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Fine analysis on advanced detection of transient electromagnetic method 被引量:1

Fine analysis on advanced detection of transient electromagnetic method
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摘要 Fault fracture zones and water-bearing bodies in front of the driving head are the main disasters in mine laneways,thus it is important to perform their advanced detection and prediction in advance in order to provide reliable technical support for the excavation.Based on the electromagnetic induction theory,we analyzed the characteristics of primary and secondary fields with a positive and negative wave form of current,proposed the fine processing of the advanced detection with variation rate of apparent resistivity and introduced in detail the computational formulae and procedures.The result of physical simulation experiments illustrate that the tectonic interface of modules can be judged by first-order rate of apparent resistivity with a boundary error of 5%,and the position of water body determined by the fine analysis method agrees well with the result of borehole drilling.This shows that in terms of distinguishing structure and aqueous anomalies,the first-order rate of apparent resistivity is more sensitive than the secondorder rate of apparent resistivity.However,some remaining problems are suggested for future solutions. Fault fracture zones and water-bearing bodies in front of the driving head are the main disasters in mine laneways,thus it is important to perform their advanced detection and prediction in advance in order to provide reliable technical support for the excavation.Based on the electromagnetic induction theory,we analyzed the characteristics of primary and secondary fields with a positive and negative wave form of current,proposed the fine processing of the advanced detection with variation rate of apparent resistivity and introduced in detail the computational formulae and procedures.The result of physical simulation experiments illustrate that the tectonic interface of modules can be judged by first-order rate of apparent resistivity with a boundary error of 5%,and the position of water body determined by the fine analysis method agrees well with the result of borehole drilling.This shows that in terms of distinguishing structure and aqueous anomalies,the first-order rate of apparent resistivity is more sensitive than the secondorder rate of apparent resistivity.However,some remaining problems are suggested for future solutions.
出处 《International Journal of Mining Science and Technology》 SCIE EI 2012年第5期669-673,共5页 矿业科学技术学报(英文版)
基金 supports for this work,provided by the Natural Science Foundation of Jiangsu Province (No. BK2009095) the National Natural Science Foundation of China (No. 51004102) the National Science & Technology Support Project of the 11th Five-Year Plan of China (No. 2007Bak24B03) the State Basic Research and Development Program of China (No. 2007CB209400)
关键词 Mine laneway Advanced detection Fine processing First-order rate 瞬变电磁法 精细分析 检测 视电阻率 电磁感应原理 物理模拟实验 断层破碎带 矿井巷道
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