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HERO ID
6393165
Reference Type
Journal Article
Title
tTEM - A towed transient electromagnetic system for detailed 3D imaging of the top 70 m of the subsurface
Author(s)
Auken, E; Foged, N; Larsen, JJ; Lassen, KVT; Maurya, PK; Dath, SM; Eiskjaer, TT
Year
2019
Is Peer Reviewed?
Yes
Journal
Geophysics
ISSN:
0016-8033
Volume
84
Issue
1
Page Numbers
E13-E22
DOI
10.1190/GEO2018-0355.1
Web of Science Id
WOS:000457601800050
Abstract
There is a growing need for detailed investigation of the top 30-50 m of the subsurface, which is critical for infrastructure, water supply, aquifer storage and recovery, farming, waste deposits, and construction. Existing geophysical methods are capable of imaging this zone; however, they have limited efficiency when it comes to creating full 3D images with high resolution over dozens to hundreds of hectares. We have developed a new and highly efficient towed transient electromagnetic (tTEM) system, which is capable of imaging the subsurface up to depth of 70 m at a high resolution, horizontally and vertically. Towed by an all-terrain vehicle, the system uses a 2 x 4 m transmitter coil and has a z-component receiver placed at 9 m offset from the transmitter. The tTEM uses dual transmitter moment (low and high moment) measurement sequence to obtain the early and late time gates corresponding to shallow and deep information about the subsurface layers. The first bias-free gate is as early as 4 mu s from beginning of the ramp (1.4 mu s after end of ramp). Data are processed and inverted using methods directly adopted from airborne electromagnetics. The system has been successfully used in Denmark for various purposes, e.g., mapping raw materials, investigating contaminated sites, and assessing aquifer vulnerability. We have also used the tTEM system in the Central Valley of California (United States) for locating artificial recharge sites and in the Mississippi Delta region, to map complex subsurface geology in great detail for building hydrogeologic models.
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