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dc.date.accessioned 2020-10-28T18:25:21Z
dc.date.available 2020-10-28T18:25:21Z
dc.date.issued 2016
dc.identifier.uri http://sedici.unlp.edu.ar/handle/10915/107894
dc.description.abstract We present a generalized effective poroelastic model for periodically layered media in the mesoscopic scale range, which accounts for both Biot’s global and interlayer wave-induced fluid flow, as well as for the anisotropy associated with the layering. Correspondingly, it correctly predicts the existence of the fast and slow P-waves as well as quasi and pure S-waves. The proposed analytical model is validated through comparisons of the P-wave and S-wave phase velocity dispersion and attenuation characteristics with those inferred from a one-dimensional numerical solution of Biot’s poroelastic equations of motion. We also compare our model with the classical mesoscopic model of White for a range of scenarios. The results demonstrate that accounting for both wave-induced fluid flow mechanisms is essential when Biot’s global flow prevails at frequencies that are comparable or smallerwith respect to those governing interlayer flow. This is likely to be the case in media of high permeability, such as, for example, unconsolidated sediments, clean sandstones, karstic carbonates, or fractured rocks. Conversely, when interlayer flow occurs at smaller frequencies with respect to Biot’s global flow, the predictions of this model are in agreement with White’s model, which is based on quasi-static poroelasticity. en
dc.format.extent 1135-1148 es
dc.language en es
dc.subject Rock physics es
dc.subject Mathematical formulation es
dc.subject Attenuation es
dc.subject Anisotropy es
dc.title A generalized effective anisotropic poroelastic model for periodically layered media accounting for both Biot’s global and interlayer flows en
dc.type Articulo es
sedici.identifier.other http://dx.doi.org/10.1111/1365-2478.12406 es
sedici.identifier.issn 0016-8025 es
sedici.creator.person Milani, Marco es
sedici.creator.person Monachesi, Leonardo Bruno es
sedici.creator.person Sabbione, Juan Ignacio es
sedici.creator.person Rubino, Jorge Germán es
sedici.creator.person Holliger, Klaus es
sedici.subject.materias Geofísica es
sedici.description.fulltext true es
mods.originInfo.place Facultad de Ciencias Astronómicas y Geofísicas es
sedici.subtype Articulo es
sedici.rights.license Creative Commons Attribution 4.0 International (CC BY 4.0)
sedici.rights.uri http://creativecommons.org/licenses/by/4.0/
sedici.description.peerReview peer-review es
sedici.relation.journalTitle Geophysical Prospecting es
sedici.relation.journalVolumeAndIssue vol. 64, no. 4 es


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Creative Commons Attribution 4.0 International (CC BY 4.0) Excepto donde se diga explícitamente, este item se publica bajo la siguiente licencia Creative Commons Attribution 4.0 International (CC BY 4.0)