Time-depth conversion of transient electromagnetic method used in coal mines

Jing-cun YU, Yang-zhou WANG, Jian LIU, Xiao-bo ZENG
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引用次数: 14

Abstract

Accuracy of time-depth conversion in data processing of transient electromagnetic prospecting always affects the accurate positioning of water bodies in coal mines. In order to improve the accuracy of time-depth conversion, we established a mathematical model of time-depth conversion for a transient electromagnetic method based on the theory of “double smoke ring effect” of full space transient electromagnetic field transmission. Using a 3-layer as well as a 4-layer geo-electric model for roadway floors, we performed the time-depth conversion of theoretical curves of apparent resistance varying over time. In these curves, the depth corresponding to extreme value points is nearly the same as the depth of a geo-electric model. The position of water body determined by our time-depth conversion method agrees well with the result of borehole drilling, indicating that the established time-depth conversion model can clearly improve the accuracy of spatial positioning of water bodies in coal mines.

煤矿用瞬变电磁法进行时深转换
瞬变电磁勘探数据处理中时深转换的准确性一直影响着矿井水体的准确定位。为了提高时间-深度转换的精度,基于全空间瞬变电磁场传输的“双烟圈效应”理论,建立了瞬变电磁法时间-深度转换的数学模型。利用巷道底板3层和4层地电模型,对视电阻随时间变化的理论曲线进行了时间-深度转换。在这些曲线中,极值点对应的深度与地电模型的深度几乎相同。时间-深度转换方法确定的水体位置与钻孔结果吻合较好,表明所建立的时间-深度转换模型可以明显提高煤矿水体空间定位的精度。
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