3D pole-pole responses of buried anisotropic targets and various anisotropic backgrounds in direct-current resistivity survey

IF 1.6 3区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Journal of Geophysics and Engineering Pub Date : 2023-04-18 DOI:10.1093/jge/gxad030
Fengqun Ma, H. Tan, Wenxin Kong, Depeng Zhu
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Abstract

Many rocks often have the electrical anisotropy property that produces quite different responses from the electrical isotropic rocks. We applied an advanced modeling method to calculate the apparent resistivity responses over an anisotropic target in a homogenous isotropic backgound and an isotropic target embedded in different anisotropic host rocks. We demonstrated comprehensive modeling experiments to characterize the responses of surface pole-pole surveys to the buried targets in different geological backgrounds, which vary in the principal resistivities and Euler angles of the targets or the host rocks. Our modeling results show that: (1) the location of current injection controls the apparent resistivity images in value and shape; (2) almost circle-contours or more or less elongated contours appear in the apparent resistivity images for the anisotropic targets; (3) the isotropic target embedded in the anisotropic host rock generates some radial patterns from the current injection point; (4) the anisotropy strike angles can be obtained from the symmetry axis of the apparent resistivity contours;.(5) multiple locations of current injections throughout the detection region are necessary for the surface pole-pole survey to avoid misleading data interpretation.
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直流电阻率测量中埋藏各向异性目标与各向异性背景的三维极-极响应
许多岩石往往具有电性各向异性,从而产生与电性各向同性岩石完全不同的响应。采用先进的建模方法,计算了均匀各向异性背景下各向异性目标和嵌入不同各向异性围岩中的各向异性目标的视电阻率响应。在不同地质背景下,地表极-极测量对目标物或寄主岩石的主电阻率和欧拉角变化的响应进行了综合模拟实验。模拟结果表明:(1)注入电流的位置在数值和形状上控制视电阻率图像;(2)各向异性目标视电阻率图像呈现近似圆形轮廓或或多或少拉长轮廓;(3)嵌入各向异性宿主岩中的各向同性靶体从当前注入点开始产生一定的径向分布;(4)各向异性走向角可以从视电阻率等值线的对称轴上得到;(5)地表极极测量需要在整个探测区域的多个位置注入电流,以避免数据解释的误导。
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来源期刊
Journal of Geophysics and Engineering
Journal of Geophysics and Engineering 工程技术-地球化学与地球物理
CiteScore
2.50
自引率
21.40%
发文量
87
审稿时长
4 months
期刊介绍: Journal of Geophysics and Engineering aims to promote research and developments in geophysics and related areas of engineering. It has a predominantly applied science and engineering focus, but solicits and accepts high-quality contributions in all earth-physics disciplines, including geodynamics, natural and controlled-source seismology, oil, gas and mineral exploration, petrophysics and reservoir geophysics. The journal covers those aspects of engineering that are closely related to geophysics, or on the targets and problems that geophysics addresses. Typically, this is engineering focused on the subsurface, particularly petroleum engineering, rock mechanics, geophysical software engineering, drilling technology, remote sensing, instrumentation and sensor design.
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