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POROSITY AND PERMEABILITY OF THE MAIN DOLOMITE OIL-BEARING ROCKS IN THE S-1 WELL (WESTERN POLAND)

Pstrucha, Ewa, Machowski, . Grzegorz, Krzyzak, . Artur T.

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b13/s06.114View metrics

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Title
POROSITY AND PERMEABILITY OF THE MAIN DOLOMITE OIL-BEARING ROCKS IN THE S-1 WELL (WESTERN POLAND)
Authors
Pstrucha, Ewa, Machowski, . Grzegorz, Krzyzak, . Artur T.
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
905-912
ISSN
1314-2704
ISBN
978-619-7105-57-5
Language
en
Publication type
Conference Paper
References26
  1. Jaworowski K. , Mikołajewski Z., Oil- and gas sediments of the Main Dolomite (Ca2) in the Międzychód region: a depositional model and the problem of the boundary between the second and third depositional sequences in the Polish Zechstein Basin, Polish Geological Review, vol. 55, no 12/1, pp 1017-1036, 2007.

  2. Słowakiewicz M., Mikołajewski Z., Sequence stratigraphy of the Upper Permian Zechstein Main Dolomite carbonates in Western Poland: a new approach, Journal of Petroleum Geology, vol. 32, pp 215 -234, 2009.

  3. Karnkowski P.H., Permian Basin as main exploration target in Poland, Polish Geological Review, vol. 55 , no 12/1, pp 1003-1015, 2007.

  4. Kotarba M.J., Wagner R., Generation potential of the Zechstein Main Dolomite (Ca2) carbonates in the Gorzów Wielkopolski -Międzychód-Lubiatów area: geological and geochemical approach to microbial-algal source rock, Polish Geological Review , vol. 55, no 12/1, pp 1025-1036, 2007.

  5. Washburn E. W., Note on the method of determining the distribution of pore size in a porous material, Proceedings of National Academy Of Science, vol. 7, no. 4, pp 115-116, 1921. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org 16th International Multidisciplinary Scientific GeoConference SGEM 2016

  6. Gao Z., Hu Q., Estimating permeability using median pore-throat radius obtained from mercury intrusion porosimetry, Journal of Geophysics and Engineering, 10, 025014, pp 1-8, 2013.

  7. Giesche H., Mercury Porosimetry: A General (Practical) Overview, Particle & Particle Systems Characterization, vol. 23, issue 1, pp 9-19, 2006.

  8. Cnudde V., Boone M.N., High -resolution X -ray computed tomography in geosciences: A review of the current technology and applications , Earth-Science Reviews, 123, pp 1-17, 2013.

  9. Ketcham R.A., Carlson W.D., Acquisition, optimization and interpretation of X- ray computed to mographic imagery: applications to the geosciences , Computers & Geosciences, 27, pp 381–400, 2001.

  10. Rezaee M.R., Jafari A., Kazemzadeh E., Relationships between permeability, porosity and pore throat size in carbonate rocks using regression analysis and neural networks, Journal of Geophysics and Engineering, pp 370 -376, 2006.

  11. Rezaee R., Saeedi A., Clennel B., Tight gas sands permeability estimation from mercury injection capillary pressure and nuclear magnetic resonance data. Journal of Petroleum Science and Engineering, 88-89, pp 92 -99, 2012.

  12. Sigal R.F., Mercury Capillary Pressure Measurements on Barnett Core. Society of Petroleum Engineers, 16, 4, pp 1-23, 2013.

  13. Hartmann, D.J., Beaumont, E.A., Predicting reservoir system quality and performance. In: Beaumont, E.A., Foster, N.H. (Eds.), Exploring for Oil and Gas Traps: AAPG Treatise of Petroleum Geology: Handbook of Petroleum Geology. pp 9- –9-154, 1999. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

  14. Jaworowski K. , Mikołajewski Z., Oil- and gas sediments of the Main Dolomite (Ca2) in the Międzychód region: a depositional model and the problem of the boundary between the second and third depositional sequences in the Polish Zechstein Basin, Polish Geological Review, vol. 55, no 12/1, pp 1017-1036, 2007.

  15. Słowakiewicz M., Mikołajewski Z., Sequence stratigraphy of the Upper Permian Zechstein Main Dolomite carbonates in Western Poland: a new approach, Journal of Petroleum Geology, vol. 32, pp 215 -234, 2009.

  16. Karnkowski P.H., Permian Basin as main exploration target in Poland, Polish Geological Review, vol. 55 , no 12/1, pp 1003-1015, 2007.

  17. Kotarba M.J., Wagner R., Generation potential of the Zechstein Main Dolomite (Ca2) carbonates in the Gorzów Wielkopolski -Międzychód-Lubiatów area: geological and geochemical approach to microbial-algal source rock, Polish Geological Review , vol. 55, no 12/1, pp 1025-1036, 2007.

  18. Washburn E. W., Note on the method of determining the distribution of pore size in a porous material, Proceedings of National Academy Of Science, vol. 7, no. 4, pp 115-116, 1921. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org 16th International Multidisciplinary Scientific GeoConference SGEM 2016

  19. Gao Z., Hu Q., Estimating permeability using median pore-throat radius obtained from mercury intrusion porosimetry, Journal of Geophysics and Engineering, 10, 025014, pp 1-8, 2013.

  20. Giesche H., Mercury Porosimetry: A General (Practical) Overview, Particle & Particle Systems Characterization, vol. 23, issue 1, pp 9-19, 2006.

  21. Cnudde V., Boone M.N., High -resolution X -ray computed tomography in geosciences: A review of the current technology and applications , Earth-Science Reviews, 123, pp 1-17, 2013.

  22. Ketcham R.A., Carlson W.D., Acquisition, optimization and interpretation of X- ray computed to mographic imagery: applications to the geosciences , Computers & Geosciences, 27, pp 381–400, 2001.

  23. Rezaee M.R., Jafari A., Kazemzadeh E., Relationships between permeability, porosity and pore throat size in carbonate rocks using regression analysis and neural networks, Journal of Geophysics and Engineering, pp 370 -376, 2006.

  24. Rezaee R., Saeedi A., Clennel B., Tight gas sands permeability estimation from mercury injection capillary pressure and nuclear magnetic resonance data. Journal of Petroleum Science and Engineering, 88-89, pp 92 -99, 2012.

  25. Sigal R.F., Mercury Capillary Pressure Measurements on Barnett Core. Society of Petroleum Engineers, 16, 4, pp 1-23, 2013.

  26. Hartmann, D.J., Beaumont, E.A., Predicting reservoir system quality and performance. In: Beaumont, E.A., Foster, N.H. (Eds.), Exploring for Oil and Gas Traps: AAPG Treatise of Petroleum Geology: Handbook of Petroleum Geology. pp 9- –9-154, 1999. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

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