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Detection of Top Coal by Conductively-Guided Borehole Radar Waves: Results from Numerical Modelling

机译:导流钻孔雷达波探测顶煤:数值模拟结果

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Damage to the tops of coal seams caused by incorrect blast stand-off distances is a serious issue in the Australian coal industry, costing the equivalent of about one open cut mine for every 10 operating mines in lost coal. To date, no effective and economically-sound techniques have been found to map and characterize coal seam structures in the open cut environment. We propose to use conductively-guided borehole radar (BHR) waves for real-time prediction of coal tops during blast-hole drilling. The method uses a conventional borehole radar (BHR) with a dipole antenna, which can image sideways around the borehole, electrically coupled to a conductive wire or steel drill-rod to induce a guided wave along the axial drill-rod. The drill-rod ahead of the BHR becomes part of the radiating antenna. The guided wave travels to the end of the drill-bit where some of its energy is reflected back, while the remainder radiates from the drill bit. The radiated energy will be reflected by geological discontinuities such as the top of a coal seam, and recorded by the BHR. In this paper, numerical modeling is used to investigate the feasibility and affecting factors of this guided-BHR-wave-based approach for predicting the approach of coal seams during blast-hole drilling. It is demonstrated that conductivity of the overburden is the most important factor affecting our ability to see coal seams ahead of the drill bit; that the guided BHR waves could be used for top coal prediction; and that a theoretical prediction error less than 10 cm and a forward-looking capability of 4-6m can be achieved based on the modelling results.
机译:在澳大利亚,煤炭行业中,由于爆炸距离距离错误而造成的煤层顶部损坏是一个严重的问题,每10个运营中的煤矿损失的煤炭成本就相当于一个露天煤矿的成本。迄今为止,还没有发现有效和经济合理的技术来绘制和表征露天矿环境中的煤层结构。我们建议使用导波钻孔雷达(BHR)波对爆破孔钻进过程中煤层的实时预测。该方法使用具有偶极天线的常规钻孔雷达(BHR),该天线可以在钻孔周围向侧面成像,电耦合至导线或钢制钻杆,以沿轴向钻杆感应出导波。 BHR前面的钻杆成为辐射天线的一部分。导波行进到钻头的末端,在此处它的一些能量被反射回去,而其余部分则从钻头辐射出去。辐射能将由地质不连续性(如煤层顶部)反射,并由BHR记录。本文采用数值模拟方法研究了这种基于BHR导波的方法预测爆破钻孔过程中煤层走向的可行性和影响因素。事实证明,覆盖层的电导率是影响我们在钻头前方看到煤层能力的最重要因素。引导的BHR波可用于顶煤预测;根据建模结果,理论上的预测误差小于10 cm,前瞻能力为4-6m。

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