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      Mechanism by Which Backfill Body Reduces Amount of Energy Released in Deep Coal Mining

      1 , 2 , 1 , 2 , 1 , 2 , 1 , 2 , 3
      Shock and Vibration
      Hindawi Limited

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          Abstract

          Deep coal mining is unavoidable, and the complex mining environments and the increasing dangers associated with ultrahigh energy accumulation and release from mining disturbances renders it extremely difficult to maintain a safe and stable stope. Solid backfilling technology directly uses coal gangue and other solid wastes in the mining area to fill the gob after mining. Support from the backfill body can inhibit the movement of overlying rock strata and significantly alleviate the influence of mining. In this study, the correlations between the deformation of gangue filling material and the characteristics of energy dissipation were examined under lateral uniaxial compression. The strain energy density distributions of backfilling and caving mining methods were simulated using numerical modeling. The results showed that the strain energy density distribution of backfilling mining was less concentrated, and its peak value was lower than that of caving mining by 51.0%, indicating that backfilling could effectively reduce the amount of energy released from mining rocks. The dense backfill mining area of the No. 9301 face in Tangkou Coal Mine was used as a case study. Measures for controlling the backfill body compaction for reducing the amount of energy released from mining rocks were proposed. These measures include optimizing the support structure and filling material formula, controlling the preroof subsidence, and ensuring an appropriate number of tamping strokes. The monitoring results of the backfilling quality, surface subsidence, and microseismic energy of No. 9301 working face in Tangkou Coal Mine showed that when the backfill body filling ratio control value was 82.28%, the total number of microseisms and the amount of energy released from the mining working face were significantly lower compared to those of the caving method. This study demonstrated that the backfill body could effectively reduce the amount of energy released from mining rocks, thereby realizing management of mine earthquake and sustainable deep coal mining.

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          Microseismic multi-parameter characteristics of rockburst hazard induced by hard roof fall and high stress concentration

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            Microseismic frequency-spectrum evolutionary rule of rockburst triggered by roof fall

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              Application of solid backfilling to reduce hard-roof caving and longwall coal face burst potential

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                Author and article information

                Journal
                Shock and Vibration
                Shock and Vibration
                Hindawi Limited
                1070-9622
                1875-9203
                January 06 2019
                January 06 2019
                : 2019
                : 1-14
                Affiliations
                [1 ]State Key Laboratory of Coal Resources and Safe Mining, Xuzhou 221116, China
                [2 ]School of Mines, China University of Mining and Technology, Xuzhou 221116, China
                [3 ]Shandong Tang Kou Coal Industry Co., Ltd., Jining 272055, China
                Article
                10.1155/2019/8253269
                d7ff6374-a387-4363-9004-f216318c1663
                © 2019

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

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