张少峰. 巷道过断层技术研究与应用[J]. 煤矿安全, 2019, 50(3): 130-133.
    引用本文: 张少峰. 巷道过断层技术研究与应用[J]. 煤矿安全, 2019, 50(3): 130-133.
    ZHANG Shaofeng. esearch and Application of Tunnel Passing Through Fault Technology[J]. Safety in Coal Mines, 2019, 50(3): 130-133.
    Citation: ZHANG Shaofeng. esearch and Application of Tunnel Passing Through Fault Technology[J]. Safety in Coal Mines, 2019, 50(3): 130-133.

    巷道过断层技术研究与应用

    esearch and Application of Tunnel Passing Through Fault Technology

    • 摘要: 为了确保龙王沟煤矿回风大巷安全通过导通承压水的断层,阻隔底板奥灰水与巷道间的导水通道,有效提高断层破碎带的岩石强度,避免断层滞后突水和发生冒顶事故,采用对奥灰纪灰岩顶界面以下10~30 m范围内的岩层注浆和对断层破碎带巷道围岩帷幕注浆的方法,对巷道过断层治理技术进行了研究。回风大巷通过该断层后,该段巷道顶板只有少量淋水,总淋水量仅为0.5 m3 /h。结果表明:通过对该断层的注浆治理,有效地封堵了奥灰水的导水通道,提高了巷道的围岩强度,治理方案能够满足巷道安全掘进的需要。

       

      Abstract: In order to ensure that the return air tunnel in Longwanggou Coal Mine safely passes through the fault that conducts pressure water and blocks the water channel between Ordovician limestone water and the tunnel, to effectively improve the rock strength in the fracture zone of the fault and avoid fault hysteretic water inrush and roof fall accidents caused by the fault, the technology of tunnel passing through the fault was studied by the method of grouting rock strata within 10 m to 30 m below the limestone roof interface of Ordovician period and surrounding rock curtain grouting of the roadway in the fault fracture zone. After the tunnel passes through the fault, the roof of the tunnel in this section has only a small amount of leaching water, and the total amount of leaching water is only 0.5 m3/h. The results show that through grouting treatment of the fault, the channel of Ordovician limestone water is effectively blocked, and the surrounding rock strength of the tunnel is improved, and the treatment scheme can meet the needs of the tunnel safety.

       

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