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CORRELATION OF NUCLEAR MAGNETIC RESONANCE AND MERCURY INTRUSION POROSIMETRY DATA FOR THE BEST PETROPHYSICAL PARAMETERS ESTIMATION IN SHALES AND CARBONATES
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Westphal, H., Surholt, I., Kiesl, Ch., Thern, H.F., Kruspe, T., NMR measurements in carbonate rocks: Problems and an approach to a solution, Pure and Applied Geophysics, vol. 162, pp 549-570, 2005
Kenyon, W. E., Takezaki, H., Straley, C., Sen, P. N., Herron, M., Matteson, A., and Petricola, M. J., A laboratory study of nuclear magnetic resonance relaxation and its relation to depositional texture and petrophysical properties – Carbonate Thamama Group, Mubarraz Field, Abu Dhabi: Soc. Petroleum Engineers Paper 29886,1995, pp. 477–502.
Hidajat, I., Mohanty, K. X., Flaum, M., and Hirasaki, G., Study of vuggy carbonates using NMR and X-ray CT scanning: Soc. Petroleum Engineers Reservoir Evaluation & Engineering, vol. 7/issue 5, pp. 365–377, 2004.
Coates G.R., X. Lizhi, M.G. Prammer, NMR logging. Principles and Interpretation. Halliburton Energy Service, Huston, Texas, 1999
Jarzyna, J.A., Krakowska, P.I., Puskarczyk, E., Semyrka, R., Rock Reservoir Properties from the Comprehensive Interpretation of Nuclear Magnetic Resonance and Mercury Injection Porosimetry Laboratory Results, Applied Magnetic Resonance, vol.46, pp.95-115,
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
Washburn, E.W., Note on a Method of Determining the Distribution of pore Size in a Porous Material. Proceedings of the National Academy of Science, vol.7/issue 15, 1921 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
Westphal, H., Surholt, I., Kiesl, Ch., Thern, H.F., Kruspe, T., NMR measurements in carbonate rocks: Problems and an approach to a solution, Pure and Applied Geophysics, vol. 162, pp 549-570, 2005
Kenyon, W. E., Takezaki, H., Straley, C., Sen, P. N., Herron, M., Matteson, A., and Petricola, M. J., A laboratory study of nuclear magnetic resonance relaxation and its relation to depositional texture and petrophysical properties – Carbonate Thamama Group, Mubarraz Field, Abu Dhabi: Soc. Petroleum Engineers Paper 29886,1995, pp. 477–502.
Hidajat, I., Mohanty, K. X., Flaum, M., and Hirasaki, G., Study of vuggy carbonates using NMR and X-ray CT scanning: Soc. Petroleum Engineers Reservoir Evaluation & Engineering, vol. 7/issue 5, pp. 365–377, 2004.
Coates G.R., X. Lizhi, M.G. Prammer, NMR logging. Principles and Interpretation. Halliburton Energy Service, Huston, Texas, 1999
Jarzyna, J.A., Krakowska, P.I., Puskarczyk, E., Semyrka, R., Rock Reservoir Properties from the Comprehensive Interpretation of Nuclear Magnetic Resonance and Mercury Injection Porosimetry Laboratory Results, Applied Magnetic Resonance, vol.46, pp.95-115,
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
Washburn, E.W., Note on a Method of Determining the Distribution of pore Size in a Porous Material. Proceedings of the National Academy of Science, vol.7/issue 15, 1921 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
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