Lithological and geochemical features of the lower Triassic reservoirs in the north of Sorokin swell (Timan-Pechora oil and gas-bearing province)

Автор: Timonina N., Ulnyrov I.

Журнал: Вестник геонаук @vestnik-geo

Рубрика: Научные статьи

Статья в выпуске: 5 (329), 2022 года.

Бесплатный доступ

The paper describes lithological and geochemical features of the Lower Triassic sandstones from the far north of Timan-Pechora oil and gas-bearing province. These sandstones chemically coincide to typical graywackes. We discuss how sedimentation environments and diagenesis control the local heterogeneity of cementation, variability of void space and the potential oil content. Tectonic conditions are one of the provenance factors, the figurative points of the composition of sandstones on the diagrams fall into the field of the passive continental margin. The position of sandstone points on the diagrams and low values of the hydrolyzate module indicate the formation of deposits in an arid climate, which does not contradict to geological data.

Еще

Triassic deposits, sedimentation, facies, environments, sandstones, graywackes, oil and gas reservoirs, geochemical module

Короткий адрес: https://sciup.org/149140471

IDR: 149140471   |   DOI: 10.19110/geov.2022.5.2

Список литературы Lithological and geochemical features of the lower Triassic reservoirs in the north of Sorokin swell (Timan-Pechora oil and gas-bearing province)

