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A Surface-to-Borehole TEM System Based on Grounded-wire Sources: Synthetic Modeling and Data Inversion

机译:基于接地线源的表面对钻孔TEM系统:合成建模和数据反转

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摘要

The surface-to-borehole transient electromagnetic (TEM) method, which uses a rectangular loop as its source, has shown great potential in mineral exploration at greater depth. However, recent studies have demonstrated that a grounded-wire source can resolve the resistive targets and provide detection at greater depths than the loop source. Thus, we propose a surface-to-borehole TEM method using a grounded wire as a transmitter at short offsets. We conducted numerical experiments to explain the variation of different parameters and its comparable effects on the TEM transients. Similarly, a systematic comparison of the cross-sectional electric field distribution maps, borehole profiles of the time derivatives of the magnetic field, qualitatively reveal that the proposed method induces detectable responses for conductive and resistive targets at greater depths. In the present study, unlike the loop source configuration, the time derivative of an underground magnetic field in horizontal direction showed high sensitivity to resistive bodies. Furthermore, 1-D inversion was performed to provide quantitative interpretation of the borehole data. The 1-D inversion of the surface and borehole data was realized using an Occam-type inversion scheme. The results of both synthetic and field data indicate that inverting the surface or borehole data separately resulted in degraded resolution in both shallow and deep earth. Thus, we also compared the results from the inversions of surface and borehole data in order to explore the merits of joint inversion in resolving shallow and deep structures.
机译:使用矩形环路作为其源的表面到钻孔瞬态电磁(TEM)方法,在更深入的深度下显示了矿物勘探的巨大潜力。然而,最近的研究已经证明了接地线源可以解析电阻靶并在比环路源更大的深度下提供检测。因此,我们提出了一种在短偏移中使用接地线的表面到钻孔TEM方法。我们进行了数值实验,以解释不同参数的变化及其对TEM瞬变的可比效果。类似地,横截面电场分布图的系统比较,磁场的时间衍生物的钻孔轮廓,定性地揭示了所提出的方法在更大深度下诱导导电和电阻靶的可检测的响应。在本研究中,与环源配置不同,水平方向上的地下磁场的时间导数显示出对电阻体的高灵敏度。此外,进行1-D反转以提供对钻孔数据的定量解释。使用偶尔型反转方案实现了表面和钻孔数据的1-D反转。合成和现场数据的结果表明,在浅层和深层中,分别反转表面或钻孔数据导致分辨率降低。因此,我们还将结果与表面和钻孔数据的倒置进行了比较,以便探讨分辨浅层和深层结构的关节反转的优点。

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