Three-dimensional numerical modeling of full-space transient electromagnetic responses of water in goaf

被引:0
作者
Jiang-Hao Chang
Jing-Cun Yu
Zhi-Xin Liu
机构
[1] China University of Mining and Technology,School of Resources and Geosciences
来源
Applied Geophysics | 2016年 / 13卷
关键词
Goaf; water; mine transient electromagnetic method; fullspace; finite-difference time-domain method;
D O I
暂无
中图分类号
学科分类号
摘要
The full-space transient electromagnetic response of water-filled goaves in coal mines were numerically modeled. Traditional numerical modeling methods cannot be used to simulate the underground full-space transient electromagnetic field. We used multiple transmitting loops instead of the traditional single transmitting loop to load the transmitting loop into Cartesian grids. We improved the method for calculating the z-component of the magnetic field based on the characteristics of full space. Then, we established the fullspace 3D geoelectrical model using geological data for coalmines. In addition, the transient electromagnetic responses of water-filled goaves of variable shape at different locations were simulated by using the finite-difference time-domain (FDTD) method. Moreover, we evaluated the apparent resistivity results. The numerical modeling results suggested that the resistivity differences between the coal seam and its roof and floor greatly affect the distribution of apparent resistivity, resulting in nearly circular contours with the roadway head at the center. The actual distribution of apparent resistivity for different geoelectrical models of water in goaves was consistent with the models. However, when the goaf water was located in one side, a false low-resistivity anomaly would appear on the other side owing to the full-space effect but the response was much weaker. Finally, the modeling results were subsequently confirmed by drilling, suggesting that the proposed method was effective.
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页码:539 / 552
页数:13
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