煤矿立井冻结管射孔注浆工艺技术的应用研究

Application Research on Perforation and Grouting Process Technology of Frozen Pipes in Coal Mine Vertical Shafts

  • 摘要: 油房壕煤矿立井井筒的施工采用全深冻结凿井法,在冻结作业完工后,冻结管和冻结孔中间的区域产生“弧状结构”,使井上和井下形成了一个含水层连接通道,在井筒处构成一个直接水源,使井筒外侧的防水层失效,存在着井筒破坏和井筒涌水问题。为解决该问题,在对立井井筒冻结孔失效机理进行分析的基础上,提出射孔注浆工艺技术,从射孔机理、射孔层位确定、注浆施工要求等进行深入研究,确定最佳施工方案。实验验证表明,立井冻结管射孔注浆工艺能够对冻结管和冻结孔中间的“弧状结构”进行有效封堵,将不同区域的含水层进行可靠分离,避免水压集中而导致的井筒破坏,提高井筒施工安全性;采用同层孔位多孔同时注浆技术,将施工周期缩短了16 d。

     

    Abstract: The construction of the vertical shaft wellbore of Youfanghao Coal Mine adopts the full depth frozen well-digging method.After the frozen operation is completed,an "arc-shaped structure" is formed in the area between the frozen pipe and the frozen hole,creating a aquifer connection channel between the inoue and downhole.This forms a direct water source at the wellbore,causing the waterproof layer on the outer side of the wellbore to fail,resulting in wellbore damage and wellbore water gushing problems.To solve this problem,based on the analysis of the failure mechanism of frozen holes in vertical shaft wellbores,perforation grouting process technology is proposed.In depth research is conducted on perforation mechanism,perforation layer position determination,grouting construction requirements,etc.,to determine the optimal construction scheme.The experimental verification shows that the vertical shaft frozen pipe perforation grouting process can effectively seal the "arc-shaped structure" between the frozen pipe and the frozen hole,reliably separate the aquifers in different areas,avoid wellbore damage caused by water pressure concentrated,and improve the safety of wellbore construction;The use of simultaneous grouting technology with hole position multiple holes in the same layer shortens the construction period by 16 days.

     

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