Stratigraphy and lithology
Article # 26_2025 | submitted on 04/29/2025 displayed on website on 07/24/2025 |
44 p. | Maydl' T.V., Ul'nyrov I.L., Nechaev M.S. |
The role of epigenesis in the formation of the Lower Devonian carbonate reservoir of the Gamburtsev swell (Timan-Pechora petroleum province) | |
Based on lithological and mineralogical studies and the distribution features of C, O isotopes and Sr, Ba, F elements in the carbonate strata of the Lower Devonian reservoir of the swell, the main epigenetic processes in the rocks were determined, the conditions of their occurrence were characterized, and conceptual models of epigenesis that satisfy these conditions were proposed. The studies demonstrate a significant contribution to the formation of the modern appearance and properties of rocks by the processes of dolomitization, sulfatization, dedolomitization, karstification, etc. To model the results of these processes in the Lower Devonian strata of the Gamburtsev Swell (Varandey-Adzva structural-tectonic zone), it is proposed to use reaction-transport models of reflux dolomitization, hydrothermal dolomitization, and models of diagenesis by meteoric and other reaction fluids unsaturated with carbonates. Keywords: carbonate and carbonate-sulfate rocks, Lower Devonian reservoir, epigenetic processes, C and O isotopes, Sr, Ba, F microelements, epigenesis model, Gamburtsev Swell, Varandey-Adzva structural-tectonic zone, Timan-Pechora oil and gas province. |
|
article citation | Maydl' T.V., Ul'nyrov I.L., Nechaev M.S. Rol' epigeneza v formirovanii nizhnedevonskogo karbonatnogo rezervuara vala Gamburtseva (Timano-Pechorskaya neftegazonosnaya provintsiya) [The role of epigenesis in the formation of the Lower Devonian carbonate reservoir of the Gamburtsev swell (Timan-Pechora petroleum province)]. Neftegazovaya Geologiya. Teoriya I Praktika, 2025, vol. 20, no. 3, available at: https://www.ngtp.ru/rub/2025/26_2025.html EDN: IQFVGP |
References
Agar S.M., Geiger S. Fundamental controls on fluid flow in carbonates: Current workflows to emerging technologies // Geological Society London Special Publications, 2014, vol. 406, pp. 1-59. DOI: 10.1144/SP406.18
Allan J.R. Matthews R.K. Isotope signatures associated with early meteoric diagenesis. Sedimentology, 1982, vol. 29, pp. 797-817.
Antipova K.A. Rekonstruktsiya usloviy obrazovaniya i zaleganiya superkollektorov na bol'shikh glubinakh v rezul'tate fil'tratsii mul'tifaznykh flyuidov [Reconstruction of the conditions of formation and occurrence of superreservoirs at great depths as a result of filtration of multiphase fluids]. Stroitel'stvo neftyanykh i gazovykh skvazhin na sushe i na more, 2012, no. 6, pp. 27-33. (In Russ.).
Benjakul R., Hollis С., Robertson H.A., Sonnenthal E.L., Whitaker F.F. Understanding controls on hydrothermal dolomitisation: insights from 3D reactive transport modelling of geothermal convection. Solid Earth, 2020, vol. 11, pp. 2439-2461.
Botz R.W., Von der Borch C.С. Stable isotope study of carbonate sediments from the Coorong area, South Australia. Sedimentology, 1984, vol. 31, pp. 837-849.
Dublyanskiy Yu.V., Klimchuk A.B., Timokhina E.I., Amelichev G.N., Shpetl' K. Izmenenie izotopnogo sostava porod v pristenochnykh zonakh gipogennykh karstovykh kanalov Predgornogo Kryma [Changes in the isotopic composition of rocks in the near-wall zones of hypogene karst channels of the Crimea Piedmont]. Speleologiya i karstologiya, 2013, no. 10, pp. 58-75. (In Russ.).
Dublyansky Y.V. Dissolution of carbonates by geothermal waters. Speleogenesis. Evolution of karst aquifers, 2000a, pp. 158-159.
Dublyansky Y.V. Hydrothermal speleogenesis: its settings and peculiar features. Speleogenesis. Evolution of karst aquifers, 2000b, pp. 292-297.
