1887
Volume 38 Number 3
  • ISSN: 0263-5046
  • E-ISSN: 1365-2397
Preview this article:

There is no abstract available.

Loading

Article metrics loading...

/content/journals/10.3997/1365-2397.fb2020018
2020-03-01
2024-04-20
Loading full text...

Full text loading...

References

  1. Anselmetti, F.S. and Eberli, G.P.
    [1993]. Controls on sonic velocity in carbonates.Pure and Applied Geophysics, 141287–323.
    [Google Scholar]
  2. [1996]. Sonic velocity in carbonate sediments and rocks. In: Palaz, I. and Marfurt K.J. (Eds.) Carbonate Seismology - Geophysical Development Series,653–74.
    [Google Scholar]
  3. [1999]. The velocity deviation log: A tool to predict pore type and permeability trends in carbonate drill holes from sonic and porosity or density logs.The American Association of Petroleum Geologists, 83(3), 450–466.
    [Google Scholar]
  4. [2001]. Sonic velocity in carbonates — a combined product of depositional lithology and diagenetic alterations. In: Ginsburg, R.N. (Eds.) Subsurface geology of prograding carbonate margin - Great Bahama Bank: results of Great Bahamas Drilling project, 70193–216.
    [Google Scholar]
  5. Berryman, J.G.
    [1980a]. Long-wavelength propagation in composite elastic media I. spherical inclusions.Journal of Acoustic Society of America, 68 (6), 1809–1819.
    [Google Scholar]
  6. [1980b]. Long-wavelength propagation in composite elastic media II. Ellipsoidal inclusions.Journal of Acoustic Society of America, 68 (6), 1820–1831.
    [Google Scholar]
  7. Baechle, G.T., Eberli, G. P., Wegar, R.J. and Massaferro, L.
    [2009]. Changes in dynamic shear moduli of carbonate rocks with fluid substitution.Geophysics, 74(3), E135–E147.
    [Google Scholar]
  8. Cheng, C.H. and Toksöz, M.N.
    [1979]. Inversion of seismic velocities for the pore aspect ratio spectrum of a rock. Journal of Geophysical Research, 84 (B13), 7533–7544.
    [Google Scholar]
  9. Colpaert, A.
    [2007]. Geophysical characterization of Carboniferous-Permian carbonate platforms in the Barents Sea based on 3D-seismic data analysis and rock physics modeling.PhD thesis, University of Tromsø, Norway.
    [Google Scholar]
  10. Eberli, G.P.
    [2009]. Combining rock physics and sedimentology for identifying subtle exploration models in carbonates.Sound of Geology Workshop, Abstracts.
    [Google Scholar]
  11. Ehrenberg, S.N., Nielsen, E.B., Svånå, T.R. and Stemmerik, L.
    [1998a]. Depositional evolution of the Finnmark carbonate platform, Barents Sea: results from well 7128/6-1 and 7128/4-1.Norwegian Journal of Geology, 78,185–224.
    [Google Scholar]
  12. [1998b]. Diagenesis and reservoir quality of the Finnmark carbonate platform, Barents Sea: results from wells 7128/6-1 and 7128/4-1.Norwegian Journal of Geology, 78225–252.
    [Google Scholar]
  13. Gassmann, F.
    [1951]. Uber die elastizität poröser medien.Vierteljahrsschrift der Naturforschenden Gesellschaft in Zürich, 961–23.
    [Google Scholar]
  14. Kumar, M. and Han, D.-H.
    [2005]. Pore shape effect on elastic properties of carbonate rocks.Society of Exploration Geophysicists Technical Program, Expanded Abstracts, 1477–1480.
    [Google Scholar]
  15. Kuster, G.T. and Toksöz, M.N.
    [1974]. Velocity and attenuation of seismic waves in two phase media: Part I. Theoretical formulations.Geophysics, 39587–606.
    [Google Scholar]
  16. Marion, D. and Jizba, D.
    [1997]. Acoustic properties of carbonate rocks: Use of quantitative interpretation of sonic and seismic measurements, In: Palaz, I. and Marfurt, K. J. (Eds.) Carbonate Seismology - Geophysical Development Series6, 75–93.
    [Google Scholar]
  17. Mavko, G., Mukerji, T. and Dvorkin, J.
    [1998]. The rock physics handbook. Cambridge University Press.
    [Google Scholar]
  18. Nishizawa, O.
    [1982]. Seismic velocity anisotropy in a medium containing oriented cracks. Transversely isotropic case.Journal of Physics of the Earth, 30331–347.
    [Google Scholar]
  19. Rafavich, F., Kendall, C.S.C. and Todd, T.P.
    [1984]. The relationship between acoustic properties and the petrographic character of carbonate rocks.Geophysics, 49(10), 1622–1636.
    [Google Scholar]
  20. Saberi, M.R.
    [2010]. An integrated approach for seismic characterization of carbonates.Ph.D. Dissertation, University of Bergen.
    [Google Scholar]
  21. Saleh, A.A. and Castanga, J.P.
    [2004]. Revisiting the Wyllie time average equation in the case of near-spherical pores.Geophysics, 69(1), 45–55.
    [Google Scholar]
  22. Sun, Y.F. and Goldberg, D.
    [1997]. Estimation of aspect-ratio changes with pressure from seismic velocities. In: Lovell, M.A. and Harvey, P.K (Eds.) Developments in Petrophysics. Geological Society Special Publication, 122, 131–139.
    [Google Scholar]
  23. Wang, Z.
    [2000]. The Gassmann equation revised: Comparing laboratory data with Gassmann predictions. In: Wang, Z., Nur, A. and Ebrom, D.A. (Eds.) Seismic and Acoustic Velocities in Reservoir Rocks, 8–23.
    [Google Scholar]
  24. Wyllie, M., Gregory, A.R. and Gardner, G.H.F.
    [1956]. Elastic wave velocities in heterogeneous and porous media.Geophysics, 21(1), 41–70.
    [Google Scholar]
  25. Xu, S. and Payne, M.A.
    [2009]. Modeling elastic properties in carbonate rocks.The Leading Edge, 28(1), 66–74.
    [Google Scholar]
  26. Yan, J., Li, X.Y. and Liu, E.
    [2002]. Effects of pore aspect ratios on velocity prediction from well-log data.Geophysical Prospecting, 289, 300–.
    [Google Scholar]
http://instance.metastore.ingenta.com/content/journals/10.3997/1365-2397.fb2020018
Loading
/content/journals/10.3997/1365-2397.fb2020018
Loading

Data & Media loading...

  • Article Type: Research Article
This is a required field
Please enter a valid email address
Approval was a Success
Invalid data
An Error Occurred
Approval was partially successful, following selected items could not be processed due to error