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基于滇南密集地磁阵列的地下电性结构研究

Research on Subsurface Electrical Structure Based on a Dense Geomagnetic Array in Southern Yunnan.

作者信息

Shen Xiaoyu, Cao Yujia

机构信息

School of Integrated Circuits and Communications, Suzhou Vocational Institute of Industrial Technology, 1 Zhineng Avenue, Suzhou International Education Park, Wuzhong Avenue, Suzhou 215104, China.

Institute of Geophysics, China Earthquake Administration, No. 5 Minzudaxue Nanlu, Haidian District, Beijing 100081, China.

出版信息

Sensors (Basel). 2024 Sep 26;24(19):6221. doi: 10.3390/s24196221.

Abstract

The electrical resistivity of subsurface rocks is one of the important sensitive parameters characterizing the internal physics of the Earth. Currently, research on subsurface electrical structures using geomagnetic sounding methods primarily focuses on two approaches: the first is based on observations from a few geomagnetic stations, which have low spatial resolution and cannot effectively describe the distribution of anomalies; the second is based on mobile geomagnetic observations, which have low temporal resolution and cannot promptly reflect anomalies. To address these issues, this study deployed a dense geomagnetic array for long-term observation in the southern segment of the Xiaojiang Fault Zone in the Yuxi area of southern Yunnan. This setup aims to promptly capture seismic magnetic anomalies, providing more data support and fundamental information for short-term earthquake prediction. Based on the long-term observation data from the dense array, the study of the subsurface electrical structure is carried out. The results indicate that during the observation period, which was seismically quiet, the regional subsurface electrical structure remained stable. A large-scale subsurface low-resistivity body was observed in the region, and the electrical structures at the two ends of the southern segment of the Xiaojiang Fault Zone were found to be completely different.

摘要

地下岩石的电阻率是表征地球内部物理性质的重要敏感参数之一。目前,利用地磁探测方法研究地下电性结构主要集中在两种途径:一是基于少数地磁台站的观测,空间分辨率低,无法有效描述异常分布;二是基于流动地磁观测,时间分辨率低,不能及时反映异常。为解决这些问题,本研究在云南南部玉溪地区小江断裂带南段布设了密集地磁台阵进行长期观测。此举旨在及时捕捉地震磁异常,为短期地震预报提供更多数据支持和基础信息。基于密集台阵的长期观测数据,开展了地下电性结构研究。结果表明,在地震平静的观测期内,区域地下电性结构保持稳定。在该区域观测到一个大规模的地下低阻体,且小江断裂带南段两端的电性结构差异明显。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8884/11478941/492d5930fd55/sensors-24-06221-g001.jpg

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