煤炭工程 ›› 2019, Vol. 51 ›› Issue (4): 26-29.doi: 10.11799/ce201904006

• 施工技术 • 上一篇    下一篇

近距离采空区下巷道围岩非对称性变形破坏特征及控制技术

董永占   

  1. 北京京煤集团
  • 收稿日期:2018-04-20 修回日期:2018-06-19 出版日期:2019-04-20 发布日期:2019-04-28
  • 通讯作者: 董永占 E-mail:hhnyjszx@126.com

Asymmetric deformation and failure characteristic of the roadway surrounding rock and its control under close distance gob

  • Received:2018-04-20 Revised:2018-06-19 Online:2019-04-20 Published:2019-04-28

摘要: 针对高家梁煤矿20307工作面受上煤层及本煤层相邻采空区的影响,巷道变形呈现非对称性,原支护方式效果不理想,影响巷道正常使用的情况,为保障矿井安全生产、提高矿井经济效益,通过对20307工作面运输巷表面变形监测和锚杆(索)破坏结果分析,研究了巷道围岩呈现非对称性变形的原因。基于巷道非对称控制机理分析进行非对称支护优化设计,确定合理有效的支护优化参数,并进行数值模拟和现场工程试验。根据模拟结果和现场监测分析,支护优化方案有效地控制了巷道围岩非对称性变形,支护效果较好。

关键词: 近距离, 采空区下, 非对称变形破坏, 围岩控制技术

Abstract: There are serious problems such as asymmetric deformation and failure of surrounding rock and difficulty in supporting the roadway in the goaf when mining near the coal seam. Based on the project background of 20307 transportation roadway in gaojialang coal mine, Inner Mongolia, the asymmetric deformation and failure characteristics of roadway surrounding rocks are analyzed based on the field monitoring results. The roof on the side of coal pillar sinks heavily and the coal rib spalling is serious. The failure of bolt occurs at the shoulder Angle of roadway and is mainly caused by the tensile fracture of screw segment at the end of bolt and the shear failure at the free end. And asymmetric support technology of roadway is proposed. The side of the column is supported by round steel bolt. The stopper is not supported when the side wall is intact, and the fissures are developed and the gripping areas are supported by FRP bolts. Then, FLAC3D is used to simulate the supporting effect and field test is carried out in the 20307 haulage roadway. The results show that: During the mining period, the maximum subsidence of the roof is 34.6mm, and the displacement of the side side of the pillar is 19.6mm, and the displacement of the mining side is 17.3mm. The supporting effect is better when there is no roof fall and rib spalling

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