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Application of Comprehensive Geophysical Prospecting Method in the Exploration of Coal Mined-Out Areas

机译:综合地球物理勘探方法在煤矿地区勘探中的应用

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Due to the influence of mining technology, some coal mines will leave mined-out areas (or goafs) in the rock mass after mining. If the distribution law and influence scope of mined-out areas cannot be accurately explored and controlled, it will bring great potential safety hazards to subsequent coal mining and cause serious harm to adjacent houses, roads, bridges, railways, and so on. The unmanned aerial vehicle (UAV) aerial survey is used to accurately acquire the three-dimensional model of the slope in the key area of Yuanbaoshan open-pit coal mine, which provides basic information for the real-time visualization of the open-pit mine and the establishment of the engineering geological research profile. And the distribution of mined-out areas and water accumulation in the coal mine are investigated in detail by using the comprehensive geophysical prospecting method of the transient electromagnetic method (TEM) and controlled source audio-frequency magnetotellurics (CSAMT). Then, the borehole detection method is used to verify the goaf range obtained from comprehensive geophysical prospecting, and the results show good consistency. In addition, based on the results of borehole exploration and the comprehensive analysis of the borehole image, the instantaneous water level elevation in goaf and the development height of the water-conducting fracture zone and caving zone are concluded. Finally, the distribution of coal mined-out areas in the exploration area is obtained, and the results show that through the use of the transient electromagnetic method and controlled source audio-frequency magnetotellurics method, combined with drilling detection methods, the purpose of accurate exploration of mined-out areas in coal mines can be achieved.
机译:由于采矿技术的影响,一些煤矿将在采矿后留下岩石质量的挖掘区域(或公羊)。如果无法准确探索和控制挖掘地区的分配法和影响范围,将为随后的煤炭开采带来巨大的潜在安全危害,并对邻近的房屋,道路,桥梁,铁路等造成严重伤害。无人驾驶航空公司(UAV)航空测量用于准确获取袁宝山露天煤矿关键区坡度的三维模型,为露天矿井的实时可视化提供基本信息并建立工程地质研究概况。并通过使用瞬态电磁法(TEM)和控制源音频磁电机(CSAMT)的综合地球物理勘探方法详细研究了煤矿中采矿区域和水积累的分布。然后,钻孔检测方法用于验证从综合地球物理勘探获得的GOAF范围,结果显示出良好的一致性。此外,基于钻孔勘探的结果和钻孔图像的综合分析,结论了脱水区的瞬时水位高度和水导裂区和塌陷区的开发高度。最后,获得了勘探面积中煤外出区域的分布,结果表明,通过使用瞬态电磁法和控制源音频频率磁力学方法,结合钻探检测方法,准确探索的目的可以实现煤矿的挖掘区域。

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