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THE COMPLEX CHARACTERIZATION OF SANDSTONE CORES USING LOW-FIELD NMR

Radzik, Natalia, Krzyzak, Artur, Swierczewska, Anna, Machowski, Grzegorz

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b13/s06.122View metrics

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Title
THE COMPLEX CHARACTERIZATION OF SANDSTONE CORES USING LOW-FIELD NMR
Authors
Radzik, Natalia, Krzyzak, Artur, Swierczewska, Anna, Machowski, Grzegorz
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Science and Technologies in Geology, Exploration and Mining
Publisher
Stef92 Technology
Year
2016
Pages
963-970
ISSN
1314-2704
ISBN
978-619-7105-57-5
Language
en
Publication type
Conference Paper
References22
  1. Straley C., Rossini D., Vinegar H., Tutunjian P., Morriss C., Core analysis by low field NMR. The Log Analyst, vol. 38/issue 2, pp 84-93, 1997.

  2. Baraka-Lokmanea S., Mainc I.G,. Ngwenyac B.T,. Elphickc S.C, Application of complementary methods for more robust characterization of sandstone cores. Marine and Petroleum Geology, vol. 36/issue 1, pp 39-56, 2009.

  3. Fheed A., Świerczewska A., Krzyżak A., The isolated Wuchiapingian (Zechstein) Wielichowo Reef and its sedimentary and diagenetic evolution, SW Poland. Geological Quarterly, vol. 59/issue 4, pp 762-780, 2015.

  4. Mitchell J., Chandrasekera T.C., Holland D.J., Gladden L.F., Fordham E.J., Magnetic resonance imaging in laboratory petrophysical core analysis. Physics Reports, vol. 526, pp 165–225, 2013.

  5. Zhang Y., Blümich B., Spatially resolved D– T2 correlation NMR of porous media. Journal of Magnetic Resonance, vol. 242, pp 41-48, 2014.

  6. Vashaee S., Marica F., Newling B., Balcom B.J., A comparison of magnetic resonance methods for spatially resolved T2 distribution measurements in porous media. Measurement Science and Technology, vol. 26, pp 16, 2015.

  7. Chudek J., Hunter G., Stray Field (STRAFI) and Single Point (SPI) Magnetic Resonance Imaging. Annual Reports on NMR Spectroscopy, vol. 45, pp 151-187, 2002.

  8. Fang Z., Hoepfel D., Winter K., Application of Single Point Imaging (SPI) to solid state materials. Magnetic Resonance Imaging, vol. 19, pp 501-503, 2001.

  9. Weglarz W. , Krzyzak A ., Stefaniuk M., ZTE imaging of tight sandstone rocks at 9.4T - comparison with standard NMR analysis at 0.05 T. Magnetic Resonance Imaging, vol. 34/issue 4, pp 492-495, 2016.

  10. Fleury M., Romero-Sarmiento M., Characterization of shales using T1 –T2 NMR maps. Journal of Petroleum Science and Engineering, vol. 137, pp 55–62, 2016.

  11. Rezaee R., Saeedi A., Clennell, B., Tight gas sands permeability estimation from mercury injection capillary pressure and nuclear magnetic resonance data. Journal of Petroleum Science and Engineering, vol. 88-89, pp 92-99, 2012. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

  12. Straley C., Rossini D., Vinegar H., Tutunjian P., Morriss C., Core analysis by low field NMR. The Log Analyst, vol. 38/issue 2, pp 84-93, 1997.

  13. Baraka-Lokmanea S., Mainc I.G,. Ngwenyac B.T,. Elphickc S.C, Application of complementary methods for more robust characterization of sandstone cores. Marine and Petroleum Geology, vol. 36/issue 1, pp 39-56, 2009.

  14. Fheed A., Świerczewska A., Krzyżak A., The isolated Wuchiapingian (Zechstein) Wielichowo Reef and its sedimentary and diagenetic evolution, SW Poland. Geological Quarterly, vol. 59/issue 4, pp 762-780, 2015.

  15. Mitchell J., Chandrasekera T.C., Holland D.J., Gladden L.F., Fordham E.J., Magnetic resonance imaging in laboratory petrophysical core analysis. Physics Reports, vol. 526, pp 165–225, 2013.

  16. Zhang Y., Blümich B., Spatially resolved D– T2 correlation NMR of porous media. Journal of Magnetic Resonance, vol. 242, pp 41-48, 2014.

  17. Vashaee S., Marica F., Newling B., Balcom B.J., A comparison of magnetic resonance methods for spatially resolved T2 distribution measurements in porous media. Measurement Science and Technology, vol. 26, pp 16, 2015.

  18. Chudek J., Hunter G., Stray Field (STRAFI) and Single Point (SPI) Magnetic Resonance Imaging. Annual Reports on NMR Spectroscopy, vol. 45, pp 151-187, 2002.

  19. Fang Z., Hoepfel D., Winter K., Application of Single Point Imaging (SPI) to solid state materials. Magnetic Resonance Imaging, vol. 19, pp 501-503, 2001.

  20. Weglarz W. , Krzyzak A ., Stefaniuk M., ZTE imaging of tight sandstone rocks at 9.4T - comparison with standard NMR analysis at 0.05 T. Magnetic Resonance Imaging, vol. 34/issue 4, pp 492-495, 2016.

  21. Fleury M., Romero-Sarmiento M., Characterization of shales using T1 –T2 NMR maps. Journal of Petroleum Science and Engineering, vol. 137, pp 55–62, 2016.

  22. Rezaee R., Saeedi A., Clennell, B., Tight gas sands permeability estimation from mercury injection capillary pressure and nuclear magnetic resonance data. Journal of Petroleum Science and Engineering, vol. 88-89, pp 92-99, 2012. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

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