Andrey Bakulin

Virtual Source

Anisotropy and stress

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Tube waves

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Books by Andrey Bakulin (Андрей Бакулин)

 

[1]

A. Bakulin, V. Troyan, and V. Bakulin. Acoustoelasticity of rocks. St. Petersburg Univ. Press (in Russian), 2000.
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[2]

A. Bakulin and L. Molotkov. Effective models of fractured and porous media. St. Petersburg Univ. Press (in Russian), 1998.
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Refereed Journal Articles by Andrey Bakulin (Андрей Бакулин)

[1]

A. Bakulin, M. Woodward, D. Nichols, K. Osypov, and O. Zdraveva. Localized anisotropic tomography with well information in VTI media. Geophysics, 75:D37-D45, 2010.
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[2]

A. Bakulin, M. Woodward, D. Nichols, K. Osypov, and O. Zdraveva. Building tilted transversely isotropic depth models using localized anisotropic tomography with well information. Geophysics, 75:D27-D36, 2010.
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[3]

F. Karpfinger, B. Gurevich, H.-P. Valero, A. Bakulin, and B. Sinha. Tube wave signatures in cylindrically layered poroelastic media computed with spectral method. Geophysical Journal International, no. doi: 10.1111/j.1365-246X.2010.04773.x, 2010.
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[4]

R. F. Fuck, A. Bakulin, and I. Tsvankin. Theory of traveltime shifts around compacting reservoirs: 3D solutions for heterogeneous anisotropic media. Geophysics, 74:D25-36, 2009.
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[5]

J. van der Neut and A. Bakulin. Estimating and correcting the amplitude radiation pattern of a Virtual Source. Geophysics, 74:SI27–SI36, 2009.
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[6]

A. Bakulin and A. Mateeva. Estimating interval shear-wave splitting from multicomponent Virtual Shear Checkshots. Geophysics, 73 (5):A39-A40, 2008.
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[7]

A. Bakulin and V. Korneev. Acoustic signatures of cross-flow behind casing in commingled reservoirs: a case study from Teapot Dome. Geophysics, 73(4):E145-152, 2008.
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[8]

A. Bakulin, A. Sidorov, B. Kashtan, and M. Jaaskelainen. Real-time completion monitoring with acoustic waves. Geophysics, 73:E15-E33, 2008.
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[9]

A. Bakulin, A. Sidorov, B. Kashtan, and M. Jaaskelainen. Real-time completion monitoring estimates production impairment with acoustics waves. Offshore Technology Conference, OTC 19213, 2008.
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[10]

A. Bakulin, A. Sidorov, B. Kashtan, and M. Jaaskelainen. Acoustic Surveillance of Production Impairment with Real-Time Completion Monitoring. SPE 112301-PP, 2008.
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[11]

A. Bakulin, A. Sidorov, B. Kashtan, and M. Jaaskelainen. Downhole acoustic surveillance of deepwater wells. The Leading Edge, 27 (5):518-531, 2008.
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[12]

F. Karpfinger, B. Gurevich, and A. Bakulin. Modeling of wave dispersion along cylindrical structures using the spectral method. Journal of Acoustical Society of America, 124:859-865, 2008.
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[13]

A. Sidorov, A. Bakulin, B. Kashtan, S. Ziatdinov, and D. Alexandrov. Low-frequency symmetric waves in fluid-filled boreholes and pipes with radial layering. Geophysical Prospecting, 57:863–882, 2008.
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[14]

R. Calvert and A. Bakulin. New 4D seismic monitoring techniques as enablers for Smart Fields. SPE 108207-PP, 2007.
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[15]

A. Bakulin, A. Mateeva, K. Mehta, P. Jorgensen, J. Ferrandis, I. Sinha Herhold, and J Lopez. Virtual Source applications to imaging and reservoir monitoring. The Leading Edge, 26 (6):732-741, 2007.
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[16]

K. Mehta, A. Bakulin, J. Sheiman, R. Calvert, and R. Sneider. Improving the virtual source method by wave-field separation. Geophysics, 72:V79-V86, 2007.
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[17]