Dushin A.S., Mel'nikov A.V., Fedorov A.V., Rykus M.V. Novaya flyuidodinamicheskaya model' karbonatnogo kollektora mestorozhdeniya im. R. Trebsa na osnove sinteza geologicheskikh i promyslovykh dannykh [New fluid-dynamic model of the carbonate reservoir of the R. Trebs field based on the synthesis of geological and field data]. Neftegazovoe delo, 2016, no. 1, pp. 20-44. (In Russ.).
Dushin A.S., Rykus M.V., Naumov G.V., Gaymaletdinova G.F. Usloviya osadkonakopleniya, diageneticheskie protsessy i ikh vliyanie na kollektorskie svoystva verkhnesiluriysko-nizhnedevonskikh karbonatnykh porod mestorozhdeniy im. R. Trebsa i A. Titova [Sedimentation conditions, diagenetic processes and their influence on the reservoir properties of the Upper Silurian-Lower Devonian carbonate rocks of the R. Trebs and A. Titov fields]. Neftegazovoe delo, 2015, no. 5, pp. 20-44. (In Russ.).
Escorcia L.C., Gomez-Rivas E., Daniele L., Corbella M. Dedolomitisation and reservoir quality: insights from reactive transport modelling. Geofluids, 2013, vol. 13, pp. 221-231. DOI: 10.1111/gfl.12023
Goldstein R.H. Changing conceptual models in carbonate diagenesis: In Karst from recent to reservoirs. Karst-Waters Institute Special Publication, 2008, vol. 14, pp. 81-88.
Hardie L.A. Dolomitization - a critical-view of some current views. Journal of Sedimentary Research, 1987, vol. 57, pp. 166-183. DOI: 10.1306/212F8AD5-2B24-11D7-8648000102C1865D
Hauck T.E., Corlett H.J., Grobe M., Walton E.L., Sansjofre P. Meteoric diagenesis and dedolomite fabrics in precursor primary dolomicrite in a mixed carbonate - evaporite system. Sedimentology, 2018, vol. 65, pp. 1827-1858. DOI: 10.1111/sed.12448
Hollis C. Diagenetic controls on reservoir properties of carbonate successions within the Albian-Turonian of the Arabian Plate. Petroleum Geoscience, 2011, vol. 117, pp. 223-241. DOI: 10.1144/1354-079310-032
Jones G.D., Whitaker F.F., Smart P.L., Sanford W.E. Fate of reflux brines in carbonate platform. Geology, 2002, vol. 30, no. 4, pp. 371-374.
Land L.S. The origin of massive dolomite. Journal of Geological Education, 1985, vol. 33, pp. 112-125. DOI: 10.5408/0022-1368-33.2.112
Lapointe P., Bogatsky V.I., Martynov A.М. Example of Lower Devonian karstified fields, Gamburtsev swell. Geology of the Devonian System: Proceedings of the International Simposium. Syktyvkar: Geoprint, 2002, pp. 271-272.
Loucks R.G. A review of coalesced, collapsed-paleocave systems and associated suprastratal deformation. Time in karst, 2007, vol. 36, no. 1, pp. 121-132. DOI: 10.3986/aC.V36i1.214
Lucia F.J. Carbonate Reservoir Characterization. New York. Springer, 1999, 225 p.
Machel H.G. Bacterial and thermochemical sulfate reduction in diagenetic settings-old and new insights. Sedimentary Geology, 2001, vol. 140, issues 1-2, pp. 143-175. DOI: 10.1016/S0037-0738(00)00176-7
Machel H.G. Concepts and models of dolomitization: a critical reappraisal. In: The Geometry and Petrogenesis of Dolomite Hydrocarbon Reservoirs. Geological Society, 2004, vol. 235, pp. 7-63. DOI: 10.1144/GSL.SP.2004.235.01.02
Machel H.G., Mountjoy E.W. Chemistry and environments of dolomitization - a reappraisal. Earth-Science Reviews, 1986, vol. 23, pp. 175-222.
Makhnach A.A. Stadial'nyy analiz litogeneza [Stage analysis of lithogenesis]. Minsk: BGU, 2000, 255 p. (In Russ.).
