experimental Investigation of the Effects of the Gangue Particle Size on the Evolution Rules of Key Seepage Parameters

      1 , 1 , 2 , 3 , 1 , 2 , 1 , 2
      Geofluids
      Hindawi Limited

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          Abstract

          In order to deal with solid wastes and protect the fragile ecological environment on the ground, using gangues as the filling materials in the underground goaf can not only achieve favorable waste disposal but also alleviate surface subsidence and protect surface buildings and the ecological environment, with great practical significance and application prospects. During the water seepage process, the evolution rules of inner seepage channels in the bulk filling materials are the theoretical foundation for the realization of water-preserved mining. In order to gain clear knowledge of the seepage characteristics of the bulk filling gangues with different sizes, the evolution rules of some seepage parameters mainly including the displacement, the porosity, and the permeability of gangues and hydraulic pressure were analyzed via COMSOL numerical simulation. The evolution rules of the seepage characteristics of the bulk filling materials with different sizes were revealed by combining the present experimental and numerical results. Moreover, the present seepage experiment was proved to be reliable by comparing with numerical simulation results. This work can provide theoretical foundation for investigating the evolution characteristics of inner seepage paths in the bulk filling materials and selecting appropriate bulk filling materials under different stress and seepage environments.

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          Comprehensive utilization and environmental risks of coal gangue: A review

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            The challenges of reusing mining and mineral-processing wastes.

            Mining and mineral-processing wastes are one of the world's largest chronic waste concerns. Their reuse should be included in future sustainable development plans, but the potential impacts on a number of environmental processes are highly variable and must be thoroughly assessed. The chemical composition and geotechnical properties of the source rock determine which uses are most appropriate and whether reuse is economically feasible. If properly evaluated, mining waste can be reused to reextract minerals, provide additional fuel for power plants, supply construction materials, and repair surface and subsurface land structures altered by mining activities themselves.
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              Effects of seepage-induced erosion on nonlinear hydraulic properties of broken red sandstones

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                Author and article information

                Contributors
                Journal
                Geofluids
                Geofluids
                Hindawi Limited
                1468-8123
                1468-8115
                November 26 2021
                November 26 2021
                : 2021
                : 1-19
                Affiliations
                [1 ]School of Mines, China University of Mining and Technology, Xuzhou, 221116 Jiangsu, China
                [2 ]State Key Laboratory of Coal Resources and Safe Mining, Xuzhou, 221116 Jiangsu, China
                [3 ]Yanzhou Coal Mining Co. Ltd., Jining 272100, China
                Article
                10.1155/2021/4410254
                482f0b4b-ad36-4a0d-9182-23568ffbcce6
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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