侵入岩,直流电阻率法,空间-波数混合域算法,电性特征,地球物理勘探 ," /> 侵入岩,直流电阻率法,空间-波数混合域算法,电性特征,地球物理勘探 ,"/> intrusive rock,direct current resistivity method,algorithm of space-wavenumber hybrid domain,electrical properties,geophysical exploration ,"/> <span class="cf0">Characteristics of Direct Current Response over Intrusive Rock </span><span class="cf0">Models</span>

Journal of Jilin University(Earth Science Edition) ›› 2025, Vol. 55 ›› Issue (4): 1321-1335.doi: 10. 13278/j.cnki.jjuese.20240114

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Characteristics of Direct Current Response over Intrusive Rock Models

Sun Xudong1, Ma Juju2, Ling Jiaxuan3, Yang Huajun1, Ma Qiang1, Li Kun4   

  1. 1. Gansu Coal Geology Bureau 146th Team, Pingliang 744000, Gansu, China

    2. Gansu Lvdong Longyuan Geological-Ecological Environment Research Institute Limited Liability Company, Pingliang 744000,

    Gansu, China

    3. School of Computer Science and Engineering, Guilin University of Aerospace Technology, Guilin 541004, Guangxi, China

    4. School of Geoscience and Technology, Southwest Petroleum University, Chengdu 610500, China

  • Received:2024-05-23 Online:2025-07-26 Published:2025-08-05
  • Supported by:

    the National Natural Science Foundation of China (42204133),the Natural Science Foundation of Guangxi (2025GXNSFBA069422), the Middle-Aged and Young Teachers’ Basic Ability Promotion Project of Guangxi (2024KY0800) and the GUAT Special Research Project on the Strategic Development of Distinctive Interdisciplinary Fields (TS2024452)

Abstract:

The direct current resistivity method, as one of the important methods in geophysical exploration, has played a significant role in various geological exploration fields. This paper conducts a study on the electrical response characteristics of intrusive rock models using a three-dimensional direct current numerical algorithm based on space-wavenumber hybrid domain. The total electric field normalization coefficient T3 is introduced, and the electric field response characteristics of pole-dipole array and dipole-dipole array configuration of non-mineralized and mineralized intrusive rock models are comparatively analyzed. Special consideration is given to the effects of isotropic and anisotropic mineralization zones, as well as the induced polarization effect, in order to reveal the response differences under different electrical conditions. The analysis results show that the total electric field normalization coefficient has a more pronounced response to the underground medium than electric field components. The T3 response anomaly detected by dipole-dipole array is superior to that of pole-dipole array, and different electrical mineralized zones exhibit significant differences in T3 response features. Compared to polarizability anisotropy, resistivity anisotropy has a more profound impact on the observation results. The response characteristics of the mineralized model are far more complex than those of the non-mineralized model, especially when the mineralized zone is electrically anisotropic, the observed T3 morphology of different electrical parameters is quite different.

Key words: intrusive rock')">

intrusive rock, direct current resistivity method, algorithm of space-wavenumber hybrid domain, electrical properties, geophysical exploration

CLC Number: 

  • P631.3
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