Developing a low-cost frequency-domain electromagnetic induction instrument
-
Published:2022-08-05
Issue:2
Volume:11
Page:279-291
-
ISSN:2193-0864
-
Container-title:Geoscientific Instrumentation, Methods and Data Systems
-
language:en
-
Short-container-title:Geosci. Instrum. Method. Data Syst.
Author:
Wilson GavinORCID, Conrad Jacob, Anderson John, Swidinsky Andrei, Shragge Jeffrey
Abstract
Abstract. Recent advancements and the widespread availability of low-cost microcontrollers and electronic components have created new opportunities for developing and using low-cost, open-source instrumentation for near-surface geophysical investigations. Geophysical methods that do not require ground contact, such as frequency-domain electromagnetics, allow one or two users to quickly acquire significant amounts of ground resistivity data in a cost-effective manner. The Colorado School of Mines electromagnetic system (CSM-EM) is a proof-of-concept instrument capable of sensing conductive objects in near-surface environments, and is similar in concept to commercial-grade equipment while costing under USD 400 to build. We tested the functionality of the CSM-EM system in a controlled laboratory setting during the design phase and validated it over a conductive target in an outdoor environment. The transmitter antenna can generate a current of over 2.5 A, and emit signals that are detectable by a receiver antenna at offsets of up to 25 m. The system requires minor refitting to change the functioning frequency, and has been operationally validated at 0.4 and 1.6 kHz. The receiver signal can be measured by off-the-shelf digital multimeters. Future directions will focus on improving the electronic and mechanical stability of the CSM-EM with the goal of using acquired data to make quantitative measurements of subsurface resistivity.
Publisher
Copernicus GmbH
Subject
Atmospheric Science,Geology,Oceanography
Reference20 articles.
1. Ahmad, M. N., Iqbal, F., Maqbool, S., and Arshad, M. B.: Low-Cost Resistivity
Meter for Groundwater Exploration Using High Voltage Experimentations,
Int. J. Econ. Environ. Geol., 10, 35–39,
https://doi.org/10.46660/ijeeg.vol10.iss3.2019.306, 2019. a 2. Alexander, C. and Sadiku, M.: Fundamentals of Electric Circuits, McGraw-Hill
Higher Education, Boston,
McGraw-Hill Higher Education, ISBN 10 1260226409,
ISBN 13 9781260226409,
2007. a, b, c 3. analogRead function: Analogread, Arduino IDE Reference,
https://www.arduino.cc/reference/en/language/functions/analog-io/analogread/, last access: 15 January 2022. a 4. Boaga, J.: The use of FDEM in hydrogeophysics: A review, J. Appl.
Geophys., 139, 36–46, https://doi.org/10.1016/j.jappgeo.2017.02.011,
2017. a 5. Clark, J. A., Page, R. T., Franklin, R., Miller, N. M., and Morken, M. O.:
Appropriate geophysics technology: Inexpensive instruments for water
exploration at a local level in developing nations, Geol. Soc. Am., 520, 171–181,
https://doi.org/10.1130/2016.2520(16), 2016. a
|
|