煤炭工程 ›› 2024, Vol. 56 ›› Issue (5): 42-50.doi: 10.11799/ce202405007

• 施工技术 • 上一篇    下一篇

工业广场保护煤柱开采井筒破损致因及防治技术

程 桦,喻 宏,宋海清,成 浪,荣传新,姚直书,彭世龙   

  1. 1. 安徽理工大学 土木建筑学院,安徽 淮南 232001

    2. 安徽大学 资源与环境工程学院,安徽 合肥 230022

    3. 冀中能源峰峰集团有限公司 大社矿,河北 邯郸 056008

    4. 安徽建筑大学建筑 结构与地下工程安徽省重点实验室,安徽 合肥 230022

  • 收稿日期:2022-12-21 修回日期:2023-08-05 出版日期:2023-05-20 发布日期:2025-01-03
  • 通讯作者: 喻宏 E-mail:HongYu19970523@163.com

Causes of shaft damage in mine plant coal pillar mining and the prevention technology

  • Received:2022-12-21 Revised:2023-08-05 Online:2023-05-20 Published:2025-01-03

摘要:

针对工业广场保护煤柱开采导致井筒破损的问题,以大社煤矿为工程背景,分析工广煤柱开采井筒围岩移动变形特征,揭示井筒破损致因;提出工广内后续工作面开采防治井筒破坏方案,形成相应的施工技术,并成功应用工程实践。研究表明:该矿工广内92606工作面邻近副井,开采引发的井筒竖向附加力是井筒破坏的致因;如不提前采取防治措施,后续92606 外工作面开采,将导致副井井筒发生二次破坏;研究提出的不停产单卸压槽防治方案,具有不影响矿井生产、卸压率高、施工简单、成本低等优点。采用壁后注浆、开切卸压槽、架设密集井圈等技术,顺利完成了该矿不停产防治副井井筒破损工程。监测表明,该井筒竖向和环向应力,均小于井壁极限。承载力,处于安全状态,运行良好,达到了预期效果。

关键词: 工业广场, 保护煤柱, 地层沉降, 井壁破损, 卸压槽, 围岩控制

Abstract:

Aimed at the causes of shaft damage in Gongguang coal pillar mining and its prevention and control technology, taking Dashe Coal Mine in Handan, Hebei Province as the engineering background, the movement and deformation characteristics of surrounding rock in the shaft of Gongguang coal pillar mining are analyzed to reveal the causes of shaft damage; Propose the plan of preventing and controlling the shaft damage in the follow-up working face of the project, form the corresponding construction technology, and successfully apply the engineering practice. The research shows that the 92606 working face in Guangnei is adjacent to the auxiliary shaft, and the vertical additional force caused by mining is the cause of shaft damage; If preventive measures are not taken in advance, the subsequent mining of the 92606 working face will lead to secondary damage to the auxiliary shaft; The prevention and control scheme of single pressure relief groove without stopping production proposed in the study has the advantages of not affecting the mine production, high pressure relief rate, simple construction, low cost, etc. The technology of grouting behind the wall, cutting the pressure relief groove, and erecting dense well circles has successfully completed the project of preventing and controlling the damage of the auxiliary shaft without stopping production. The monitoring shows that the vertical and circumferential stresses of the shaft are less than the ultimate bearing capacity of the shaft wall, and the shaft is in a safe state. The operation is good and the expected effect is achieved.

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