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金属矿山 ›› 2025, Vol. 54 ›› Issue (11): 113-121.

• 采矿工程 • 上一篇    下一篇

强动压采场水力压裂切顶护巷关键参数优化研究

王梦成1 孙利辉1,2 初风蛟3 蔡振禹4 赫宝龙3 张中原1 褚居涛1 纪权财5 胡晓东6   

  1. 1.河北工程大学矿业与测绘工程学院,河北 邯郸 056038;2.北京科技大学资源与安全工程学院,北京 100083; 3.开滦(集团)有限责任公司钱家营矿业分公司,河北 唐山 063301;4.邢台学院,河北 邢台 054001; 5.新疆煤炭资源绿色开采教育部重点实验室(新疆工程学院),新疆 乌鲁木齐 830023; 6.内蒙古东蒙工贸有限责任公司,内蒙古 鄂尔多斯 017000
  • 出版日期:2025-11-15 发布日期:2025-12-01
  • 通讯作者: 孙利辉(1978—),男,教授,博士,博士研究生导师。
  • 作者简介:王梦成(1998—),男,硕士研究生。
  • 基金资助:
    国家自然科学基金项目(编号:52474128,52074100);内蒙古自治区科技厅“科技兴蒙”重点专项(编号:2022EEDSKJXM009-1)。

Study on Optimization of Key Parameters of Hydraulic Fracturing Roof Cutting and Roadway Protection in Strong Dynamic Pressure Stope

 WANG Mengcheng1 SUN Lihui1,2 CHU Fengjiao3 CAI Zhenyu4 HE Baolong3 ZHANG Zhongyuan1    CHU Jutao1 JI Quancai5 HU Xiaodong6   

  1. 1.School of Mining and Geomatics Engineering,Hebei University of Engineering,Handan 056038,China; 2.School of Resources and Safety Engineering,University of Science and Technology Beijing,Beijing 100083,China; 3.Qianjiaying Mining Branch,Kailuan (Group) Limited Liability Corporation,Tangshan 063301,China;4.Xingtai University, Xingtai 054001,China;5.Key Laboratory of Xinjiang Coal Resources Green Mining,Ministry of Education (Xinjiang Institute of Engineering),Urumqi 830023,China;6.Inner Mongolia Dongmeng Industry and Trade Co.,Ltd.,Ordos 017000,China
  • Online:2025-11-15 Published:2025-12-01

摘要: 工作面回采产生的侧向支承压力对其临近巷道围岩稳定产生扰动,导致动压区内巷道出现支护结构失 效、底鼓等现象,甚至存在冒顶风险,巷道常需要加固、返修,增加支护成本,兼具一定的生产安全隐患。水力压裂切顶 卸压可消除或减弱采动压力对临近巷道的扰动,以钱家营矿2120W工作面开采保护动压区内与其风道平行的多条准 备巷道为例,通过理论计算、数值模拟、现场试验等方法,构建了水力压裂切顶卸压短悬臂梁结构模型,对比分析了卸 压短悬臂梁结构和砌体梁结构对区段煤柱的压缩作用,分析了切顶卸压护巷的可行性,研究了不切顶和压裂不同区 域条件下的围岩变形及应力分布和顶板裂隙发育规律,给出了超前切顶卸压关键技术参数取值。结果表明:切顶卸 压短悬臂梁结构较不切顶的砌体梁结构区段煤柱所受平均应力减小49.32%;当分别压裂采空区煤柱边缘、煤柱中深 部、煤柱深部时,对比不切顶条件,被保护巷道变形量分别降低了66.87%、79.38%、73.24%,煤柱垂直应力峰值分别 降低了8.99%、13.62%、13.89%,压裂煤柱中深部为最优方案;确定了覆岩细砂岩为亚关键层,压裂垂高为13.1 m、钻 孔倾角为60°,钻孔深度为16.4 m、钻孔间距为10 m、起裂压力为12~48 MPa (理论取值为28 MPa)。现场工业性试 验结果反映出,被保护巷道围岩变形在可控范围内,为类似条件巷道保护提供了依据。

Abstract: The lateral abutment pressure generated by the mining of the working face disturbs the stability of the sur rounding rock of the adjacent roadway,which leads to the failure of the supporting structure,floor heave and other phenomena in the roadway in the dynamic pressure zone,and even the risk of roof fall.The roadway often needs reinforcement and repair, which increases the support cost and has certain production safety hazards.Hydraulic fracturing roof cutting and pressure relief can eliminate or weaken the disturbance of mining pressure to adjacent roadways.Based on the background of multiple prepara tion roadways parallel to the air duct in the mining protection dynamic pressure area of 2120 W working face of Qianjiaying Mine,the short cantilever beam structure model of hydraulic fracturing roof cutting and pressure relief is constructed by means of theoretical calculation,numerical simulation and field test.The compression effect of short cantilever beam structure and ma sonry beam structure on section coal pillar is compared and analyzed.The feasibility of roof cutting and pressure relief roadway protection is analyzed.The deformation and stress distribution of surrounding rock and the development law of roof cracks under different regional conditions of non-roof cutting and fracturing are studied.The key technical parameters of advanced roof cut ting and pressure relief are given.The results show that the average stress of the section coal pillar of the roof cutting and pres sure relief short cantilever beam structure is 49.32% lower than that of the masonry beam structure without roof cutting.When fracturing the edge of coal pillar,the middle and deep part of coal pillar and the deep part of coal pillar in goaf respectively, compared with the condition of no roof cutting,the deformation of protected roadway is reduced by 66.87%,79.38% and 73.24% respectively,and the peak value of vertical stress of coal pillar is reduced by 8.99%,13.62% and 13.89% respec tively.The middle and deep part of fracturing coal pillar is the optimal scheme.It is determined that the fine sandstone of the o verburden rock is the sub-key layer,the vertical height of the fracturing is 13.1 m,the inclination angle of the borehole is 60°, the depth of the borehole is 16.4 m,the spacing of the borehole is 10 m,and the initiation pressure is 12 MPa to 48 MPa (the oretical value is 28 MPa).The industrial test was carried out on site,the results show that the deformation of the surrounding rock of the protected roadway was within the controllable range,which provided a basis for roadway protection under similar conditions.

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