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Geoscience ›› 2025, Vol. 39 ›› Issue (02): 514-522.DOI: 10.19657/j.geoscience.1000-8527.2025.010

• Monitoring, Modeling and Assessment of Supergene Resources • Previous Articles    

Research on Mobile Ultrasonic Rapid Electromagnetic Exploration Technology

RUAN Hongyu1,2(), WANG Meng1,2, LIN Zucan1,2, ZHANG Xiyuan1,2, WANG Xinchang1,2, ZHOU Keyu1,2, ZHANG Hui1,2, ZHANG Kuiyuan1,2, ZHANG Rongbo1,2, WANG Yongqing1,2, ZHANG Qisheng1,2()   

  1. 1. Key Laboratory of Intraplate Volcanoes and Earthquakes (China University of Geosciences(Beijing)), Ministry of Education, Beijing 100083, China
    2. School of Geophysics and Information Technology, China University of Geosciences(Beijing), Beijing 100083, China
  • Online:2025-04-10 Published:2025-05-08
  • Contact: ZHANG Qisheng

Abstract:

The controlled source radio magnetotelluric method (CSRMT) is an innovative frequency-domain electromagnetic sounding technique designed for near-surface exploration.Building upon the traditional Magnetotelluric (MT) method, CSRMT employs an artificial transmitter source and measures various components of the electromagnetic field at a distance to infer subsurface structures.This paper introduces a mobile ultra-high-frequency rapid electromagnetic exploration technology based on CSRMT.This technology leverages existing artificial field sources, such as AM signals from radio broadcast stations, very low frequency (VLF) electromagnetic signals from naval communication stations, and electromagnetic signals from national time service centers, to conduct electromagnetic surveys.By equipping a vehicle with an ultra-high-frequency controlled-source electromagnetic receiver, mobile exploration can be achieved without on-site deployment of artificial field sources, as required in traditional Controlled Source Magnetotellurics (CSMT).This significantly enhances exploration efficiency and reduces the costs associated with deploying and maintaining transmitters.The mobile ultra-high-frequency controlled-source electromagnetic receiver developed for this technology features a bandwidth range of 1 Hz to 600 kHz, a sampling rate of up to 2.5 MHz, a dynamic range of 138 dB, and an apparent resistivity measurement accuracy better than 3%.

Key words: CSRMT, electromagnetic receiver, FPGA, apparent resistivity

CLC Number: