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Coal top detection by conductively guided borehole radar wave imaging for open cut blast-hole drilling

机译:传导导孔雷达波成像对煤顶的探测,用于明眼爆破钻孔

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摘要

Damage to the top of coal seams, caused by incorrect blast stand-off distances, results in coal losses of up to 10-15% to the Australian open cut coal mining operations. This is a serious issue to be addressed. Here we propose to use a new forward-looking imaging technique based on the borehole radar technology to predict the coal seam top in real time while drilling blast holes. This is achieved by coupling the conventional borehole radar waves on to a steel drill rod to induce a guided wave along the axial drill rod. The drill rod ahead of the borehole radar behaves as a forward-looking antenna for the guided waves. Both numerical modelling and field trials simulating a drill rod as an antenna are used to investigate the feasibility of the proposed technique for prediction of the coal top under typical open cut environments. Numerical modelling demonstrated that conductivity of the overburden is the most important factor affecting our ability to see coal seams ahead of the drill bit, the guided borehole radar waves could be used for top coal prediction and a theoretical prediction error less than 10 cm and a forward-looking capability of 4-6 m can be achieved. Field trials at Australian open cut coal mines also demonstrated that guided borehole radar waves can be observed and used for prediction of coal top ahead of drill bit during blast-hole drilling in resistive, open cut environments (the average resistivity should be higher than 75 omega m).
机译:由于爆炸距离距离错误而造成的煤层顶部损坏,导致澳大利亚露天开采煤矿的煤炭损失高达10-15%。这是一个需要解决的严重问题。在这里,我们建议使用一种基于井眼雷达技术的新的前瞻性成像技术,以便在钻探爆破孔时实时预测煤层顶部。这是通过将常规钻孔雷达波耦合到钢钻杆上并沿轴向钻杆诱发导波来实现的。井眼雷达前方的钻杆起着引导波的前视天线的作用。数值模拟和模拟钻杆作为天线的现场试验都用于研究所提出的技术在典型露天开采环境下预测煤顶的可行性。数值模拟表明,覆盖层的电导率是影响我们在钻头前方看到煤层的能力的最重要因素,导向钻孔雷达波可用于顶煤预测,理论预测误差小于10 cm,且前向可以实现4-6 m的前视能力。在澳大利亚露天矿的现场试验还表明,在电阻性露天开采的爆破钻孔过程中,可以观察到引导钻孔雷达波并将其用于预测钻头前方的煤顶(平均电阻率应高于75Ω m)。

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