Preview

Oil and Gas Studies

Advanced search

Tectonic regime of the area of the Sukhoi Log geological practice in the Middle Devonian and volcanic arcs in the basement of Western Siberia

https://doi.org/10.31660/0445-0108-2021-4-32-47

Abstract

The article briefly describes current understanding of the tectonic regime of study area. It is related to the field geological practice of students of Industrial University of Tyumen. Study area is located at the western edge of Sukhoi Log town, Sverdlovsk region. The relevance of the work is related to the educational process. Information about the geological structure of the Devonian and Carboniferous formations of study area is collected. Some of the most characteristic outcrops of Paleozoic are described. Actual information about the Ural mountain genesis is given. The list of studied objects includes the outcrop of Eifelian reefal limestones near to the Shata waterfall and the ruins of a volcano. According to other researchers, it is a part of Middle Devonian volcanic arc, which was formed over the subduction zone. Here the Ordovician-Silurian Paleouralian Ocean were subducted under the collage of different-age terrains and paleocontinents (Paleozoic basement of the modern West Siberian Plate). A possible section across the Middle Devonian subduction zone of study area is presented. Similar objects associated with the oil and gas are known in the Pre-Jurassic basement of Western Siberia. The limestones and volcanic massifs exposed near the Sukhoi Log are good natural equivalents of the objects of oil and gas exploration in Western Siberia.

About the Author

Yu. A. Zagorovsky
Industrial University of Tyumen
Russian Federation

Yuri A. Zagorovsky, Candidate of Geology and Mineralogy, Associate Professor at the Department of Geophysics.

Tyumen



References

1. Popov, S. V., Trubin, Y. S., Smirnov, P. V., Ordovsky, V. V., Goncharova, I. A., & Amitrov, O. V. (2019). On the Taxonomic Composition of Mollusks from the Tavda Formation of Western Siberia. Paleontological Journal, 53(1), pp. 20-29. (In English). DOI: 10.1134/s0031030119010076

2. Zhdanov, A. V. (Ed.) (2009). Gosudarstvennaya geologicheskaya karta Rossiyskoy Fed-eratsii masshtaba 1:1 000 000. Tret'e pokolenie. Ural'skaya seriya. O-41 (Ekaterinburg). Karta dopliotsenovykh obrazovaniy. St. Petersburg, VSEGEI Publ. (In Russian).

3. Khain, V. E. (2001). Tectonics of continents and oceans (year 2001). Moscow, Scientific World Publ., 606 p. (In Russian).

4. Puchkov, V. N. (2010). Geology of the Urals and Cis-Urals (actual problems of stratigraphy, tectonics, geodynamics and metallogeny). Ufa, DesignPoligraphService Publ., 280 p. (In Russian).

5. Kosarev, A. M., Puchkov, V. N., & Seravkin, I. B. (2006). Petrological-geochemical peculiarities of Middle Devonian-Early Carboniferous island-arc and collision volcanites of Magniti-gorsk zone in geodynamic context. Lithosphere, (1), pp. 3-21. (In Russian).

6. Sobolev, I. D. (Ed.) (1966). Gosudarstvennaya geologicheskaya karta SSSR masshtaba 1:200 000. Listy O-41-xXvI, O-41-XXVII. Glavnoe upravlenie geodezii i kartografii Ministerstva geologii SSSR. (In Russian).

7. Ogorodnikov, V. N., Slobodchikov, E. A., & Polenov, Yu. A. (1997). V krayu potu-khshikh vulkanov. Ekaterinburg, UGGGA Publ., 228 p. (In Russian).

8. Kuzin, A. V. (2004). Geofizicheskie issledovaniya Sukholozhskogo poligona v Zaural'e. Ekaterinburg, UGGGA Publ., 94 p. (In Russian).

9. Volchek, E. N., Ogorodnikov, V. N., Slobodchikov, E. A., & Chervjakovskii, V. S. (2015) . Paleozoic volcanic structures in the east of Middle Ural and geochemisrtry of teir rocks. Problemy mineralogii, petrografii i metallogenii. Nauchnye chteniya pamyati P. N. Chirvinskogo, (18), pp. 185-191. (In Russian).

10. Volchek, E. N., Slobodchikov, E. A., & Ogorodnikov, V. N. (2013). Fragmenty pale-ovulkanov vostochnogo segmenta Srednego Urala i geokhimicheskaya kharakteristika vulkanitov. Trudy Instituta geologii i geohimii, (161), pp. 179-186. (In Russian).

