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Advanced directional drilling technology for gas drainage and exploration in Australian coal mines

机译:澳大利亚煤矿煤气排水和勘探的先进定向钻探技术

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With the continuing technology innovation, directional drilling technology has provided the coal mining industry with effective and practical options for pre-and post-drainage and exploration in Australia. In the past thirty years, in-mine borehole steering equipment has been developed from the single shot camera survey systems to the advanced Directional Drill Monitor utilizing Modular Electrically Connected Cable Assembly (DDM-MECCA) survey instruments, which provides rapid and easy underground borehole survey measurements whilst drilling. The presence of coal seam gas such as methane poses a significant safety hazard to underground coal mining all over the world. However, gas can be captured using pre-and post-drainage techniques to improve coal production, energy recovery, enhance safety, environmental mitigation. An additional benefit of directional drilling is geological explorations in advance of mining. As any discontinuities intercepted during in-seam directional drilling, such as faults, folds and igneous intrusions, can be monitored by drilling fluid pressures, changes in thrust, vibration, rate of penetration and inspection of cuttings. Directional drilling technologies offer coal operators a cost effective exploration alternative without speculation. Applications of the directional drilling technologies in Australian coal mines have established the benefits of the methodology for gas control and geological explorations. Directionally drilled flank boreholes provide shielding to the gate entry developments, horizontal goaf boreholes for gas drainage in deep multi-level mines, and hydro fracturing and exploration in advance of mining. However, there still remains four major problems associated with directionally drilling, and these include: sticky drilling in complex conditions, sensitivity of down hole probe, in-hole stability and drill depth capacity.
机译:随着持续的技术创新,定向钻井技术提供了煤炭开采行业提供了前,后,排水和探索澳大利亚的有效和实用的选择。在过去的三十年中,矿钻孔转向设备已经从单一的拍摄摄像机勘查系统采用模块化电气连接线缆组件(DDM-MECCA)测量仪器先进的定向钻监视器,它提供了快速和便捷的地铁钻孔勘测开发测量同时钻井。煤层气的存在,如甲烷构成了显著安全隐患地下煤矿开采遍布世界各地。然而,气体可以使用前,后排水技术,提高煤炭生产,能量回收,提高安全性,环境缓解被捕获。定向钻井的另一个好处是提前挖掘的地质勘查。任何不连续性在接缝定向钻孔,如断层,褶皱和火成岩侵入期间拦截,可以通过钻孔流体压力进行监控,改变推力,振动,渗透和钻屑的检查的速度。定向钻井技术提供煤炭经营不投机的成本有效的探索替代。在澳大利亚的煤矿定向钻井技术的应用已经建立了瓦斯治理及地质勘查的方法的好处。定向钻钻孔的侧面提供屏蔽的大门入口处的发展,水平钻孔采空区在深多级矿瓦斯抽放,和水力压裂和勘探开采前。然而,仍然存在与定向钻探相关联的四个主要问题,并且这些包括:在复杂条件下粘钻,井下探针,在孔稳定性和钻孔深度容量灵敏度。

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