王鹏. 基于瞬变电磁法的超浅层采空区探测[J]. 煤矿安全, 2018, 49(12): 135-138.
    引用本文: 王鹏. 基于瞬变电磁法的超浅层采空区探测[J]. 煤矿安全, 2018, 49(12): 135-138.
    WANG Peng. Detection of Ultra-shallow Gob Based on Transient Electromagnetic Method[J]. Safety in Coal Mines, 2018, 49(12): 135-138.
    Citation: WANG Peng. Detection of Ultra-shallow Gob Based on Transient Electromagnetic Method[J]. Safety in Coal Mines, 2018, 49(12): 135-138.

    基于瞬变电磁法的超浅层采空区探测

    Detection of Ultra-shallow Gob Based on Transient Electromagnetic Method

    • 摘要: 为了研究瞬变电磁法对超浅层采空区的探测效果,以陕北某小煤窑采空区为研究对象,从数值模拟与现场实测2方面对其瞬变电磁响应展开研究。首先针对目标体地质条件建立K型地电模型,从电阻率差异角度论证理论可行性;其次根据理论结果设置采集参数,以电性标志层电阻率差异为依据对采空区分布范围进行推断;最后采用地面钻探对异常区进行验证。结果表明:瞬变电磁法盲区有限,采用240 m×240 m发射回线时最小探测深度小于20 m,能准确反映超浅层采空区的分布。

       

      Abstract: In order to study the effect of transient electromagnetic (TEM) on the detection of ultra-shallow gob, the goaf of a small coal mine in northern Shaanxi is regarded as the research object, and its TEM response is studied from aspects of numerical simulation and field measurement. Ground electricity model is established according to the condition of the research object at first, and theoretical feasibility is demonstrated on the basis of the difference of resistivity. Secondly, the acquisition parameters are set up according to the theoretical results, measured results are analyzed combined with geological conditions, the range of the gob is inferred. Finally, abnormal area is exposed by ground drilling. The results show that the dead depth of TEM is very small. The minimum detection depth is less than 20 m when loop size is 240 m×240 m. The distribution of the ultra-shallow gob can be detected accurately by TEM.

       

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