Application of Grounded Electrical Source Airborne Transient Electromagnetic (GREATEM) System in Goaf Water Detection

Author:

Li Dongsheng12,Tian Zhongbin34,Ma Yulong4,Gu Jiayue1,Ji Yanju1,Li Suyi1

Affiliation:

1. College of Instrumentation and Electrical Engineering, Jilin University, Changchun 130026, China

2. National Geophysical Exploration Equipment Engineering Research Center, Jilin University, Changchun 130026, China

3. School of Geosciences and Info-Physics, Central South University, Changsha 410083, China

4. Shanxi Coal Geology Geophysical Surveying Exploration Institute, Jinzhong 030600, China

Abstract

Since goaf water can cause water inrush, collapse or other severe geological hazards in coal mining, its detection has become a significant issue. As the grounded electrical source airborne transient electromagnetic (GREATEM) system can provide considerable prospecting depth, lateral resolution, and high detection efficiency, the method may be suitable for goaf water detection. To verify the feasibility, a field electromagnetic survey over Qinshui coal mine (Shanxi province, China) was conducted, and the system was used to detect the geoelectric characteristics of goaf water. After data acquisition, data processing, and apparent resistivity calculation, the resistivity profile of survey area is clearly presented, which is consistent with the information provided by Shanxi Coal Geology Geophysical Surveying Exploration Institute, China. The result shows that the application of GREATEM system is an effective technique for resistivity detection of goaf water, and can reduce the risks in coal mining.

Publisher

Environmental and Engineering Geophysical Society

Subject

Geophysics,Geotechnical Engineering and Engineering Geology,Environmental Engineering

Reference31 articles.

1. Properties determining choice of mother wavelet

2. Three-dimensional resistivity characterization of a coastal area: Application of Grounded Electrical-Source Airborne Transient Electromagnetic (GREATEM) survey data from Kujukuri Beach, Japan

3. Three-dimensional resistivity modelling of grounded electrical-source airborne transient electromagnetic (GREATEM) survey data from the Nojima Fault, Awaji Island, south-east Japan

4. Allah, S.A. and Mogi, T. 2016, Three-dimensional resistivity modelling of GREATEM survey data from Ontake Volcano, Northwest Japan: Earth, Planets and Space, 2016, 68–76.

5. Bouchedda, A. Chouteau, M. Keating, P. and Smith, R. 2010, Sferics noise reduction in time-domain electromagnetic systems: application to MegaTEMIIsignal enhancement: Exploration Geophysics, 41, 225–239.

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