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dc.contributor.authorZhu, Zhenya
dc.contributor.authorCheng, C. H.
dc.contributor.authorToksoz, M. N.
dc.contributor.otherMassachusetts Institute of Technology. Earth Resources Laboratoryen_US
dc.date.accessioned2012-12-04T16:11:55Z
dc.date.available2012-12-04T16:11:55Z
dc.date.issued1993
dc.identifier.urihttp://hdl.handle.net/1721.1/75201
dc.description.abstractFlexural waves generated by a dipole source have been studied theoretically and used to estimate the shear parameters of a formation. The basic principles and main properties of flexural waves propagating in a borehole are reviewed in this paper. A mono/dipole transducer made of a PZT piezoelectric tube is used for laboratory experiments in borehole models. The radiation pattern of the dipole source is measured in a water tank. In order to simulate the hard and soft formations, measurements are performed in borehole models made of aluminum and lucite, respectively. Experimental results are in good agreement with the theoretical dispersion characteristics. Measurements are also performed with the transducers in an azimuthally anisotropic borehole model made of Phenolite XX-324. Both fast and slow flexural waves with different velocities are generated by a dipole source in the model. The flexural waves are related to the fast or slow shear waves in the anisotropic material. Experimental results show that the flexural wave splits into a fast and a slow component in an azimuthally anisotropic borehole; therefore, dipole acoustic well logging could be an effective means for estimating a formation's anisotropy.en_US
dc.description.sponsorshipMassachusetts Institute of Technology. Borehole Acoustics and Logging Consortiumen_US
dc.description.sponsorshipUnited States. Dept. of Energy (Grant DE-FG0286ER13636)en_US
dc.publisherMassachusetts Institute of Technology. Earth Resources Laboratoryen_US
dc.relation.ispartofseriesEarth Resources Laboratory Industry Consortia Annual Report;1993-04
dc.titlePropagation Of Flexural Waves In An Azimuthally Anisotropic Borehole Modelen_US
dc.typeTechnical Reporten_US
dc.contributor.mitauthorZhu, Zhenya
dc.contributor.mitauthorCheng, C. H.
dc.contributor.mitauthorToksoz, M. N.
dspace.orderedauthorsZhu, Zhenya; Cheng, C. H.; Toksoz, M. N.en_US


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