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An analysis of karst exploration based on opposing coils transient electromagnetic method |
Jian-Ming YANG, Hong-Chang WANG, Chun SHA |
Sichuan Zhongshui Chengkanyuan Geophysical Exploration Co., Ltd., Chengdu 610072, China |
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Abstract The early quadratic field of the transient electromagnetic method is the response of shallow geological information. The self-induction electric field generated by a shut off of primary field is superimposed with the early secondary field, which causes the results that the detection result can't reflect the shallow stratum information and form a shallow blind area, and that the detection of early pure secondary field can fundamentally eliminate shallow blind spots. This paper first introduces the coil device of the opposing coils transient electromagnetic method, illustrates the method of the early secondary field acquisition, and meanwhile briefly describes the zero flux surface and the analysis of the regularity of induced voltage. Taking the karst exploration of highway slope of a hydropower station as the research background, the authors obtained the apparent resistivity information of strata of different depths, and delineated the spatial distribution of karst based on the analysis of the inversion results of the test data. It is proved that the opposing coils transient electromagnetic method can effectively avoid the impact of primary field shutdown on the secondary field, basically eliminates the shallow blind zone, and realizes the accurate exploration of the shallow stratum.
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Received: 07 July 2017
Published: 03 August 2018
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[1] |
李貅 . 瞬变电磁测深的理论与应用[M]. 西安: 陕西科学技术出版社, 2002.
|
[2] |
牛之琏 . 时间域电磁法原理[M] . 湖南: 中南大学出版社, 2007.
|
[3] |
张军, 李貅, 赵莹 . 瞬变电磁法在岩溶水勘查中的应用[J]. 工程地球物理学报, 2011,8(5):521-524.
|
[4] |
朱正国, 卿志 . 时域瞬变电磁法在裸露灰岩地区岩溶探测研究[J]. 铁道勘察, 2004,30(1):45-48.
|
[5] |
杨金凤, 庞炜, 王世杰 , 等. 瞬变电磁法在城市岩溶探测中的应用[J]. 工程勘察, 2014,42(12):88-93.
|
[6] |
陈魁奎, 王心义 . 瞬变电磁法探测盲区深度减少和探测深度增加技术[J]. 河南理工大学学报:自然科学版, 2016,35(6):796-801.
|
[7] |
于生宝, 王忠, 嵇艳鞠 , 等. 瞬变电磁法浅层探测技术[J]. 电波科学学报, 2006,21(2):284-287.
|
[8] |
秦良, 朱国维, 张庆朝 , 等. 瞬变电磁法在井巷掘进超前预报中的应用[J].勘察科学技术, 2016(4):58-61.
|
[9] |
嵇艳鞠, 林君, 于生宝 , 等. ATTEM系统中电流关断期间瞬变电磁场响应求解的研究[J]. 地球物理学报, 2006,49(6):1884-1890.
|
[10] |
雷枫 . 瞬变电磁早期信号提取技术研究[D]. 徐州:中国矿业大学, 2014.
|
[11] |
周楠楠, 薛国强, 苏艳萍 . 大回线源瞬变电磁接收装置的改进[J]. 物探与化探, 2012,36(1):89-93.
|
[12] |
田卫东 . 瞬变电磁法中大电流小中心回线与大定源回线两种观测方式的对比[J]. 物探与化探, 2015,39(3):558-561.
|
[13] |
谢石文, 杨海燕, 刘少光 , 等. 瞬变电磁法同一回线和“8”字形回线对比研究[J]. 地球物理学进展, 2015,30(3):1354-1360.
|
[14] |
席振铢, 龙霞, 周胜 , 等. 基于等值反磁通原理的浅层瞬变电磁法[J]. 地球物理学报, 2016,59(9):3428-3435.
|
[15] |
王银, 席振铢, 蒋欢 , 等. 等值反磁通瞬变电磁法在探测岩溶病害中的应用[J]. 物探与化探, 2017,41(2):360-363.
|
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