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HETEROGENEITY ANALYSIS OF THE POLISH SHALE GAS FORMATIONS BASED ON RESULTS OF LABORATORY MEASUREMENTS
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Poprawa P., Shale gas potential of the Lower Palaeozoic complex in the Baltic and Lublin-Podlasie basin (Poland), Geological Review, Poland, vol. 58, pp 226-249, 2010.
Porębski S., Prugar W., Zacharski J., Silurian shales of the East European Platform in Poland – some exploration problems, Geological Review, Poland, vol. 61/issue 11/1, pp 630-638, 2013.
Ross D., Bustin R.M., Impact of Shale Heterogeneity upon Gas Storage Potential and Deliverability: Examples from Jurassic and Devonian –Mississippian Shale Gas Reservoir, GeoConvention, Canada, 2008, pp 462-463.
Krakowska P., Dohnalik M., Jarzyna J., Wawrzyniak-Guz K., Computed X -ray microtomography as the useful tool in petrophysics: A case study of tight carbonates Modryn formation from Poland, Journal of Natural Gas Science and Engineering, vol. 31, pp 67-75, 2016.
Podhalańska T., Late Ordovician to Early Silurian transition and the graptolites from Ordovician/Silurian boundary near the SW rim of East European Craton (northern Poland), Serie Correlacion Geologica, Argentina, vol. 18, pp 165-171, 2003.
Podhalańska, T. , Graptolites – stratigraphic tool in the exploration of zones prospective for the occurrence of unconventional hydrocarbon deposits, Geological Review , Poland, vol. 61/issue 8, pp 460–467, 2013.
Modliński Z., Szymański B., The Ordovician lithostratigraphy of the Peribaltic Depression (NE Poland), Geological Quarterly, Poland, vol. 41/issue 3, pp 273-288, 1997.
Modliński Z., Szymański B., Lithostratigraphy of the Ordovician in the Podlasie Depression and the basement of the Płock -Warsaw Trough (Eastern Poland), Biuletyn Państwowego Instytutu Geologicznego, Poland, vol. 430, pp 79-112, 2008.
Bust V.K., Majid A.A., Oletu J.U., Worthington P.F., The petrophysics of shale gas reservoirs: technical challenges and pragmatic solutions, Petroleum Geoscience, vol. 19, pp 91–103, 2013.
Tan M., Mao K., Song X., Yang X., Xu J., NMR petrophysical interpretation method of gas shale based on core NMR experiment, Journal of Petroleum Science and Engineering, vol. 136, pp 100-111, 2015.
Puskarczy k E., Jarzyna J., Porębski S.J., Application of multivariate statisti cal methods for characterizing heterolithic reservoirs based on wireline logs – example from the Carpathian Foredeep Basin (Middle Miocene, SE Poland), Geological Quarterly, Poland, vol. 59/issue 1, pp 157-168, 2015.
Szabó, N.P., Shale volume estimation based on the factor analysis of well logging data, Acta Geophysica, vol. 59, pp 935-953, 2011. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org 16th International Multidisciplinary Scientific GeoConference SGEM 2016 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
Poprawa P., Shale gas potential of the Lower Palaeozoic complex in the Baltic and Lublin-Podlasie basin (Poland), Geological Review, Poland, vol. 58, pp 226-249, 2010.
Porębski S., Prugar W., Zacharski J., Silurian shales of the East European Platform in Poland – some exploration problems, Geological Review, Poland, vol. 61/issue 11/1, pp 630-638, 2013.
Ross D., Bustin R.M., Impact of Shale Heterogeneity upon Gas Storage Potential and Deliverability: Examples from Jurassic and Devonian –Mississippian Shale Gas Reservoir, GeoConvention, Canada, 2008, pp 462-463.
Krakowska P., Dohnalik M., Jarzyna J., Wawrzyniak-Guz K., Computed X -ray microtomography as the useful tool in petrophysics: A case study of tight carbonates Modryn formation from Poland, Journal of Natural Gas Science and Engineering, vol. 31, pp 67-75, 2016.
Podhalańska T., Late Ordovician to Early Silurian transition and the graptolites from Ordovician/Silurian boundary near the SW rim of East European Craton (northern Poland), Serie Correlacion Geologica, Argentina, vol. 18, pp 165-171, 2003.
Podhalańska, T. , Graptolites – stratigraphic tool in the exploration of zones prospective for the occurrence of unconventional hydrocarbon deposits, Geological Review , Poland, vol. 61/issue 8, pp 460–467, 2013.
Modliński Z., Szymański B., The Ordovician lithostratigraphy of the Peribaltic Depression (NE Poland), Geological Quarterly, Poland, vol. 41/issue 3, pp 273-288, 1997.
Modliński Z., Szymański B., Lithostratigraphy of the Ordovician in the Podlasie Depression and the basement of the Płock -Warsaw Trough (Eastern Poland), Biuletyn Państwowego Instytutu Geologicznego, Poland, vol. 430, pp 79-112, 2008.
Bust V.K., Majid A.A., Oletu J.U., Worthington P.F., The petrophysics of shale gas reservoirs: technical challenges and pragmatic solutions, Petroleum Geoscience, vol. 19, pp 91–103, 2013.
Tan M., Mao K., Song X., Yang X., Xu J., NMR petrophysical interpretation method of gas shale based on core NMR experiment, Journal of Petroleum Science and Engineering, vol. 136, pp 100-111, 2015.
Puskarczy k E., Jarzyna J., Porębski S.J., Application of multivariate statisti cal methods for characterizing heterolithic reservoirs based on wireline logs – example from the Carpathian Foredeep Basin (Middle Miocene, SE Poland), Geological Quarterly, Poland, vol. 59/issue 1, pp 157-168, 2015.
Szabó, N.P., Shale volume estimation based on the factor analysis of well logging data, Acta Geophysica, vol. 59, pp 935-953, 2011. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org 16th International Multidisciplinary Scientific GeoConference SGEM 2016 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
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