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瞬变电磁探水雷达研究
引用本文:叶英. 瞬变电磁探水雷达研究[J]. 工程地球物理学报, 2020, 0(2): 210-216
作者姓名:叶英
作者单位:北京市市政工程研究院;地下工程建设预报预警北京市重点实验室
基金项目:东天山复杂地质特长公路隧道建设关键工程技术研究与应用自治区重大科技专项(编号:2018A03003);隧道围岩精细分级与喷锚衬砌支护技术研究(编号:2018A03003-5)。
摘    要:隧道掌子面探水问题,是交通隧道、采矿业、地下空间开发行业一直未解决的难题。由于不同地质环境各种蓄水构造的复杂性,使得以地球物理方法为主的地质预报技术面临着挑战。地震反射法对构造敏感,电法对水敏感,但常规电法由于装置问题很难在隧道掌子面施展。地质雷达由于高频微波段穿透能力的局限性,使得在隧道掌子面探测深度有限。瞬变电磁法利用不接地回线,以其自身的方法优势已广泛应用于隧道掌子面的地质预报中。首次利用浅层瞬变电磁法原理、定源回线装置、全期视电阻率计算、雷达波谱图像处理等技术,研制了相应瞬变电磁探水雷达,并在隧道掌子面、地面岩溶探查方面进行工程应用,验证了浅层瞬变电磁法在地下水探查中的应用效果。

关 键 词:隧道  瞬变电磁雷达  地质预报  富水构造  断层

Research on Transient Electromagnetic Exploring Water Radar
Ye Ying. Research on Transient Electromagnetic Exploring Water Radar[J]. Chinese Journal of Engineering Geophysics, 2020, 0(2): 210-216
Authors:Ye Ying
Affiliation:(Beijing Municipal Engineering Research Institute,Beijing 100037,China;Beijing Key Laboratory of Underground Engineering Construction Prediction&Precaution,Beijing 100037,China)
Abstract:Water exploration in tunnel face is a problem that has not been solved in tunnel construction,mining industry and underground space development industry.Due to the complexity of various water storage structures in different geological environments,geological prediction technology based on geophysical methods is facing challenges.Seismic reflection method is sensitive to structure,and electrical method is sensitive to water.Due to the limitation of penetrating capability of high frequency microwave segment,the depth of GPR in the palm surface of tunnel is limited.TEM has been widely used in geological prediction of tunnel face by using ungrounded loop.This paper adopts shallow transient electromagnetic method,fixed source loop device,the whole period of apparent resistivity calculation and radar wave spectrum image processing technology,develops a corresponding transient electromagnetic exploring water radar.It is applied in the tunnel engineering and ground karst exploration and verified in the shallow groundwater.
Keywords:tunnel  transient electromagnetic radar  geology prediction  rich water structure  fault
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