11. Volchek, E. N., Slobodchikov, E. A., Ogorodnikov, V. N., Polenov, Yu. A., & Chervyakovskiy, V. S. (2017). New data on petrogeochemistry of volcanic rocks of Sukholozhsky area of the east slope of the Middle Urals and their geodynamic interpretation. News of the Ural State Mining University, (1), pp. 7-13. (In Russian). DOI: 10.21440/2307-2091-2017-1-7-13

12. Dushin, V. A., Rybalko, V. A., & Aljoshin, K. B. (2012). Uchebnaya ge-ologos’emochnaya praktika. Suholozhskiy poligon. Ekaterinburg, UGGU Publ., 240 p. (In Russian).

13. Koroteev, V. A., Dianova, T. V., & Kabanova, L. Ya. (1979). Srednepaleozoyskiy vulkanizm Vostochnoy zony Urala. Leningrad, Nauka Publ., 129 p. (In Russian).

14. Scotese, C. R. (2001). Atlas of Earth History. Volume 1, Paleogeography, PALEOMAP Project. Arlington, Texas, 52 p. (In English).

15. Zonenshain, L. P. (1984). Tektonika vnutrikontinental'nykh skladchatykh poyasov. 27th Mezhdunarodny geologicheskiy kongress, Tektonika, Sektsiya S.07. Doklady, Vol. 7, Moscow, Nauka Publ., pp. 48-59. (In Russian).

16. Hamilton, W. (1970). The Uralides and the motion of the Russian and Siberian platforms. Geol. Soc. Am. Bull., (81), pp. 2553-2576. (In English).

17. Wilson, J. T. (1966). Did the Atlantic close and then re-open? Nature, 211(5050), pp. 676-681. (In English). DOI: 10.1038/211676a0

18. Volchek E. N., & Necheuhin, V. M. (2014). Features of formation of eastern segment Urals Paleozoic orogen under accretion and collision. Lithosphere, (6), pp. 45-52. (In Russian).

19. Pikulik, E. A., Pravikova, N. V., & Tevelev, A. V. (2009). Pozdnedevonskiy vulkanizm Yuzhnogo Urala kak osnova dlya geodinamicheskogo analiza zony perekhoda okean-kontinent. Materialy IV Vserossiyskogo simpoziuma po vulkanologii i paleovulkanologii, Petropavlovsk-Kamchatskiy, IViS DVO RAN Publ., pp. 455-458. (In Russian).

20. Puchkov, V. N., Ivanov, K. S., & Korovko, A. V. (1990). O vozraste vulkanogennykh formatsiy i vremeni zalozheniya ostrovnoy dugi na vostoke Srednego Urala. DAN SSSR, 315(5), pp. 1203-1205. (In Russian).

21. Coleman, R. G. (1977). Ophiolites: Ancient Oceanic Lithosphere? (Minerals, Rocks and Mountains, vol. 12). Berlin, Heidelberg, and New York, Springer-Verlag, 229 p. (In English). DOI: 10.1007/978-3-642-66673-5

22. Berzin, S. V. (2014). Ofiolitovye kompleksy juzhnoj chasti Srednego Urala. Diss. ... kand. geol.-min. nauk. Ekaterinburg, 216 p. (In Russian).

23. Surkov, V. S., & Zhero, O. G. (1981). Fundament i razvitie platformennogo chekhla Za-padno-Sibirskoy plity. Moscow, Nedra Publ., 143 p. (In Russian).

24. Brekhuntsov, A. M. (2004). Aktual'nost' i znachenie izucheniya doyurskikh kompleksov porod na sovremennom etape issledovaniy Zapadno-Sibirskoy neftegazonosnoy provintsiyi. Gornye vedomosti, (7(7)), pp. 6-17. (In Russian).

25. Reichow, M. K., Saunders, A. D., White, R. V., Pringle, M. S., Al’mukhamedov, A. I., Medvedev, A. I., & Kirda, N. P. (2002). 40Ar/39Ar Dates from the West Siberian Basin: Siberian Flood Basalt Province doubled. Science, 296(5574), pp. 1846-1849. (In English). DOI: 10.1126/science. 1071671

26. Bochkarev, V. S. (2017). O fundamental'nyh problemah geologii Zapadno-sibirskoj geo-sineklizy. Gornye vedomosti, (3(151)), pp. 6-24. (In Russian).

27. Bochkarev, V. S., Brekhuntsov, A. M., Sergeev, S. A., Shokalsky, S. P., & Ugryumov, A. N. (2016) . Pervye svedenija po absoljutnomu vozrastu porod fundamenta Urengojskogo neftegazo-nosnogo rajona po cirkonam u-Pb metodom na shrimp II (Zapadnaja Sibir'). Gornye vedomosti, (3-4(142-143)), pp. 8-27. (In Russian).

