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主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
煤层顶板高位定向钻孔施工技术与发展趋势
  • Title

    Construction technology and development tendency of high level directional driling in seam roof

  • 作者

    赵建国

  • Author

    Zhao Jianguo

  • 单位

    中煤科工集团西安研究院有限公司

  • Organization
    Xi'an Research Institute Co., Ltd., China Coal Technology and Engineering Group
  • 摘要

    基于采空区顶板竖"三带"与横"三区"理论,分析了顶板高位定向长钻孔技术瓦斯抽采基本原理与优势,总结归纳了"定向先导孔+扩孔"施工工艺的技术特点,介绍了施工装备系统组成。利用该成孔技术与装备在陕西彬长集团文家坡煤矿4101工作面进行了现场试验,完成顶板高位定向长钻孔2个,累计钻孔进尺1 221 m,单孔主孔深度超过480 m。同时,针对现有顶板高位定向钻孔施工技术存在的问题,提出引入液动冲击辅助碎岩扩孔钻进技术与大直径孔定向钻进技术,进一步增大钻孔终孔直径,提升钻孔施工效率,保证钻孔施工安全。

  • Abstract
    Based on a theory on a vertical"three zones' 'and lateralthree blocks"of goaf roof, the paper analyzed the basic principle and advantages of the gas drain age with the high level directional long borehole drilling technology of the seam roof, summarized and included the technical features of the " directional pilot borehole + reaming" construction technology and introduced the composition of the construction equipment system.The boring technology and equipment were applied to conduct a site trial on No.4101 coal mining face in Wenjiapo Mine of Shaanxi Bingchang Group.Two high level directional drillings were completed in the roof with a total drilling mater of 1 221 m and a single main borehole depth over 480 m.Meanwhile, according to the problems existed in the available construction technology of the high level directional drilling in the roof, the paper provided and introduced a hydraulic and percussive secondary rock breaking and remaining drilling technology and large diame ter directional drilling technology in order to further increase the final borehole diameter of the drilling, to improve the drilling construction efficiency and to ensure the C onstruction safety of the drilling.
  • 关键词

    瓦斯抽采高位钻孔定向钻进扩孔液动冲击

  • KeyWords

    gas drainage; high level borehole; directional drilling; reaming; hydraulic percussion;

  • 基金项目(Foundation)
    国家科技重大专项资助项目(2016ZX05045-003,2016ZX05067-001-003);煤炭科学研究总院技术创新基金资助项目(2016ZYMS015);
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