Makhnach A.A. Vodonosnye sistemy kak areny katageneza gornykh porod [Aquifer systems as arenas of rock catagenesis]. Gidrogeokhimiya osadochnykh basseynov: Trudy Rossiyskoy nauchnoy konferentsii. Tomsk: Izd-vo NTL, 2007, pp. 43-50. (In Russ.).
Malyshev N.A. Tektonika, evolyutsiya i neftegazonosnost' osadochnykh basseynov evropeyskogo severa Rossii [Tectonics, evolution and oil and gas potential of sedimentary basins of the European north of Russia]. Ekaterinburg: UrO RAN, 2002, 271 p. (In Russ.).
Manzano B., Fowler M.G., Machel H.G. The influence of thermochemical sulphate reduction on hydrocarbon composition in Nisku reservoirs. Org. Geochem., 1997, vol. 27, pp. 507-521.
Maydl' T.V. Litologiya i kollektory produktivnykh karbonatnykh otlozheniy nizhnego devona vala Gamburtseva [Lithology and reservoirs of productive carbonate strata of the Lower Devonian of the Gamburtsev swell]. Geologiya i resursy goryuchikh iskopaemykh evropeyskogo Severa SSSR. Trudy Instituta geologii Komi NTs UrO AN SSSR, 1989, no. 69, pp. 34-46. (In Russ.).
Maydl' T.V., Mityusheva T.P., Ul'nyrov I.L., Nechaev M.S. Vliyanie sostava plastovykh rassolov na epigeneticheskie izmeneniya verkhnesiluriysko-nizhnedevonskikh karbonatnykh porod vala Gamburtseva (Timano-Pechorskaya neftegazonosnaya provintsiya) [Effect of formation brine composition on epigenetic changes in Upper Silurian-Lower Devonian carbonate rocks of the Gamburtsev swell (Timan-Pechora petroleum province)]. Neftegazovaya geologiya. Teoriya i praktika, 2024a, vol. 19, no. 3, available at: https://www.ngtp.ru/rub/2024/22_2024.html (In Russ.). EDN: BOOZTS
Maydl' T.V., Nechaev M.S. Kontseptual'naya model' formirovaniya nizhnedevonskikh otlozheniy severo-vostoka Timano-Pechorskoy neftegazonosnoy provintsii [Conceptual model for the formation of Lower Devonian strata in the northeast of the Timan-Pechora petroleum province]. Geologiya i mineral'nye resursy Evropeyskogo severo-vostoka Rossii: materialy XVIII Geologicheskogo s"ezda Respubliki Komi, Syktyvkar: IG Komi NTs UrO RAN, 2024, vol. III, pp. 48-50. (In Russ.). EDN: JYUDNO
Maydl' T.V., Sokerina N.V., Nechaev M.S., Ul'nyrov I.L., Isaenko S.I. Flyuidnyy rezhim obrazovaniya vtorichnykh dolomitov v paleozoyskikh karbonatnykh kollektorakh Khasyreyskogo mestorozhdeniya (val Gamburtseva) [Fluid regime of secondary dolomites formation in Paleozoic carbonate reservoirs of the Khasyrey field (Gamburtsev swell)]. Vestnik geonauk, 2024b, no. 7(355), pp. 3-12. (In Russ.). DOI: 10.19110/geov.2024.7.1
Maydl' T.V., Zhemchugova V.A., Naumchev Yu.V. Geokhimicheskie predposylki vydeleniya predfranskogo nesoglasiya v devonskom razreze Timano-Pechorskogo osadochno-porodnogo basseyna [Geochemical prerequisites for identifying the pre-Frasnian unconformity in the Devonian section of the Timan-Pechora sedimentary-rock basin]. Vestnik Instituta geologii Komi NTs UrO RAN, 2018, no. 285 (9), pp. 30-38. (In Russ.). DOI: 10.19110/2221-1381-2018-9-30-38
Mesozoic and Cenozoic carbonate systems of the Mediterranean and the Middle East: stratigraphic and diagenetic reference models - an introduction. In: Van Buchem F.S., Gerdes K.D., Esteban M. (eds). Mesozoic and Cenozoic Carbonate Systems of the Mediterranean and the Middle East: Stratigraphic and Diagenetic Reference Models. Geological Society, London, Special Publications, 2010, vol. 329, pp. 1-7.
