地震地质 ›› 2022, Vol. 44 ›› Issue (3): 649-668.DOI: 10.3969/j.issn.0253-4967.2022.03.006
董泽义1)(), 汤吉1),*(), 赵国泽1), 陈小斌2), 崔腾发3), 韩冰1), 姜峰4), 王立凤1)
收稿日期:
2021-05-06
修回日期:
2021-09-28
出版日期:
2022-06-20
发布日期:
2022-08-02
通讯作者:
汤吉
作者简介:
董泽义, 男, 1984年生, 2015年于中国地震局地质研究所获固体地球物理专业博士学位, 助理研究员, 主要从事大地电磁深部结构探测研究, E-mail: dongzeyi@ies.ac.cn。
基金资助:
DONG Ze-yi1)(), TANG Ji1),*(), ZHAO Guo-ze1), CHEN Xiao-bin2), CUI Teng-fa3), HAN Bing1), JIANG Feng4), WANG Li-feng1)
Received:
2021-05-06
Revised:
2021-09-28
Online:
2022-06-20
Published:
2022-08-02
Contact:
TANG Ji
摘要:
开展极低频电磁(CSELF)台网区、 台站的地下背景电性结构探测对于发挥其在地震预测预报研究中的作用具有重要意义。文中在首都圈CSELF电磁台网的每个台站附近布设了一条短的宽频带大地电磁剖面, 共完成了60个测点的数据采集, 对数据进行了处理与分析。首先, 通过大地电磁一维反演获得每个台站和测点下方的电阻率结构; 然后, 利用二维反演技术获得每个台站沿剖面的地壳电性结构; 最后, 对整个台网区的台站数据进行三维反演, 获得台网区三维地壳电性结构。结果表明, 华北北部阴山-燕山造山带、 中部的太行山地区和东部的胶-辽地块的地壳电性结构主要表现为高阻特征, 华北平原和山西断陷区域表现为相对低阻; 太行山重力梯度带与郯庐断裂带两侧的电性结构差异明显, 表现为电性边界带; 台网区的电性结构特征与区域地质构造、 地震活动性特征具有明显的相关性。首都圈CSELF台网区地下电性结构探测为区域的孕震环境、 地震电磁异常信号的产生机理以及地震预测预报研究工作提供了重要的参考资料。
中图分类号:
董泽义, 汤吉, 赵国泽, 陈小斌, 崔腾发, 韩冰, 姜峰, 王立凤. 首都圈极低频电磁台网区地下电性结构探测[J]. 地震地质, 2022, 44(3): 649-668.
DONG Ze-yi, TANG Ji, ZHAO Guo-ze, CHEN Xiao-bin, CUI Teng-fa, HAN Bing, JIANG Feng, WANG Li-feng. PROBING THE SUBSURFACE ELECTRIC STRUCTURE FOR CSELF NETWORK IN CAPITAL CIRCLE REGION[J]. SEISMOLOGY AND GEOLOGY, 2022, 44(3): 649-668.
图 1 首都圈极低频电磁台网区的电性结构测量 a 中国大陆极低频电磁台网; b 首都圈CSELF台网区的地质构造简图; c 大同台结构测量测点分布
Fig. 1 Investigation of electrical resistivity structures beneath the CSELF network in the capital circle region.
图 2 大同台、 夏县台、 大连台和丰宁台沿剖面测点的视电阻率与阻抗相位曲线
Fig. 2 Apparent resistivity and phase curves for all sites along the MT profile at Datong, Xiaxian, Dalian and Fengning observational stations.
图 3 首都圈CSELF电磁台网区不同频率的视电阻率分布图 ρxy xy向视电阻率; ρyx yx向视电阻率; ρave xy与yx向视电阻率的几何平均
Fig. 3 Apparent resistivity maps at 100Hz and 0.01Hz of the CSELF network in the capital circle region.
图 8 大同台MT剖面的二维反演 a 不同光滑因子的L曲线; b 大同台沿MT剖面的地壳电性结构; c 二维反演数据与模型响应拟断面图。 ρObs观测视电阻率; ρCalc 模型响应电阻率; φObs 观测相位; φCalc 模型响应相位
Fig. 8 Two-diminsional inversion of MT profile at Datong station.
图 9 首都圈CSELF电磁台网区二维反演模型不同深度的电阻率切片
Fig. 9 Horizontal slices of 2-D electrical resistivity structure of the CSELF network in capital circle region at different depths.
图 10 首都圈CSELF电磁台网三维反演模型不同深度的切片
Fig. 10 Horizontal slices of 3-D electrical resistivity structure of the CSELF network in capital circle region at different depths.
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[13] | 赵凌强, 詹艳, 王庆良, 孙翔宇, 杨皓, 陈小斌. 1954年甘肃民勤7级地震区深部电性结构特征及地震构造环境研究[J]. 地震地质, 2018, 40(3): 552-565. |
[14] | 韩江涛, 王天琪, 刘文玉, 刘国兴, 韩松, 刘立家. 阿尔山火山群深部“拱桥式”岩浆系统及其稳定性分析[J]. 地震地质, 2018, 40(3): 590-610. |
[15] | 周耀明, 朱文斌, 陈正乐, 朱炳玉, 薛峰. 准噶尔盆地克-百断裂带火山岩分布特征的重磁资料解释[J]. 地震地质, 2018, 40(3): 641-655. |
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