Finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media

Accurate numerical modeling tools are of practical importance for understanding of seismic wave propagation in reservoir rocks. 2D finite-difference (FD) poroelastic code is used for simulation of acoustic wave propagation through water saturated medium with regular distributed circular gas inclusio...

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Main Authors: Shulakova, V., Pervukhina, M., Muller, Tobias, Lebedev, Maxim, Gurevich, Boris
Other Authors: EAGE Publications
Format: Conference Paper
Published: EAGE 2009
Online Access:http://hdl.handle.net/20.500.11937/9679
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author Shulakova, V.
Pervukhina, M.
Muller, Tobias
Lebedev, Maxim
Gurevich, Boris
author2 EAGE Publications
author_facet EAGE Publications
Shulakova, V.
Pervukhina, M.
Muller, Tobias
Lebedev, Maxim
Gurevich, Boris
author_sort Shulakova, V.
building Curtin Institutional Repository
collection Online Access
description Accurate numerical modeling tools are of practical importance for understanding of seismic wave propagation in reservoir rocks. 2D finite-difference (FD) poroelastic code is used for simulation of acoustic wave propagation through water saturated medium with regular distributed circular gas inclusions. The results of the numerical simulations are validated with the newly derived theoretical solution for the same geometry of patches. Finally, the numerical results for a media with randomly distributed patches are used to verify the interpretation of the results of a laboratory experiment in which saturation and compressional velocity are simultaneously measured in a sandstone sample.
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institution Curtin University Malaysia
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last_indexed 2025-11-14T06:26:35Z
publishDate 2009
publisher EAGE
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spelling curtin-20.500.11937-96792017-10-02T02:27:28Z Finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media Shulakova, V. Pervukhina, M. Muller, Tobias Lebedev, Maxim Gurevich, Boris EAGE Publications Accurate numerical modeling tools are of practical importance for understanding of seismic wave propagation in reservoir rocks. 2D finite-difference (FD) poroelastic code is used for simulation of acoustic wave propagation through water saturated medium with regular distributed circular gas inclusions. The results of the numerical simulations are validated with the newly derived theoretical solution for the same geometry of patches. Finally, the numerical results for a media with randomly distributed patches are used to verify the interpretation of the results of a laboratory experiment in which saturation and compressional velocity are simultaneously measured in a sandstone sample. 2009 Conference Paper http://hdl.handle.net/20.500.11937/9679 EAGE fulltext
spellingShingle Shulakova, V.
Pervukhina, M.
Muller, Tobias
Lebedev, Maxim
Gurevich, Boris
Finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media
title Finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media
title_full Finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media
title_fullStr Finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media
title_full_unstemmed Finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media
title_short Finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media
title_sort finite-difference numerical experiments and laboratory testing of attenuation and dispersion in patchy-saturated media
url http://hdl.handle.net/20.500.11937/9679