Moore C.H. Carbonate diagenesis and porosity. Amsterdam: Elsevier, 1989, 338 р.
Mougin P., Lamoureux-Var V., Bariteau A., Huc A.Y. Thermodynamic of thermochemical sulphate reduction. Petroleum Science and Engineering, 2007, vol. 58, pp. 413-427. DOI: 10.1016/j.petrol.2007.01.005
Nanomineralogiya. Ul'tra- i mikrodispersnoe sostoyanie mineral'nogo veshchestva [Nanomineralogy. Ultra- and microdispersed state of mineral matter]. St. Petersburg: Nauka, 2005, 581 p. (In Russ.).
Perel'man A.I., Kasimov N.S. Geokhimiya landshaftov [Geochemistry of landscapes]. Moscow: Izd-vo Moskovskogo gosudarstvennogo universiteta, 1999, 610 p. (In Russ.).
Prishchepa O.M., Bogatskiy V.I., Makarevich V.N., Chumakova O.V., Nikonov N.I., Kuranov A.V., Bogdanov M.M. Novye predstavleniya o tektonicheskom i neftegazogeologicheskom rayonirovanii Timano-Pechorskoy neftegazonosnoy provintsii [New ideas about tectonic and oil and gas geological zoning of the Timan-Pechora petroleum province]. Neftegazovaya geologiya. Teoriya i praktika, 2011, vol. 6, no. 4, available at: http://www.ngtp.ru/rub/4/40_2011.pdf (In Russ.). EDN: OYOEMB
Romashkin Yu.N. Zakonomernosti lokalizatsii, mineral'nyy sostav i usloviya obrazovaniya flyuoritoproyavleniy v basseyne r. Peschanoy (Severo-vostochnyy Pay-Khoy) [Localization patterns, mineral composition and conditions of formation of fluorite occurrences in the Peschanaya River basin (Northeastern Pay-Khoy)]. Rudogenez na Timane i severe Urala. Syktyvkar: Rotaprint KF AN SSSR, 1981, pp. 44-53. (In Russ.).
Roure F., Swennen R., Schneider F., Faure J.L., Ferket H., Guilhaumou N., Osadetz K., Robion P., Vandeginste V. Incidence and Importance of Tectonics and Natural Fluid Migration on Reservoir Evolution in Foreland Fold-and-Thrust Belts. Oil & Gas Science and Technology, 2005, vol. 60, no. 1, pp. 67-106. DOI: 10.2516/ogst:2005006
Sakhibgareev R.S. Izmenenie kollektorov na vodoneftyanykh kontaktakh [Changes in reservoirs at oil-water contacts]. DAN SSSR, 1983, vol. 271, no. 6, pp. 1456-1460. (In Russ.).
Sergeeva E.I. Epigenez osadochnykh porod: Ucheb. posobie [Epigenesis of sedimentary rocks: Textbook. Manual]. St. Petersburg: Izd-vo S.-Peterb. un-ta, 2004, 152 p. (In Russ.).
Smith L.B., Davies G.R. Structurally controlled hydrothermal alteration of carbonate reservoirs. AAPG Bulletin, 2006, vol. 90, no.11, pp. 1635-1640. DOI: 10.1306/intro901106
Sotnikova A.G. Varandey-Adz'vinskiy avlakogen: zony neftegazonakopleniya v karbonatnykh sredneordovik-nizhnedevonskikh otlozheniyakh i prioritetnye napravleniya geologorazvedochnykh rabot na uglevodorodnoe syr'e (susha, Pechoromorskiy shel'f) [Varandey-Adzva aulacogen: oil and gas accumulation zones in Middle Ordovician-Lower Devonian carbonate strata and priority areas of geological exploration for hydrocarbon raw materials (land, Pechora Sea shelf)]. Geologiya nefti i gaza, 2009, no. 2, pp. 10-21. (In Russ.).
