Published November 30, 2018 | Version v1
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Mesozoic-Cenozoic climate and the geothermal regime of the oil source Kiterbyutskaya suite of the Arctic region of Western Siberia

  • 1. National Research Tomsk Polytechnic University;Ugra State University
  • 2. National Research Tomsk Polytechnic University
  • 3. Sciences & Engineering, National Research Tomsk Polytechnic University
  • 4. Ugra State University
  • 5. Environmental Management, Ugra State University
  • 6. Trofimuk Institute of Petroleum Geology and Geophysics of Siberian Branch of Russian Academy of Sciences

Description

Using the example of paleotemperature modeling of the Kiterbyutskaya suite of the Mesozoic-Cenozoic section, opened by a deep well at the Bovanenkovskoye oil – gas condensate field (Yamal Peninsula), the influence of paleoclimate factors on the thermal history of the Lower Jurassic oil source deposits, the duration of the main phase of petroleum formation and the value of the paleothermometric maximum and oil generation density. The original computer methodology is described, which takes into account the parameters of the tectonic and sedimentation history, as well as the history of the thermophysical properties of the sedimentary formation, including permafrost and glaciers, and not requiring a priori information about the values and nature of the deep heat flow is given.

The features of the model parametrization are shown. The reliability of the results is confidently controlled by the geophysical criterion of the “discrepancy”, comparison with experimental data on the heat flow, and consistency with the drilling data. The presentation is based on the works of the Tomsk School of Geothermics, carried out as part of the development of a methodological base of geothermics as a geophysical oil prospecting method.

