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三维随机断裂带的航空时域电磁响应数值模拟

本站小编 Free考研考试/2022-01-03

关珊珊1,2,,
殷长春3,
嵇艳鞠1,2,,,
黎东升1,2,
耿毅男2
1. 吉林大学地球信息探测仪器教育部重点实验室, 长春 130026
2. 吉林大学仪器科学与电气工程学院, 长春 130026
3. 吉林大学地球探测科学与技术学院, 长春 130026

基金项目: 国家自然科学基金(41604084,41674109),吉林省优秀青年人才基金(20170520104JH)联合资助


详细信息
作者简介: 关珊珊, 女, 1982年生, 博士, 讲师, 主要从事电磁勘探理论方法研究.E-mail:guanshanshan@jlu.edu.cn
通讯作者: 嵇艳鞠, 女, 1972年生, 教授, 博士生导师, 主要从事时间域电磁法理论研究及应用技术.Email:jiyj@jlu.edu.cn
中图分类号: P631

收稿日期:2017-12-05
修回日期:2018-06-08
上线日期:2018-11-05



FTEM modeling of 3D random fracture based on FDTD

GUAN ShanShan1,2,,
YIN ChangChun3,
JI YanJu1,2,,,
LI DongSheng1,2,
GENG YiNan2
1. Key Laboratory of Geo-Exploration Instrumentation, Ministry of Education, Changchun 130026, China
2. College of Instrumentation and Electrical Engineering, Jilin University, Changchun 130026, China
3. College of Geo-Exploration Science and Technology, Jilin University, Changchun 130026, China


More Information
Corresponding author: JI YanJu,E-mail:jiyj@jlu.edu.cn
MSC: P631

--> Received Date: 05 December 2017
Revised Date: 08 June 2018
Available Online: 05 November 2018


摘要
传统的均匀分布异常体模型,不能准确描述地下介质的不规则性变化,采用随机介质进行替代,将使电导率这一物性参数更加接近于实际的电导率分布.本文结合地质结构中断裂带特征,采用Von Kármán函数建立三维随机介质模型,通过讨论Hurst指数与自相关长度对三维随机电导率模型建模产生的影响,进行参数优化建立所需的随机介质模型.利用一维傅里叶变换建立三维随机变化的条状断裂带异常体,三维傅里叶变换建立三维随机变化的背景围岩,准确地表征了油气藏断裂带特征.基于时域有限差分方法,实现了磁源激励下的三维随机介质航空时域电磁响应数值模拟.采用均匀半空间模型验证了数值模拟的正确性,分析了随机断裂带与均匀断裂带的电磁响应特征,结果表明随机断裂带可以准确描述地下介质的分布特征,而且与断裂带垂直方向的电磁响应特征清晰地描述了断裂带的倾向、走向与位置,为断裂带结构探测提供了理论依据和技术指导,三维随机断裂带模拟方法同样适用于其它三维随机介质的数值模拟.
三维随机断裂带/
自相关长度/
Hurst指数/
傅里叶变换/
时域有限差分

Homogeneous abnormal body model could not accurately describe irregular change of conductivity underground. The replacement of abnormal body model by random medium makes the conductivity closer to the actual conductivity distribution. Considering the characteristics of fracture in the real geological structure, we used Von Kármán function to establish 3D random fracture model, and improved it through parameter optimization in the discussion of Hurst number and autocorrelation length. We modeled streak fracture by using 1D Fourier transform and background rock by 3D Fourier in order to describe the fracture characteristics of hydrocarbon reservoir. FTEM modeling with loop sources of 3D random fracture was realized based on FDTD. The numerical integration method was used for a homogeneous half-space to verify the validity of our algorithm on Fixed-wing Time-Domain Electromagnetic. We analyzed the electromagnetic response characteristics of random fracture and homogeneous fracture. The results showed that fracture model could precisely describe the distribution features of underground medium. Trend, inclination and position of fracture could be more clearly described by perpendicular electromagnetic response to fracture, which provided theoretical guidance for structure detection of random fracture. This method can be applied to other numerical simulation methods similarly.
3D random fracture/
Autocorrelation length/
Hurst number/
Fourier transformation/
FDTD(Finite-Difference Time-Domain)



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