Spotl C., Dublyansky Y.V., Koltai G., Honiat Ch., Plan L., Angerer T. Stable isotope imprint of hypogene speleogenesis: Lessons from Austrian caves. Chemical Geology, 2021, vol. 572, pp. 120-209. DOI: 10.1016/j.chemgeo.2021.120209
Stefanov Yu.P. Rezhimy dilatansii i uplotneniya razvitiya deformatsii v zonakh lokalizovannogo sdviga [Dilatancy and compaction regimes of deformation development in localized shear zones]. Fizicheskaya mezomekhanika, 2010, no. 13, pp. 44-52. (In Russ.).
Stupakova A.V. Timano-Pechorskiy basseyn. Stroenie i osnovnye etapy razvitiya [Timan-Pechora Basin. Structure and main stages of development]. Georesursy, 2017, no. 1, pp. 56-64. (In Russ.). DOI: 10.18599/grs.19.7
Sungatullin R.Kh., Kuleshov V.N., Kadyrov R.I. Izotopnyy sostav (δ13S i δ18O) dolomitov iz permskikh evaporitovykh tolshch vostoka Russkoy Plity (na primere Syukeevskogo mestorozhdeniya gipsa) [Isotopic composition (δ13C and δ18O) of dolomites from Permian evaporite strata in the east of the Russian Plate (using the Syukeev gypsum deposit as an example)]. Litologiya i poleznye iskopaemye, 2014, no. 5, pp. 432-442. (In Russ.). DOI: 10.7868/S0024497X14050073
Swart P.K. The geochemistry of carbonate diagenesis: The past, present and future. Sedimentology, 2015, vol. 62, pp. 1233-1304. DOI: 10.1111/sed.12205
Swart P.K., Oehlert A.M. Revised interpretations of stable C and O patterns in carbonate rocks resulting from meteoric diagenesis. Sedimentary Geology, 2018, vol. 364, pp. 14-23. DOI: 10.1016/j.sedgeo.2017.12.005
Timonin N.I. Pechorskaya plita: istoriya geologicheskogo razvitiya v fanerozoe [Pechora plate: history of geological development in the phanerozoic]. Ekaterinburg: UrO RAN, 1998, 240 p. (In Russ.).
Timonin N.I., Yudin V.V., Belyaev A.A. Paleogeodinamika Pay-Khoya [Pay-Khoy paleogeodynamics]. Ekaterinburg: UrO RAN, 2004, 228 p. (In Russ.).
Ul'nyrov I.L., Maydl' T.V. Litologiya, usloviya osadkonakopleniya i formirovanie porod-kollektorov verkhnesiluriyskikh karbonatnykh otlozheniy vala Gamburtseva (Timano-Pechorskaya neftegazonosnaya provintsiya) [Lithology, sedimentation conditions and formation of reservoir rocks of the Upper Silurian carbonate strata of the Gamburtsev Swell (Timan-Pechora petroleum province)]. Neftegazovaya geologiya. Teoriya i praktika, 2023, vol. 18, no. 3, http://www.ngtp.ru/rub/2023/26_2023.html (In Russ.). EDN: ZQRFWL
Ul'nyrov I.L., Nechaev M.S. Litologiya i pustotnoe prostranstvo verkhnesiluriysko-nizhnedevonskikh karbonatnykh otlozheniy yuzhnoy chasti vala Gamburtseva (Varandey-Adz'vinskaya strukturnaya zona) [Lithology and void space of the Upper Silurian-Lower Devonian carbonate stata of the southern part of the Gamburtsev swell (Varandey-Adzva structural zone)]. Geologiya, geofizika i razrabotka neftyanykh i gazovykh mestorozhdeniy, 2024, no. 3, pp. 28-39. (In Russ.). EDN: FXNCIR
Vilesov A.P., Zakharova O.A., Zagranovskaya D.E., Rasskazova S.N., Stepanova V.S. Istoriya formirovaniya i otsenka perspektiv neftegazonosnosti karbonatnykh rezervuarov ovinparmskogo gorizonta nizhnego devona Dolginsko-Papaninskoy strukturnoy zony (shel'f Timano-Pechorskoy plity) [History of formation and assessment of oil and gas potential of carbonate reservoirs of the Ovinparma level of the Lower Devonian of the Dolginsko-Papanin structural zone (shelf of the Timan-Pechora plate)]. Proneft'. Professional'no o nefti, 2020, vol. 4, pp. 24-32. (In Russ.). DOI: 10.7868/S2587739920040035