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References

  • Demezhko D., Gornostaeva A.A. (2014). Reconstructions of long-term ground surface heat flux changes from deep-borehole temperature data. Russian Geology and Geophysics, 55(12), pp. 1471-1475
  • Duchkov A.D., Galushkin Yu.I., Smirnov L.V., Sokolova L.S. (1990). Evolyutsiya temperaturnogo polya osadochnogo chekhla Zapadno-Sibirskoi plity [The evolution of the sedimentary cover temperature field of the West Siberian Plate]. Geologiya i geofizika = Russian Geology and Geophysics, 10, pp. 51-60. (In Russ.)
  • Fomin A.N. (2011). Katagenez organicheskogo veshchestva i neftegazonosnost' mezozoiskikh i paleozoiskikh otlozhenii Zapadno-Sibirskogo megabasseina [Catagenesis of organic matter and petroleum potential of the Mesozoic and Paleozoic sediments of the West Siberian megabasin]. Novosibirsk: INGG SO RAN, 331 p. (In Russ.)
  • Galushkin Yu.I. (2007). Modelirovanie osadochnykh basseinov i otsenka ikh neftegazonosnosti [Modeling of sedimentary basins and evaluation of their oil and gas content]. Moscow: Nauchnyi Mir, 456 p. (In Russ.)
  • Galushkin Yu.I. (2016). Non-standard Problems in Basin Modelling – Switzerland: Springer, 274 p.
  • Golovanova I.V., Sal'manova R.Y., Tagirova C.D. (2014). Method for deep temperature estimation with regard to the paleoclimate influence on heat flow. Russian Geology and Geophysics, 55(9), pp. 1130-1137
  • Igenbaeva N.O. (2015). Resource potential and environmental risks of oil and gas development of the Northern districts of KHMAO-Yugra. Vestnik Yugorskogo gosudarstvennogo universiteta [Yugra State University Bulletin], S2(37), pp. 176-178. (In Russ.)
  • Isaev V.I., Fomin A.N. (2006). Centers of generation of bazhenov- and togur-type oils in the southern Nyurol'ka megadepression. Geologiya i geofizika = Russian Geology and Geophysics, 47(6), pp. 734-745. (In Russ.)
  • Isaev V.I., Iskorkina A.A., Kosygin V.Yu., Lobova G.A., Osipova E.N., Fomin A.N. (2017). Integrated assessment of paleoclimate factors of reconstructing thermal history of petromaternal Bazhenov suite in arctic regions of Western Siberia). Izvestiya Tomskogo politekhnicheskogo universiteta. Inzhiniring georesursov [Bulletin of the Tomsk Polytechnic University. Geo Assets Engineering], 328(1), pp. 13-28. (In Russ.)
  • Isaev V.I., Iskorkina A.A., Lobova G.A., Fomin A.N. (2016). Paleoclimate''s factors of reconstruction of thermal history of petroleum bazhenov and togur suites southeastern West Siberia. Geofizicheskii zhurnal, 38(4), pp. 3-25. (In Russ.)
  • Isaev V.I., Lobova G.A., Stotskiy V.V., Fomin A.N. (2018). Geothermy and zoning of shale oil prospects of the Koltogor-Urengoy paleorift (southeastern part of West Siberia). Geofizicheskii zhurnal, 40(3), pp. 54-80. (In Russ.)
  • Isaev V.I., Iskorkina A.A., Lobova G.A., Starostenko V.I., Tikhotskii S.A., Fomin A.N. (2018a). Mesozoic–Cenozoic Climate and Neotectonic Events as Factors in Reconstructing the Thermal History of the Source-Rock Bazhenov Formation, Arctic Region, West Siberia, by the Example of the Yamal Peninsula. Izvestiya. Physics of the Solid Earth, 2, pp. 310-329. (In Russ.)
  • Isaev V.I., Lobova G.A., Mazurov A.K., Starostenko V.I., Fomin A.N. (2018b). Zoning of mega-depressions by shale oil genegation density of Togur and Bazhenov source suites in the southeast of Western Siberia. Geologiya nefti i gaza = Oil and Gas Geology, 1, pp. 15-39. (In Russ.)
  • Iskorkina A.A. (2016). Paleoclimate factors of reconstructing thermal history of the petromaternal bazhenov suite of the Arctic region in Western Siberia. Izvestiya Tomskogo politekhnicheskogo universiteta. Inzhiniring georesursov [Bulletin of the Tomsk Polytechnic University. Geo Assets Engineering], 32(8), pp. 59-73. (In Russ.)
  • Iskorkina A.A., Prokhorova P.N., Stoskiy V.V., Fomin A.N. (2018). Reconstructions of geothermal mode of the petromaternal Kiterbutsk suite of the Arctic region in Western Siberia taking into account the influence of paleoclimate. Izvestiya Tomskogo politekhnicheskogo universiteta. Inzhiniring georesursov [Bulletin of the Tomsk Polytechnic University. Geo Assets Engineering], 329(2), pp. 49-64. (In Russ.)
  • Ivanov N.S., Gavril'ev R.I. (1965). Teplofizicheskie svoistva merzlykh gornykh porod [Thermophysical properties of frozen rocks]. M.:Nauka, 74 p.
