3D forward modeling and response characteristics of low-resistivity overburden of the CFS-PML absorbing boundary for ground-well transient electromagnetic method

IF 11.7 1区 工程技术 Q1 MINING & MINERAL PROCESSING
Lijuan Zhao, Mingzhong Gao, Nengzhong Lei, Hongfei Duan, Weizhong Qiu, Zhaoying Chen
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Abstract

This study used the stable and convergent Dufort-Frankel method to differentially discretize the diffusion equation of the ground-well transient electromagnetic secondary field. The absorption boundary condition of complex frequency-shifted perfectly matched layer (CFS-PML) was used for truncation so that the low-frequency electromagnetic wave can be better absorbed at the model boundary. A typical three-dimensional (3D) homogeneous half-space model was established and a low-resistivity cube model was analyzed under the half-space condition. The response patterns and drivers of the low-resistivity cube model were discussed under the influence of a low-resistivity overburden. The absorption boundary conditions of CFS-PML significantly affected the low-frequency electromagnetic waves. For a low-resistivity cube around the borehole, its response curve exhibited a single-peak, and the extreme point of the curve corresponded to the center of the low-resistivity body. When the low-resistivity cube was directly below the borehole, the response curve showed three extreme values (two high and one low), with the low corresponding to the center of the low-resistivity body. The total field response of the low-resistivity overburden was stronger than that of the uniform half-space model due to the low-resistivity shielding effect of electromagnetic waves. When the receiving-transmitting distance gradually increased, the effect of the low-resistivity overburden was gradually weakened, and the response of the low-resistivity cube was strengthened. It was affected by the ratio of the overburden resistivity to the resistivity of the low-resistivity body.

用于地井瞬变电磁法的 CFS-PML 吸收边界低电阻率覆盖层的三维正演建模和响应特性
本文采用稳定收敛的Dufort-Frankel方法对井间瞬变电磁二次场扩散方程进行微分离散。利用复频移完美匹配层(CFS-PML)的吸收边界条件进行截断,使低频电磁波在模型边界处被更好地吸收。建立了典型的三维均匀半空间模型,分析了半空间条件下的低电阻率立方体模型。讨论了低阻覆盖层影响下低阻立方体模型的响应模式和驱动因素。CFS-PML的吸收边界条件对低频电磁波有显著影响。对于井周低阻立方体,其响应曲线呈现单峰,曲线极值点对应于低阻体的中心。当低阻体位于井正下方时,响应曲线呈现3个极值(2高1低),极值对应于低阻体的中心。由于电磁波的低阻屏蔽效应,低阻覆盖层的总场响应强于均匀半空间模式。随着收发射距离的逐渐增大,低阻覆盖层的影响逐渐减弱,低阻立方体的响应增强。它受覆岩电阻率与低阻体电阻率之比的影响。
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来源期刊
International Journal of Mining Science and Technology
International Journal of Mining Science and Technology Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
19.10
自引率
11.90%
发文量
2541
审稿时长
44 days
期刊介绍: The International Journal of Mining Science and Technology, founded in 1990 as the Journal of China University of Mining and Technology, is a monthly English-language journal. It publishes original research papers and high-quality reviews that explore the latest advancements in theories, methodologies, and applications within the realm of mining sciences and technologies. The journal serves as an international exchange forum for readers and authors worldwide involved in mining sciences and technologies. All papers undergo a peer-review process and meticulous editing by specialists and authorities, with the entire submission-to-publication process conducted electronically.
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