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Published in: Geotechnical and Geological Engineering 3/2020

01-01-2020 | Original Paper

Application of Roof-Cutting and Pressure-Release Entry Retaining in Inclined Coal Seams: A Case Study

Authors: Enze Zhen, Yubing Gao

Published in: Geotechnical and Geological Engineering | Issue 3/2020

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Abstract

The technology of gob-side entry retaining as an important method to realize the sustainable development of coal resource has been widely applied in China’s coal industry. However, when used in inclined thick coal seams, some disadvantages, such as complex strata pressure and gangue downslide, may cause serious entry accidents. To solve this issue, this study adopted a novel roof-cutting and pressure-release entry retaining (RPER) technology in inclined thick coal seams. First, the principle of RPER and the stability mechanism of gob-side entry surrounding rock were analyzed. Subsequently, the key technologies of the novel method including a new constant resistance anchor cable and a new type of directional cumulative blasting technique were proposed to improve the stress environment of retained entry, and an entry-side support system that guaranteed the effect of entry are described in detail. Finally, an industrial test of RPER in inclined thick coal seam was performed. Field monitoring data show that the entry retained by new method RPER was in a stable state, and the section of the retained entry after can meet the production needs of next panel. This work provides a safe and efficient nonpillar mining method in inclined thick coal seams, and it has significant significance for guiding other mines to carry out nonpillar mining in inclined thick seam.