  • Bhatia M. R. Plate tectonics and geochemical composition of sandstones. J.Geol., 1983, V.91, pp. 611–627
  • Bruzhes L. N., Izotov V. G., Sitdikova L. M. Litologofatsialnyye usloviya formirovaniya gorizonta YU1 Tevlinsko-Russkinskogo mestorozhdeniya Zapadno-Sibirskoy neftegazonosnoy provintsii (Lithofacies conditions of J1 horizon formation within the Tevlinsko-Russkinskoe deposit). Georesources, 2010, No. 2 (34), pp. 6–9.
  • Collinson J. D. Alluvial sediments. In: Sedimentary environments and facies (Ed. H.G. Reading). Blackwell Scientific Publications. Oxford. UK. 1996. pp. 37–82.
  • Erofeev W. S., Tsekhovsky Yu. G. Parageneticheskiye assotsiatsii kontinental'nykh otlozheniy (Semeystvo aridnykh paragenezov. Evolyutsionnaya periodichnost') (Paragenetic association of continental deposits (Family of arid paragenesis. Evolutionary frequency)). Proceedings of GIN AS of the USSR. Moscow: Nauka, 1983, V. 373, 192 p.
  • Fazliakhmetov A. M. On the application of geodynamic lithochemical diagrams in the study of tephrogenic sandstones. Bulletin of the Tomsk Polytechnic University Engineering of georesources, 2019, V. 330, No. 7, pp. 34–43.
  • Herron M. M. Geochemical classification on terrigenous sands and shales from core or log data. Journal of sedimentary petrology. 1988, V. 58, No. 5, pp. 820–829.
  • Kalantar I. Z., Tanasova S. D. Fatsialnyye kriterii pri stratifikatsii kontintal'nykh otlozheniy triasa. Stratigrafiya i litologiya neftegazonosnykh otlozheniy Timano-Pechorskoy provintsii (Facial criteria for the stratification of continental Triassic sediments. Stratigraphy and lithology of oil and gas bearing sediments of the Timan-Pechora province). Leningrad: Nedra, 1988, pp. 127–134
  • Khalid Al-Kahtany, Fahad Al Gantani. Distribution of diagenetic alteration in fluvial channel and floodplain deposits in the Triassic Narrabeen group. Southern Sydney Basin. Australia. Journal of geological Society of India, 2015, V. 85, pp. 591–603.
  • Kroonenberg S. B. Effects of provenance, sorting and weathering on the geochemistry of fluvial sands from different tectonic and climatic environments. Proceedings of the 29th International Geological Congress, 1994, pp. 69–81.
  • Maynard J. B., Valloni R., Ho Shing Ju. Composition of modern deep sea sands from arc-related basins. Sedimentation and Tectonics on Modern and Ancient Active Plate Margins. Geological Society London Special Publications, 1982, V. 10, No. 1, pp. 551–561.
  • Morad S., Ketzer J. M., De Ross L. F. The impact of diagenesis on the heterogeneity of sandstone reservoirs: A review of the role of depositional facies and sequence stratigraphy. A. A. P. G. Bull., 2010, V. 94, pp. 1267–1309.
  • Morakhovskaya E. D. Trias Timano-Ural'skogo regiona (opornyye razrezy. stratigrafiya. korrelyatsiya). Biokhronologiya i korrelyatsiya fanerozoya neftegazonosnykh basseynov Rossii (Triassic of the Timan-Ural region (reference sections, stratigraphy, correlation). Biochronology and correlation of the Phanerozoic of oil and gas basins of Russia). Saint Petersburg: VNIGRI, 2000, 1, 80 p.
  • Owen A., Ebighaus A., Hartley A. J., Santos M. G., Weissmann G. S. Multi-scale classification of fluvial architecture: an example from the Paleocene-Eocene Bighorn Basin. Wyoming. Sedimentology, 2017, V. 64, pp. 1572–1596. doi:10.1111/sed.12364
  • Pettijohn F. J., Potter P. E., Siever R. Sand and sandstone. NY USA: Springer-Verlag, 1976, 536 p.
  • Roser B. P., Korsch R. J. Determination of tectonic settings of sandstone-mudstones suits using SiO2 content and 2O/Na2O ratio. Journal of Geology, 1986, V. 94, No. 5, pp. 635–650.
  • Selley R. S. Ancient sedimentary environments. London: Chapman and Hall. 1978, 294p.
  • Shmyrina V. A., Morozov V. P. Vliyaniye vtorichnykh izmeneniy porod-kollektorov na fil'tratsionno-yemkostnyye svoystva produktivnykh plastov BS111 i US11 Kustovogo mestorozhdeniya (Effects of secondary alteration of reservoir rocks on the porosity and permeability of productive formation of productive layers BS111 and US1 1 at the Kustovoye deposit). Proceedings of Kazan University, 2013, V. 155, Book 1, pp. 95–98.
  • Suttner L. J. and Dutta P. K. Alluvial Sandstone. Composition and Paleoclimate Journal of sedimentary petrology, 1986, V. 56, No. 3, pр. 329–358.
  • Teplov E. V., Larionova Z. V., Beda I. Yu., Dovzhikova E. G., Kuranova T. I., Nikonov N. I., Petrenko E. L., Shabanova G. A. Prirodnyye rezervuary neftegazonosnykh kompleksov Timano-Pechorskoy provintsii (Natural reservoirs of oil and gas complexes of the Timan-Pechora province) GUP RK TP SIC. Saint Petersburg: Renome, 2011, 286 p.
  • Timonin N. I., Yudin V. V., Belyaev A. A. Paleogeodinamika Pay-Khoya (The Paleogeodynamics of Pay-Khoy). Ekaterinburg, UB RAS, 2004, 225 p.
  • Udovitchenko L. A. Strukturno-veshchestvennyye kompleksy i perspektivy neftegazonosnosti nizhnego triasa Timano-Pechorskoy provintsii. Zakonomernosti razmeshcheniya zon neftegazonakopleniya v Timano-Pechorskoy provintsii (Structural and mineralogical complexes and prospective of oil and gas bearing of Lower Triassic in Timan-Pechora Basin. The location of oil and gas accumulation zones in Timan-Pechora Basin). Leningrad: VNIGRI, 1986, pp. 66–73.
  • Yousef I. M., Morozov V. P. Kharakteristika peschanikov gazoneftyanykh rezervuarov verkhnego triasa Sirii s ispol'zovaniyem laboratornykh metodov analiza (Characteristic of Upper Triassic sandstone reservoirs in Syria using analysis of laboratory methods). Georesources, 2017, V. 19, No. 4, Part 2, рp. 356–363. DOI: https://doi.org/10.18599/grs.19.4.8
  • Yudovich Ya. E. and Ketris M. P. Osnovy litokhimii (Fundamentals of lithochemistry). Saint Petersburg: Nauka, 2000, 479 p.
Еще
Статья научная