Application of ultrasonic and seismic methods for a comprehensive seismic in situ characterization of rock salt

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Autore principale: Schuster, Kristof Marian
Natura: Recurso digital
Pubblicazione: Zenodo 2018
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author Schuster, Kristof Marian
author_facet Schuster, Kristof Marian
contents <p>Three Mini-Seismic Methods (interval velocity measurements, refraction tomography, and seismic transmission) were applied in situ in rock salt at the Gorleben site and the Morsleben repository. The study demonstrates that seismic parameters such as P- and S-wave velocities, dynamic elastic moduli, and Poisson’s ratio allow a detailed characterization of stratigraphic units, EDZ/EdZ features, and larger rock mass structures. The results show high consistency with expected reference values and highlight the potential of mini-seismic methods for high-resolution in situ investigations of rock salt.</p>
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publishDate 2018
publisher Zenodo
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spellingShingle Application of ultrasonic and seismic methods for a comprehensive seismic in situ characterization of rock salt
Schuster, Kristof Marian
rock salt; seismic methods; ultrasonic; EDZ; excavation damaged zone; interval velocity; refraction tomography; seismic transmission; Gorleben; Morsleben; in situ characterization
<p>Three Mini-Seismic Methods (interval velocity measurements, refraction tomography, and seismic transmission) were applied in situ in rock salt at the Gorleben site and the Morsleben repository. The study demonstrates that seismic parameters such as P- and S-wave velocities, dynamic elastic moduli, and Poisson’s ratio allow a detailed characterization of stratigraphic units, EDZ/EdZ features, and larger rock mass structures. The results show high consistency with expected reference values and highlight the potential of mini-seismic methods for high-resolution in situ investigations of rock salt.</p>
title Application of ultrasonic and seismic methods for a comprehensive seismic in situ characterization of rock salt
topic rock salt; seismic methods; ultrasonic; EDZ; excavation damaged zone; interval velocity; refraction tomography; seismic transmission; Gorleben; Morsleben; in situ characterization
url https://doi.org/10.5281/zenodo.20089365