Comparison of large deformation failure control method in a deep gob-side roadway: A theoretical analysis and field investigation

被引:0
作者
Jiong Wang
Peng Liu
Man-chao He
Yi-peng Liu
Chang-xin Du
机构
[1] China University of Mining and Technology (Beijing),State Key Laboratory for Geomechanics and Deep Underground Engineering
[2] China University of Mining and Technology (Beijing),School of Mechanics and Civil Engineering
来源
Journal of Mountain Science | 2023年 / 20卷
关键词
Deep gob-side roadway; Deformation failure control; Roof structure mechanical model; Stress field distribution; Mining safety; Failure mode;
D O I
暂无
中图分类号
学科分类号
摘要
Under the dual influence of the mining disturbance of the previous working face and the advanced mining of the working face, the roadway is prone to large deformation, failure, and rockburst. Roadway stabilization has always significantly influenced deep mining safety. In this article we used the research background of the large deformation failure roadway of Fa-er Coal Mine in Guizhou Province of China to propose two control methods: bolt-cable-mesh + concrete blocks + directional energy-gathering blasting (BCM-CBDE method) and 1st Generation − Negative Poisson’s Ratio (1G NPR) cable + directional energy-gathering blasting + dynamic pressure stage support (π girder + single hydraulic prop + retractable U steel) (NPR-DEDP method). Meantime, we compared the validity of the large deformation failure control method in a deep gob-side roadway based on theoretical analysis, numerical simulations, and field experiments. The results show that directional energy-gathering blasting can weaken the pressure acting on the concrete blocks. However, the vertical stress of the surrounding rock of the roadway is still concentrated in the entity coal side and the concrete blocks, showing a ‘bimodal’ distribution. BCM-CBDE method cannot effectively control the stability of the roadway. NPR-DEDP method removed the concrete blocks. It shows using the 1G NPR cable with periodic slipping-sticking characteristics can adapt to repeated mining disturbances. The peak value of the vertical stress of the roadway is reduced and transferred to the deep part of the surrounding rock mass, which promotes the collapse of the gangue in the goaf and fills the goaf. The pressure of the roadway roof is reduced, and the gob-side roadway is fundamentally protected. Meantime, the dynamic pressure stage support method with π girder + single hydraulic prop + retractable U steel as the core effectively protects the roadway from dynamic pressure impact when the main roof is periodically broken. After the on-site implementation of NPR-DEDP method, the deformation of the roadway is reduced by more than 45%, and the deformation rate is reduced by more than 50%.
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页码:3084 / 3100
页数:16
相关论文
共 97 条
  • [1] Coggan J(2012)Numerical modelling of the effects of weak immediate roof lithology on coal mine roadway stability Int J Coal Geol 90–91 100-109
  • [2] Gao F(2015)Study on the application of short-hole blasting with guide hole to roof cutting pressure relief of gob-side entry retaining J Min Saf Eng 32 253-259
  • [3] Stead D(2020)Investigating the effect of simultaneous extraction of two longwall panels on a maingate gateroad stability using numerical modeling Int J Rock Mech Min Sci 126 104172-2984
  • [4] Cheng Y(2019)Mechanical Analysis of Weakly Cemented Roof of GSER in Fully-Mechanized Top Coal Caving Mining Geotech Geol Eng 37 2977-12
  • [5] Hao SP(2023)Mechanism of deformation and pressure relief control of dynamic gob-side entry surroundings in the top-coal caving mining for extra-thick coal seam Coal Sci Tech 51 1-711
  • [6] Cheng YT(2022)Research on principles and methods of roadway support design under conventional conditions Chin J Rock Mech Eng 41 691-926
  • [7] Darvishi A(2020)Large deformation theory of rheology and structural instability of the surrounding rock in deep mining roadway J China Coal Soc 45 911-12
  • [8] Ataei M(2004)Study on gob-side entry retaining technique with roadside packing in longwall top-coal caving technology Int J Coal Sci Technol 10 9-976
  • [9] Rafiee R(2014)Stability analysis of compound bearing structure of GSER with large mining height Chin J Geotech Eng 36 969-492
  • [10] Gu QH(2015)Longwall mining “cutting cantilever beam theory” and 110 mining method in China—The third mining science innovation J Rock Mech Geotech Eng 7 483-969