Wacey D., Wright D.T., Boyce A.J. A stable isotope study of microbial dolomite formation in the Coorong Region, South Australia. Chemical Geology, 2007, vol. 244, pp. 155-174. DOI: 10.1016/j.chemgeo.2007.06.032
Warren J.K. Dolomite: Occurrence, evolution and economically important associations. Earth-Science Reviews, 2000, vol. 52, pp. 1-81. DOI: 10.1016/S0012-8252(00)00022-2
Whitaker F.F. Smart P.L. Geochemistry of meteoric diagenesis in carbonate islands of the northern Bahamas: 2. Geochemical modelling and budgeting of diagenesis. Hydrological Processes, 2007, vol. 21, no. 7, pp. 967-982. DOI:10.1002/hyp.6533
Whitaker F.F., Jones G.D., Sanford W.E., Smart P.L., Wilson A.M. Hydrology, geochemistry and diagenetic potential of Saline ground waters: field results from the Bahamas and model studies. Karst Waters Institute Special Publication, 2002, vol. 7, pp. 124-128.
Whitaker F.F., Smart P.L., Jones G.D. Dolomitization: from conceptual to numerical models. Special Publication of the Geological Society, 2004, vol. 235, pp. 99-139. DOI: 10.1144/GSL.SP. 2004.235.01.05
Whitaker F.F., Smart P.L., Vahrenkamp V.C., Nicholson H., Wogelius R. Dolomitization by near-normal sea-water? Field evidence from the Bahamas. Society of Economic Paleonologists and Mineralogists Special Publication, 1994, vol. 21, pp. 111-132.
Whitaker F.F., Xiao Y. Reactive transport modeling of early burial dolomitization of carbonate platforms by geothermal convection. AAPG Bulletin, 2010, vol. 94, pp. 889-917. DOI: 10.1306/12090909075
Yur'eva Z.P. Nizhnedevonskie otlozheniya severo-vostoka evropeyskoy chasti Rossii (stratigrafiya, korrelyatsiya) [Lower Devonian strata of the northeast of the European part of Russia (stratigraphy, correlation)]. Syktyvkar: IG Komi NTs UrO RAN, 2020, 164 p. (In Russ.).
Zhemchugova V.A., Maslova E.E. Vtorichnaya dolomitizatsiya kak faktor, opredelyayushchiy kollektorskie svoystva nizhnedevonskikh otlozheniy vostochnogo borta Khoreyverskoy vpadiny (Timano-Pechorskiy neftegazonosnyy basseyn) [Secondary dolomitization as a factor determining factor the reservoir properties of the Lower Devonian strata of the eastern side of the Khoreyver depression (Timan-Pechora petroleum basin)]. Vestnik Moskovskogo universiteta. Seriya 4: Geologiya, 2020, no. 3, pp. 47-56. (In Russ.).
Allan J.R. Matthews R.K. Isotope signatures associated with early meteoric diagenesis. Sedimentology, 1982, vol. 29, pp. 797-817.
Antipova K.A. Rekonstruktsiya usloviy obrazovaniya i zaleganiya superkollektorov na bol'shikh glubinakh v rezul'tate fil'tratsii mul'tifaznykh flyuidov [Reconstruction of the conditions of formation and occurrence of superreservoirs at great depths as a result of filtration of multiphase fluids]. Stroitel'stvo neftyanykh i gazovykh skvazhin na sushe i na more, 2012, no. 6, pp. 27-33. (In Russ.).
Benjakul R., Hollis С., Robertson H.A., Sonnenthal E.L., Whitaker F.F. Understanding controls on hydrothermal dolomitisation: insights from 3D reactive transport modelling of geothermal convection. Solid Earth, 2020, vol. 11, pp. 2439-2461.
Botz R.W., Von der Borch C.С. Stable isotope study of carbonate sediments from the Coorong area, South Australia. Sedimentology, 1984, vol. 31, pp. 837-849.
