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复杂地层高位定向长钻孔成孔工艺研究与应用

Research and application of hole-forming technology of high-position directional long borehole in complex stratum

  • 摘要: 为解决曙光煤矿复杂地层条件下泥岩水化导致顶板高位定向长钻孔成孔困难的技术难题,在曙光煤矿开展现场试验,采用定向先导孔和大孔径螺旋扩孔的成孔工艺,成功施工了9个孔深超520 m、孔径153 mm的顶板高位定向长钻孔,单孔最大深度达801 m,形成了适用于曙光煤矿复杂地层的顶板高位定向长钻孔成孔技术。研究表明:通过大孔径螺旋扩孔工艺可将先导孔孔壁四周泥岩水化区切削掉,有助于提高钻孔孔壁的稳定性;通过大孔径螺旋扩孔工艺形成的大环空复合排渣工艺,能够显著提高钻孔排渣效率。

     

    Abstract: In order to solve the technical problems of the difficulty of making holes in the roof high-position directional long borehole caused by the mudstone hydration under the complex stratum conditions of Shuguang Coal Mine, field tests were carried out using directional guide holes and large diameter spiral reaming of hole-forming technology. Nine high-level directional long boreholes were successfully constructed with a depth of more than 520 m and a hole diameter of 153 mm, with a maximum drilling depth of 801m for a single hole, forming a high-level directional long boreholesdrilling technology suitable for complex stratum on the roof of Shuguang Coal Mine. The research results show that cutting the mudstone hydration zone around the borehole wall by spiral reaming can help improve the stability of the borehole wall. Also, the annulus composite row formed by the large-diameter spiral reaming process can significantly improve the drilling slag discharge energy efficiency.

     

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