  • Khristoforov A.V., Abrosimova I.S., Burganov B.T. (2012). Interference of the temperature waves. Laboratory experiment. Georesursy = Georesources, 1(43), pp. 28-30. (In Russ.)
  • Khutorskoi M.D., Podgornyi L.V., Suprunenko O.I., Kim B.I., Chernykh A.A. (2011). Termotomograficheskaya model' i prognoz neftegazonosnosti osadochnogo chekhla shel'fa morya Laptevykh [Thermotomographic model and oil and gas potential prediction of the sedimentary cover of the Laptev Sea shelf]. Doklady akademii nauk = Proc. of the Academy of Sciences], 440(5), pp. 663-668. (In Russ.)
  • Khutorskoy M.D., Akhmedzyanov V.R., Ermakov A.V. et al. (2013). Geotermiya arkticheskikh morey [Geothermy of Arctic seas]. Moscow: GEOS, 232 p. (In Russ.)
  • Kontorovich A.E., Burshtein L.M., Safronov P.I., Gus'kov S.A., Ershov S.V., Kazanenkov V.A., Kim N.S., Kontorovich V.A., Kostyreva E.A., Melenevskiy V.N., Livshits V.R., Malyshev N.A., Polyakov A.A., Skvortsov M.B. (2013). Historical-geological modeling of hydrocarbon generation in the Mesozoic-Cenozoic sedimentary basin of the Kara Sea (basin modeling). Russian Geology and Geophysics, 54(8), pp. 917-957. (In Russ.)
  • Kurchikov A.R. (2001). Geotermicheskii rezhim uglevodorodnykh skoplenii Zapadnoi Sibiri [Geothermal regime of hydrocarbon accumulations in Western Siberia]. Geologiya i geofizika = Russian Geology and Geophysics, 42(11-12), pp. 1846-1853. (In Russ.)
  • Kurchikov A.R., Stavitskii B.P. (1987). Geotermiya neftegazonosnykh oblastei Zapadnoi Sibiri [Geothermy of oil and gas regions of Western Siberia]. Moscow: Nedra, 134 p. (In Russ.)
  • Kuzmin Iu.A., Kuzmenkov S.G., Polukeev S.M., Novikov M.V., Korkunov V.V. (2014). Hard-to-recover oil reserves of Bazhenov deposits in KhMAO-Yugra. Nedropol'zovanie XXI vek, 3, pp. 56-63. (In Russ.)
  • Lobova G.A., Luneva T.E., Kirillina M.S. (2018). Zoning of oil-gas potential of preJurassic reservoirs in Nyurol'ka megadepression (using paleotemperature modeling and drilling). Izvestiya Tomskogo politekhnicheskogo universiteta. Inzhiniring georesursov [Bulletin of the Tomsk Polytechnic University. Geo Assets Engineering], 329(3), pp. 123-133. (In Russ.)
  • Lobova G.A., Osipova E.N., Krinitsyna K.A., Ostankova Yu.G. (2013). The effect of paleoclimate on geometry mode and oil generation potential of Bazhenov formation (at Tomsk region latitudes). Izvestiya Tomskogo politekhnicheskogo universiteta [Bulletin of the Tomsk Polytechnic University], 322(1), pp. 45-50. (In Russ.)
  • Neftegazonosnye basseiny i regiony Sibiri [Oil and gas bearing basins and regions of Siberia] (1994). Is. 2: Zapadno-Sibirskii bassein [West Siberian basin]. Ed. A.E. Kontorovich, V.S. Surkov, A.A. Trofimuk et al. Novosibirsk: SO RAN, 201p. (In Russ.)
  • Nelskamp S., Donders T., van Wess J.-D., Abbink O. (2014). Influence of Surface Temperatures on Source Rock Maturity: An Example from the Russian Artic. ROGTEC, 18, pp. 26-35.
  • Osipova E.N., Lobova G.A., Isaev V.I., Starostenko V.I. (2015). Petroleum potential of the lower cretaceous reservoirs of Nyurol'ka megadepression. Izvestiya Tomskogo politekhnicheskogo universiteta [Bulletin of the Tomsk Polytechnic University], 326(1), pp. 14-33. (In Russ.)
  • Polukeev S.M., Shpilman A.V., Kuzmin Iu.A., Korkunov V.V., Novikov M.V., Kuzmenkov S.G. (2013). Stabilization of oil production in Ugra by means of hard to recover reserves – myth or reality? Nedropol'zovanie XXI vek, 5, pp. 12-19. (In Russ.)
  • Starostenko V.I., Kutas R.I., Shuman V.N., Legostaeva O.V. (2006). Obobshchenie statsionarnoi zadachi geotermii Releya-Tikhonova dlya gorizontal'nogo sloya [Generalization of the stationary problem of the Rayleigh-Tikhonov geothermy for a horizontal layer]. Izvestiya. Physics of the Solid Earth, 12, pp. 84-91. (In Russ.)
  • Stratigrafiya neftegazonosnykh basseinov Sibiri [Stratigraphy of Siberian oil and gas basins] (2002). Book 9: Kainozoi Zapadnoi Sibiri [Cenozoic of Western Siberia]. Ed. V.S. Volkova. Novosibirsk: SO RAN, 246 p. (In Russ.)
  • Tissot B.Р. (2003). Preliminary Data on the Mechanisms and Kinetics of the Formation of Petroleum in Sediments. Computer Simulation of a Reaction Flowsheet. Oil & Gas Science and Technology – Rev. IFP, 58(2), pp. 183-202.
  • Volkova V.S. (2011). Paleogene and Neogene stratigraphy and paleotemperature trend of West Siberia (from palynologic data). Russian Geology and Geophysics, 52(7), pp. 709-716.