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Literature
go back to reference Gao YB, Yang J, He MC, Ma XG (2018) Experimental study of caving and distribution of gangues influenced by roof fracturing in pillarless mining with gob-side entry retaining. J China Univ Min Technol 47:21–30 Gao YB, Yang J, He MC, Ma XG (2018) Experimental study of caving and distribution of gangues influenced by roof fracturing in pillarless mining with gob-side entry retaining. J China Univ Min Technol 47:21–30
go back to reference Gao YB, Wang Y, Yang J, Zhang X, He M (2019) Meso- and macroeffects of roof split blasting on the stability of gateroad surroundings in an innovative nonpillar mining method. Tunn Undergr Space Technol 90:99–118CrossRef Gao YB, Wang Y, Yang J, Zhang X, He M (2019) Meso- and macroeffects of roof split blasting on the stability of gateroad surroundings in an innovative nonpillar mining method. Tunn Undergr Space Technol 90:99–118CrossRef
go back to reference Han CL, Zhang N, Li GC, Li BY, Wu H (2013) Stability analysis for compound bearing structure in large mining height condition of gob-side entry retaining. Chin J Geotech Eng 2013(35):969–976 Han CL, Zhang N, Li GC, Li BY, Wu H (2013) Stability analysis for compound bearing structure in large mining height condition of gob-side entry retaining. Chin J Geotech Eng 2013(35):969–976
go back to reference He MC, Gong WL, Wang J, Qi P, Tao ZG, Du S, Peng YY (2014) Development of a novel energy–absorbing bolt with extraordinarily large elongation and constant resistance. Int J Rock Mech Min Sci 67:29–42CrossRef He MC, Gong WL, Wang J, Qi P, Tao ZG, Du S, Peng YY (2014) Development of a novel energy–absorbing bolt with extraordinarily large elongation and constant resistance. Int J Rock Mech Min Sci 67:29–42CrossRef
go back to reference He MC, Zhu GL, Guo ZB (2015) Longwall mining “cutting cantilever beam theory” and 110 mining method in China—the third mining science innovation. J Rock Mech Geotech Eng 7:483–492CrossRef He MC, Zhu GL, Guo ZB (2015) Longwall mining “cutting cantilever beam theory” and 110 mining method in China—the third mining science innovation. J Rock Mech Geotech Eng 7:483–492CrossRef
go back to reference He MC, Gao YB, Yang J, Gong WL (2017) An innovative approach for gob-side entry retaining in thick coal seam longwall mining. Energies 10:1785CrossRef He MC, Gao YB, Yang J, Gong WL (2017) An innovative approach for gob-side entry retaining in thick coal seam longwall mining. Energies 10:1785CrossRef
go back to reference Hou CJ, Ma NJ (1989) Stress in in-seam roadway sides and limit equilibrium zone. J China Coal Soc 4:21–29 Hou CJ, Ma NJ (1989) Stress in in-seam roadway sides and limit equilibrium zone. J China Coal Soc 4:21–29
go back to reference Hua XZ, Ma JF, Xu TJ (2005) Study on controlling mechanism of surrounding rocks of gob-side entry with combination of roadside reinforced cable supporting and roadway bolt supporting and its application. Chin J Rock Mechan Eng 24:2107–2112 Hua XZ, Ma JF, Xu TJ (2005) Study on controlling mechanism of surrounding rocks of gob-side entry with combination of roadside reinforced cable supporting and roadway bolt supporting and its application. Chin J Rock Mechan Eng 24:2107–2112
go back to reference Lu SL (1981) Analysis of the rock behavior and the stress in surrounding rook of the roadway in pillarless mining. J China Coal Soc 18:29–37 Lu SL (1981) Analysis of the rock behavior and the stress in surrounding rook of the roadway in pillarless mining. J China Coal Soc 18:29–37
go back to reference Luan HJ, Jiang YJ, Lin HL, Wang YH (2017) A new thin seam backfill mining technology and its application. Energies 10:2023CrossRef Luan HJ, Jiang YJ, Lin HL, Wang YH (2017) A new thin seam backfill mining technology and its application. Energies 10:2023CrossRef
go back to reference Ma ZM, Guo ZB, Liu XY, Wang HH (2017) Study on bulking rule and mechanical characteristics of fallen gangue in roof-cutting entry retaining. Coal Eng 49:94–98 Ma ZM, Guo ZB, Liu XY, Wang HH (2017) Study on bulking rule and mechanical characteristics of fallen gangue in roof-cutting entry retaining. Coal Eng 49:94–98
go back to reference Qian MG, Miao XX (1995) The analysis on the structural form and stability of overlying strata in longwall mining. Chin J Rock Mech Eng 14:97–106 Qian MG, Miao XX (1995) The analysis on the structural form and stability of overlying strata in longwall mining. Chin J Rock Mech Eng 14:97–106
go back to reference Qian MG, Xu JL, Miao XX (2003) Green technique in coalmining. J China Univ Min Technol 32:343–347 Qian MG, Xu JL, Miao XX (2003) Green technique in coalmining. J China Univ Min Technol 32:343–347
go back to reference Tan YL (2008) Ground pressure and strata control. China Coal Industry Publishing House Tan YL (2008) Ground pressure and strata control. China Coal Industry Publishing House
go back to reference Tan YL, Yu FH, Ning JG (2015) Design and construction of entry retaining wall along a gob side under hard roof stratum. Int J Rock Mech Min Sci 77(Supplement C):115–121CrossRef Tan YL, Yu FH, Ning JG (2015) Design and construction of entry retaining wall along a gob side under hard roof stratum. Int J Rock Mech Min Sci 77(Supplement C):115–121CrossRef
go back to reference Wang J, Ning J, Jiang L, Jiang JQ, Bu T (2018a) Structural characteristics of strata overlying of a fully mechanized longwall face: a case study. J S Afr Inst Min Metall 118:1195–1204 Wang J, Ning J, Jiang L, Jiang JQ, Bu T (2018a) Structural characteristics of strata overlying of a fully mechanized longwall face: a case study. J S Afr Inst Min Metall 118:1195–1204
go back to reference Wang Q, He MC, Yang J, Gao HK, Jiang B, Yu HC (2018b) Study of a no-pillar mining technique with automatically formed gob-side entry retaining for longwall mining in coal mines. Int J Rock Mech Min Sci 110:1–8CrossRef Wang Q, He MC, Yang J, Gao HK, Jiang B, Yu HC (2018b) Study of a no-pillar mining technique with automatically formed gob-side entry retaining for longwall mining in coal mines. Int J Rock Mech Min Sci 110:1–8CrossRef
go back to reference Yang DW, Ma ZG (2017) Optimization study on roof break direction of gob-side entry retaining by roof break and filling in thick-layer soft rock layer. Geomech Eng 13:195–215 Yang DW, Ma ZG (2017) Optimization study on roof break direction of gob-side entry retaining by roof break and filling in thick-layer soft rock layer. Geomech Eng 13:195–215
go back to reference Yuan L (2009) Theory and practice of integrated pillarless coal production and methane extraction in multi-seams of low permeability. Eng Sci 11:72–80 Yuan L (2009) Theory and practice of integrated pillarless coal production and methane extraction in multi-seams of low permeability. Eng Sci 11:72–80
go back to reference Zhang DS, Ma LQ, Feng GM, Miao XX (2005) The technique of gob-side entry retaining with entry-in packing on its original position in fully-mechanized coalface with top-coal caving. Chin J Rock Mech Eng 24:1164–1168 Zhang DS, Ma LQ, Feng GM, Miao XX (2005) The technique of gob-side entry retaining with entry-in packing on its original position in fully-mechanized coalface with top-coal caving. Chin J Rock Mech Eng 24:1164–1168
go back to reference Zhang GF, He MC, Yu XP, Huang ZG (2011) Research on the technique of no-pillar mining with gob-side entry formed by advanced roof caving in the protective seam in Baijiao coal mine. J Min Saf Eng 28:511–516 Zhang GF, He MC, Yu XP, Huang ZG (2011) Research on the technique of no-pillar mining with gob-side entry formed by advanced roof caving in the protective seam in Baijiao coal mine. J Min Saf Eng 28:511–516
go back to reference Zhang N, Han CL, Kan JG (2014) Theory and practice of surrounding rock control for pillarless gob-side entry retaining. J China Coal Soc 39(8):1635–1641 Zhang N, Han CL, Kan JG (2014) Theory and practice of surrounding rock control for pillarless gob-side entry retaining. J China Coal Soc 39(8):1635–1641
go back to reference Zhao JH, Yin LM, Guo WJ (2018) Stress-seepage coupling of cataclastic rock masses based on digital image technologies. Rock Mech Rock Eng 51(8):2355–2372CrossRef Zhao JH, Yin LM, Guo WJ (2018) Stress-seepage coupling of cataclastic rock masses based on digital image technologies. Rock Mech Rock Eng 51(8):2355–2372CrossRef
go back to reference Zhu CY, Zhang DB, Shi SL, Miao XX (2006) Reliability analysis on support structure of gob-side entry retaining in mechanized caving face. J China Coal Soc 31:141–144 Zhu CY, Zhang DB, Shi SL, Miao XX (2006) Reliability analysis on support structure of gob-side entry retaining in mechanized caving face. J China Coal Soc 31:141–144
Metadata
Title
Application of Roof-Cutting and Pressure-Release Entry Retaining in Inclined Coal Seams: A Case Study
Authors
Enze Zhen
Yubing Gao
Publication date
01-01-2020
Publisher
Springer International Publishing
Published in
Geotechnical and Geological Engineering / Issue 3/2020
Print ISSN: 0960-3182
Electronic ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-019-01169-5

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