Effects of magnetite on high-frequency ground-penetrating radar

Author:

Van Dam Remke L.1,Hendrickx Jan M. H.2,Cassidy Nigel J.3,North Ryan E.4,Dogan Mine1,Borchers Brian5

Affiliation:

1. Michigan State University, Department of Geological Sciences, East Lansing, Michigan, USA..

2. New Mexico Institute of Mining and Technology, Department of Earth and Environmental Science, Socorro, New Mexico, USA..

3. Keele University, School of Physical and Geographical Sciences, Staffordshire, UK..

4. United States Army Engineer Research and Development Center (ERDC), Vicksburg, Mississippi, USA..

5. New Mexico Institute of Mining and Technology, Department of Mathematics, Socorro, New Mexico, USA..

Abstract

Large concentrations of magnetite in sedimentary deposits and soils with igneous parent material have been reported to affect geophysical sensor performance. We have undertaken the first systematic experimental effort to understand the effects of magnetite for ground-penetrating radar (GPR) characterization of the shallow subsurface. Laboratory experiments were conducted to study how homogeneous magnetite-sand mixtures and magnetite concentrated in layers affect the propagation behavior (velocity, attenuation) of high-frequency GPR waves and the reflection characteristics of a buried target. Important observations were that magnetite had a strong effect on signal velocity and reflection, at magnitudes comparable to what has been observed in small-scale laboratory experiments that measured electromagnetic properties of magnetite-silica mixtures. Magnetite also altered signal attenuation and affected the reflection characteristics of buried targets. Our results indicated important implications for several fields, including land mine detection, Martian exploration, engineering, and moisture mapping using satellite remote sensing and radiometers.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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