3C laboratory ultrasound: A new method for measuring elastic anisotropy of rocks

We propose a new method for measuring velocities and polarizations of the compressional and shear waves. The method consists of measuring time dependent displacement of a particular point on the sample surface in three independent directions by a laser Doppler interferometer. The high accuracy of th...

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Main Authors: Lebedev, Maxim, Bona, Andrej, Pevzner, Roman, Gurevich, Boris
Other Authors: Society of Exploration Geophysics
Format: Conference Paper
Published: SEG 2010
Online Access:http://hdl.handle.net/20.500.11937/45988
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author Lebedev, Maxim
Bona, Andrej
Pevzner, Roman
Gurevich, Boris
author2 Society of Exploration Geophysics
author_facet Society of Exploration Geophysics
Lebedev, Maxim
Bona, Andrej
Pevzner, Roman
Gurevich, Boris
author_sort Lebedev, Maxim
building Curtin Institutional Repository
collection Online Access
description We propose a new method for measuring velocities and polarizations of the compressional and shear waves. The method consists of measuring time dependent displacement of a particular point on the sample surface in three independent directions by a laser Doppler interferometer. The high accuracy of these measurements makes the determination of the polarization straightforward, and thus the identification the type of the waves unambiguous. These measurements can be used to estimate the stiffness tensor of anisotropic rock samples.
first_indexed 2025-11-14T09:28:04Z
format Conference Paper
id curtin-20.500.11937-45988
institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T09:28:04Z
publishDate 2010
publisher SEG
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-459882017-09-13T16:03:55Z 3C laboratory ultrasound: A new method for measuring elastic anisotropy of rocks Lebedev, Maxim Bona, Andrej Pevzner, Roman Gurevich, Boris Society of Exploration Geophysics We propose a new method for measuring velocities and polarizations of the compressional and shear waves. The method consists of measuring time dependent displacement of a particular point on the sample surface in three independent directions by a laser Doppler interferometer. The high accuracy of these measurements makes the determination of the polarization straightforward, and thus the identification the type of the waves unambiguous. These measurements can be used to estimate the stiffness tensor of anisotropic rock samples. 2010 Conference Paper http://hdl.handle.net/20.500.11937/45988 10.1190/1.3513354 SEG fulltext
spellingShingle Lebedev, Maxim
Bona, Andrej
Pevzner, Roman
Gurevich, Boris
3C laboratory ultrasound: A new method for measuring elastic anisotropy of rocks
title 3C laboratory ultrasound: A new method for measuring elastic anisotropy of rocks
title_full 3C laboratory ultrasound: A new method for measuring elastic anisotropy of rocks
title_fullStr 3C laboratory ultrasound: A new method for measuring elastic anisotropy of rocks
title_full_unstemmed 3C laboratory ultrasound: A new method for measuring elastic anisotropy of rocks
title_short 3C laboratory ultrasound: A new method for measuring elastic anisotropy of rocks
title_sort 3c laboratory ultrasound: a new method for measuring elastic anisotropy of rocks
url http://hdl.handle.net/20.500.11937/45988