28. Bochkarev, V. S., Chuvashov, B. I., & Lukomskaya, K. G. (2016). Novyj razrez paleo-zoja na Severe Zapadnoj Sibiri. Gornye vedomosti, (7(146)), pp. 6-13. (In Russian).

29. Berzin, S. V., Ivanov, K. S., Bochkarev, V. S., & Zaitseva, M. V. (2016). Izotopija (Pb, He, Sr, Nd), mineralogijai geohimija permotriasovyh bazal'tov Zapadno-Sibirskogo megabassejna, vskrytyh sverhglubokoj skvazhinoj En-Jahinskoj SG-7. Gornye vedomosti, (3-4(142-143)), pp. 28-43. (In Russian).

30. Ivanov, K. S., Koroteev, V. A., Pecherkin, M. F., Fedorov, Yu. N., & Erokhin, Yu. V. (2009). The western part of the West Siberian petroleum megabasin: geologic history and structure of the basement. Russian Geology and Geophysics, 50(4), pp. 484-501. (In Russian).

31. Nezhdanov, A. A., Ogibenin, V. V., Melnikova, M. V., & Smirnov, A. S. (2012). Structure and stratification of Triassic-Jurassic formations in the northern part of Western Siberia. ROGTEC, (31), pp. 62-69. (In English).

32. Filippova, I. B., Bush, V. A., & Didenko, A. N. (2001). Middle Paleozoic subduction belts: The leading factor in the formation of the Central Asian fold-and-thrust belt. Russian journal of Earth sciences, 3(6), pp. 405-426. (In Russian).

33. Isaev, G. D. (2012). Geological and paleogeographic models and prospects of oil-and-gas bearing capacity of the Paleozoic of the Western Siberian Plate. Georesursy, (6(48)), pp. 24-30. (In Russian).

34. Kanygin, A. V., Saraev, S. V., Bakharev, N. K., Belyaev, S. Yu., Brekhuntsov, А. М., Deshchenya, N. P.,... & Fomin, A. N. (2004). ТЬе Paleozoic of the Shchuch'ya inlier: а model of geologic structure of island arc complexes in the basement of the West-Siberian geosyneclise. Russian Geology and Geophysics, 45(1), pp. 59-78. (In Russian).

35. Zapivalov, N. P., Pekhtereva, I. A., Serdyuk, Z. Ya., & Shmatalyuk, G. F. (1980). Vydelenie i kartirovanie paleozojskih rifovyh massivov v Zapadnoj Sibiri. Oil and gas geology, (11), pp. 5-12. (In Russian).

36. Zapivalov, N. P. (2004). Oil-and-gas potential of paleozoic "basement" of Western Siberia (forecasts and reality). Oil Industry, (7), pp. 76-80. (In Russian).

37. Voronov, V. N., Korkunov, V. K., & Ivashkeeva, D. A. (1997). Paleozojskie rifogennye postrojki - novye neftegazopoiskovye ob’ekty Yamala. Oil and gas geology, (6), pp. 4-9. (In Russian).

38. Dubatolov, V. N., & Krasnov, V. I. (1993). Paleogeografija Zapadno-Sibirskogo morja v devonskij period. Russian Geology and Geophysics, 34(4), pp. 27-36. (In Russian).

39. Darwin, Ch. (1845). Journal of researches into the natural history and geology of the countries visited during the voyage of H.M.S. Beagle round the world, under the command of Capt. Fitz Roy, R.N. London, John Murray, 519 p. (In English).

40. Martin, R. E. (2016). Earth's Evolving Systems: The History of Planet Earth, 2nd edition. Newark, Delaware, Jones & Bartlett Learning, 615 p. (In English).

41. Raznitsin, Yu. N. Gogonenkov, G. N., Zagorovsky, Y. A., Trofimov, V. A., & Fedonkin M. A. (2020). Serpentization of mantle peridotites as fundamental source of deep-seating hydrocarbons in the West Siberian basin. Bulletin of Kamchatka Regional Association "Educational-Scientific Center". Earth Sciences, (1), pp. 66-88. (In Russian). DOI: 10.31431/1816-5524-2020-1-45-66-88

42. Lyell, Ch. (1837). Principles of Geology. An attempt to explain the former changes of the Earth's surface by reference to causes now in operation. Volume 1. The fifth edition. London, John Murray, 460 p. (In English).


Review

For citations:


Zagorovsky Yu.A. Tectonic regime of the area of the Sukhoi Log geological practice in the Middle Devonian and volcanic arcs in the basement of Western Siberia. Oil and Gas Studies. 2021;(4):32-47. (In Russ.) https://doi.org/10.31660/0445-0108-2021-4-32-47

Views: 477


ISSN 0445-0108 (Print)