煤炭工程 ›› 2023, Vol. 55 ›› Issue (6): 37-44.doi: 10. 11799/ ce202306007

• 施工技术 • 上一篇    下一篇

山区小煤窑浅部盗采矿洞精确探测研究

骆海心,潘剑伟,高 健,詹 林,张成丽,孙 旭,卢向星   

  1. 1. 贵州大学 喀斯特地质资源与环境教育部重点实验室,贵州 贵阳 550025
    2. 贵州大学 资源与环境工程学院,贵州 贵阳 550025 3. 山东电力工程咨询院有限公司,山东 济南 250013
  • 收稿日期:2022-11-04 修回日期:2023-01-17 出版日期:2023-06-20 发布日期:2023-06-30
  • 通讯作者: 潘剑伟 E-mail:pjw1988@126.com

Accurate Detection of Shallow Unknown Caves of Private Small Coal Mine under Mountainous Areas Based on ERT and TEM

  • Received:2022-11-04 Revised:2023-01-17 Online:2023-06-20 Published:2023-06-30

摘要:

在对老矿区进行开发改造前, 需要利用地球物理方法对矿区内遗留的小煤窑进行探测。为实现山区浅部小煤窑盗采矿洞的精确探测, 首先运用数值模拟的方法讨论了高密度电阻率法(ERT)的三种常用装置对小型盗采矿洞的探测效果, 之后采取物理模拟的方法研究了小线圈瞬变电磁法(TEM)对不同距离下的低阻良导体的响应特征, 最后在场地实验中结合上述两种方法对贵州省织金县某浅层小煤窑盗采矿洞进行了探测。实验结果表明, 小线圈TEM 可以克服ERT 在山区不易布置长测线的困难, 而ERT 又可以弥补TEM 浅部探测盲区及分辨率不足的缺点。在探测过程中可以先运用TEM 进行初步探测以提供需要进一步精细探测的目标区域, 再布设分辨率较高的ERT 测线对盗采矿洞进行精确探测, 并可以用相对精度更高的ERT 电阻率数据对TEM 反演数据进行校正。两者的结合减少了单一物探方法在反演结果解释上的局限性。

关键词: 盗采矿洞, 高密度电阻率法, 瞬变电磁法, 数值模拟, 物理模拟

Abstract:

Before the development of the old mining areas, it is necessary to use geophysical methods to detect the small coal goafs left in the mining area. Usually, private small coal mines are not large in scale and shallow in depth. If it is located in mountainous areas, some of geophysical methods will be difficult to lay out long survey lines due to the influence of topographic relief, resulting in certain limitations. In order to realize the accurate detection of shallow private mining tunnels under mountainous areas, firstly, we discussed detection effects of three common devices of ERT on low-resistance abnormal bodies by numerical simulation. Then, the response characteristics of small-loop TEM to good conductors at different distances are studied by physical simulation. Finally, in field experiments, the above two methods were combined to detect shallow private mining tunnels in Zhijin County, Guizhou Province. The experimental results show that small-loop TEM can overcome the problem that ERT is not easy to arrange long lines in mountainous area, and ERT can make up for the shortcomings of TEM shallow detection blind area and insufficient resolution. In the process of detecting the private mining tunnels, TEM can be used for preliminary detection to provide some geophysical information. Based on this, more short ERT lines with higher resolution is laid out to accurately detect the tunnels, and TEM inversion data can be corrected with the ERT resistivity data and achieve more accurate results. The combination of the two methods reduces the limitations of only single geophysical method in the interpretation of inversion results, and provides a reference for the accurate detection of geophysical methods in the shallow private mining caves of small coal mine.

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