A. Bakulin, A. Mateeva, R. Calvert, P. Jorgensen, and J. Lopez. Virtual shear source makes shear waves with airguns. Geophysics, 72:A7-A11, 2007.
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[18]

A. Mateeva, A. Bakulin, P. Jorgensen, and J. Lopez. Accurate estimation of subsalt velocities using Virtual Checkshots. Offshore Technology Conference, OTC 17869, 2006.
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[19]

A. Bakulin and R. Calvert. The Virtual Source method: theory and case study. Geophysics, 71:SI139-SI150, 2006.
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[20]

V. Korneev and A. Bakulin. On the fundamentals of the Virtual Source method. Geophysics, 71:A13-A17, 2006.
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[21]

B. Sinha, T. Bratton, J. Cryer, S. Nieting, G. Ugueto, A. Bakulin, and M. Hauser. Near-wellbore alteration and formation stress parameters using borehole sonic data. SPE 95841, 2005.
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[22]

R. Prioul, A. Bakulin, and V. Bakulin. Nonlinear rock physics model for estimation of 3D subsurface stress in anisotropic formations: Theory and laboratory verification. Geophysics, 69:415-425, 2004.
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[23]

A. Bakulin. Intrinsic and layer-induced vertical transverse isotropy. Geophysics, 68:1708-1713, 2003.
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[24]

A. Bakulin and V. Grechka. Effective anisotropy of layered media. Geophysics, 68:1817-1821, 2003.
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[25]

D. Sarkar, A. Bakulin, and R. L. Kranz. Anisotropic inversion of seismic data for stressed media: Theory and a physical modeling study on Berea sandstone. Geophysics, 68:690-704, 2003.
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[26]

V. Grechka, A. Bakulin, and I. Tsvankin. Seismic characterization of vertical fractures described as general linear-slip interfaces. Geophysical Prospecting, 51:117-129, 2003.
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[27]

A. Bakulin, V. Grechka, and I. Tsvankin. Seismic inversion for the parameters of two orthogonal fracture sets in a VTI background medium. Geophysics, 67:292-299, 2002.
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[28]

V. Grechka, I. Tsvankin, A. Bakulin, J. O. Hansen, and C. Signer. Joint inversion of PP and PS reflection data for VTI media: A North Sea case study. Geophysics, 67:1382-1395, 2002.
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[29]

V. Grechka, I. Tsvankin, A. Bakulin, C. Signer, and J.O. Hansen. Anisotropic inversion and imaging of PP and PS reflection data in the North Sea. The Leading Edge, 21:90-97, 2002.
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[30]

L. A. Molotkov and A. V. Bakulin. An effective media model for alternating layers of fluids and solids: A special case of the Biot model. In in J. Hood, editor, Advances in anisotropy: Selected theory, modeling and case studies, pages 239-254. Society of Exploration Geophysics, 2001.
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[31]

A. Bakulin, V. Grechka, and I. Tsvankin. Estimation of fracture parameters from reflection seismic data - Part I: HTI model due to a single fracture set. Geophysics, 65:1788-1802, 2000.
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[32]

A. Bakulin, V. Grechka, and I. Tsvankin. Estimation of fracture parameters from reflection seismic data - Part II: Fractured models with orthorhombic symmetry. Geophysics, 65:1803-1817, 2000.
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[33]

A. Bakulin, V. Grechka, and I. Tsvankin. Estimation of fracture parameters from reflection seismic data - Part III: Fractured models with monoclinic symmetry. Geophysics, 65:1818-1830, 2000.
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[34]

L. Molotkov and A. Bakulin. Wave propagation in the effective model of alternating porous and impermeable solid layers. Revue De L'Institut Francais Du Petrole, 53:735-748, 1998.
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[35]

A.V. Bakulin and L.G. Tyurikov. The field of a point source in an elastic homogeneous anisotropic medium. Acoustical Physics, 42:651-656, 1996.
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[36]

A.V. Bakulin. Using fractured samples to determine elastic moduli of intact rock. Geophysics (EAGO), 4:50-53 (in Russian), 1995.
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