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Hole geometry and anisotropic effects on tube-wave propagation: a quasi-static study

  • L. M.A. Nicoletis
  • , A. Bamberger
  • , J. A. Quiblier
  • , P. Joly
  • , M. Kern
  • IFP Energies nouvelles

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Tube-wave characteristics, namely velocity and polarization, are affected by borehole anomalies related to nonhydrostatic tectonic stress. The anomalies we consider are borehole ellipticity, azimuthal anisotropy as modeled by a rotated transversely isotropic medium, and borehole breakouts as modeled by local heterogeneities in elastic properties. The low-frequency tube-wave velocity is obtained by a variational approach to a plane-strain, static-equilibrium problem. We solve the problem with hole ellipticity analytically and the problem with azimuthal anisotropy numerically by a finite-element method. The results show that weak ellipticity has a negligible effect on the tube-wave velocity: a relative variation of 10 percent in the main diameters of the hole produces a perturbation of only 0.5 percent in the velocity. However, localized damage to the hole can reduce tubewave velocity significantly. -from Authors

langue originaleAnglais
Pages (de - à)167-175
Nombre de pages9
journalGeophysics
Volume55
Numéro de publication2
Les DOIs
étatPublié - 1 janv. 1990
Modification externeOui

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