煤炭工程 ›› 2024, Vol. 56 ›› Issue (2): 39-44.doi: 10.11799/ce202402006

• 施工技术 • 上一篇    下一篇

反井钻机施工大直径风井工程结构稳定性评价方法研究

杨木林,程守业,宋亚新,等   

  1. 1. 神华包头能源有限责任公司 李家壕煤矿
    2. 煤炭科学研究总院建井研究分院
    3. 华北科技学院安全工程学院
  • 收稿日期:2022-07-20 修回日期:2022-09-15 出版日期:2024-02-20 发布日期:2024-02-29
  • 通讯作者: 谷群涛 E-mail:2112171048@qq.com

Study on evaluation method of structural stability of large diameter air shaft engineering constructed by raise boring machine

  • Received:2022-07-20 Revised:2022-09-15 Online:2024-02-20 Published:2024-02-29
  • Contact: GU quntao E-mail:2112171048@qq.com

摘要: 针对大直径反井工程在扩孔期间的围岩稳定性问题, 提出了一种考虑反井钻井法工艺特点的竖井结构稳定性评价方法, 确定了围岩自稳能力是其关键因素, 基于强度折减法, 提出了以围岩稳定系数为核心的井帮围岩自稳能力定量评估方法, 通过数值模拟手段确定了围岩极限自稳状态的强度折减系数k0, 并以此作为围岩的稳定系数。为解决工程实际问题, 提出了预防空帮失稳的工程处理措施, 在扩孔阶段实施随钻临时支护作业, 实现围岩的快速封闭。最后以李家壕煤矿回风暗立井工程作为研究对象, 提出了局部失稳风险评估意见, 并依托工程实践对评估准确性进行了验证, 其结果表明评估结论与实际结果一致, 验证了该井帮围岩稳定性定量评价方法及工程处理措施的有效性。

关键词: 反井钻井, 竖井, 强度折减法, 通风井, 围岩自稳

Abstract: Raise shaft drilling method is one of the key technologies of rapid mechanized construction of coal mine shaft. Raise shaft drilling technology is widely used in the field of large-diameter coal mine ventilation shaft engineering. Its diameter is usually greater than 5m, which brings challenges to safe construction. How to accurately pre evaluate the stability of shaft structure in the process of raise shaft reaming according to the geological data of well inspection hole is the key problem to determine the safety and engineering quality of raise shaft construction. In order to solve this problem, an evaluation method of shaft structure stability considering the technological characteristics of raise boring method is proposed. In view of the large-diameter raise shaft project represented by the ventilation shaft, the determination of the surrounding rock self stability is the key factor. Based on the strength reduction method, a quantitative evaluation method of the surrounding rock self stability ability of the shaft wall with the surrounding rock stability coefficient as the core is proposed, and the surrounding rock stability coefficient under the extreme self stability state of the surrounding rock is determined by numerical simulation. Finally, taking the return air underground shaft project of lijiahao coal mine as the research object, the local instability risk assessment opinions are put forward, and the accuracy of the assessment is verified based on the engineering practice. The results show that the assessment conclusion is consistent with the actual results.

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