Marchenko inversion of gpr data for a 1d dissipative medium

Journal Article (2021)
Author(s)

Bingkun Yang (TU Delft - Applied Geophysics and Petrophysics)

E. Slob (TU Delft - Applied Geophysics and Petrophysics)

Research Group
Applied Geophysics and Petrophysics
Copyright
© 2021 B. Yang, E.C. Slob
DOI related publication
https://doi.org/10.2528/PIERM21020901
More Info
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Publication Year
2021
Language
English
Copyright
© 2021 B. Yang, E.C. Slob
Research Group
Applied Geophysics and Petrophysics
Volume number
102
Pages (from-to)
65-79
Reuse Rights

Other than for strictly personal use, it is not permitted to download, forward or distribute the text or part of it, without the consent of the author(s) and/or copyright holder(s), unless the work is under an open content license such as Creative Commons.

Abstract

Radar data collected on two sides of a horizontally dissipative layered medium are required to invert for the medium parameters. The two-sided reflection and transmission responses are reduced to two single-sided reflection responses. One is the measured dissipative medium response, and the other is the reflection response of the corresponding effectual medium, which has negative dissipation. Marchenko-type equations are solved using these two reflection responses. The obtained focusing functions in the dissipative and effectual media are used to invert for the permittivity and the permeability under the assumption of weak dissipation in reflection. Once these parameters are known, the travel times are used to estimate the layer thicknesses. Finally, the focusing functions are used to estimate the conductivity in each layer. The method does not require any model information and runs as a fully automated process. A numerical example shows that the method works well for a horizontally dissipative layered medium. Statistical analysis for several noise models shows that the method is robust at least up to 40 dB additive and multiplicative white noise.

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