Dublyanskiy Yu.V., Klimchuk A.B., Timokhina E.I., Amelichev G.N., Shpetl' K. Izmenenie izotopnogo sostava porod v pristenochnykh zonakh gipogennykh karstovykh kanalov Predgornogo Kryma [Changes in the isotopic composition of rocks in the near-wall zones of hypogene karst channels of the Crimea Piedmont]. Speleologiya i karstologiya, 2013, no. 10, pp. 58-75. (In Russ.).
Dublyansky Y.V. Dissolution of carbonates by geothermal waters. Speleogenesis. Evolution of karst aquifers, 2000a, pp. 158-159.
Dublyansky Y.V. Hydrothermal speleogenesis: its settings and peculiar features. Speleogenesis. Evolution of karst aquifers, 2000b, pp. 292-297.
Dushin A.S., Mel'nikov A.V., Fedorov A.V., Rykus M.V. Novaya flyuidodinamicheskaya model' karbonatnogo kollektora mestorozhdeniya im. R. Trebsa na osnove sinteza geologicheskikh i promyslovykh dannykh [New fluid-dynamic model of the carbonate reservoir of the R. Trebs field based on the synthesis of geological and field data]. Neftegazovoe delo, 2016, no. 1, pp. 20-44. (In Russ.).
Dushin A.S., Rykus M.V., Naumov G.V., Gaymaletdinova G.F. Usloviya osadkonakopleniya, diageneticheskie protsessy i ikh vliyanie na kollektorskie svoystva verkhnesiluriysko-nizhnedevonskikh karbonatnykh porod mestorozhdeniy im. R. Trebsa i A. Titova [Sedimentation conditions, diagenetic processes and their influence on the reservoir properties of the Upper Silurian-Lower Devonian carbonate rocks of the R. Trebs and A. Titov fields]. Neftegazovoe delo, 2015, no. 5, pp. 20-44. (In Russ.).
Escorcia L.C., Gomez-Rivas E., Daniele L., Corbella M. Dedolomitisation and reservoir quality: insights from reactive transport modelling. Geofluids, 2013, vol. 13, pp. 221-231. DOI: 10.1111/gfl.12023
Goldstein R.H. Changing conceptual models in carbonate diagenesis: In Karst from recent to reservoirs. Karst-Waters Institute Special Publication, 2008, vol. 14, pp. 81-88.
Hardie L.A. Dolomitization - a critical-view of some current views. Journal of Sedimentary Research, 1987, vol. 57, pp. 166-183. DOI: 10.1306/212F8AD5-2B24-11D7-8648000102C1865D
Hauck T.E., Corlett H.J., Grobe M., Walton E.L., Sansjofre P. Meteoric diagenesis and dedolomite fabrics in precursor primary dolomicrite in a mixed carbonate - evaporite system. Sedimentology, 2018, vol. 65, pp. 1827-1858. DOI: 10.1111/sed.12448
Hollis C. Diagenetic controls on reservoir properties of carbonate successions within the Albian-Turonian of the Arabian Plate. Petroleum Geoscience, 2011, vol. 117, pp. 223-241. DOI: 10.1144/1354-079310-032
Jones G.D., Whitaker F.F., Smart P.L., Sanford W.E. Fate of reflux brines in carbonate platform. Geology, 2002, vol. 30, no. 4, pp. 371-374.
Land L.S. The origin of massive dolomite. Journal of Geological Education, 1985, vol. 33, pp. 112-125. DOI: 10.5408/0022-1368-33.2.112
Lapointe P., Bogatsky V.I., Martynov A.М. Example of Lower Devonian karstified fields, Gamburtsev swell. Geology of the Devonian System: Proceedings of the International Simposium. Syktyvkar: Geoprint, 2002, pp. 271-272.
Loucks R.G. A review of coalesced, collapsed-paleocave systems and associated suprastratal deformation. Time in karst, 2007, vol. 36, no. 1, pp. 121-132. DOI: 10.3986/aC.V36i1.214
Lucia F.J. Carbonate Reservoir Characterization. New York. Springer, 1999, 225 p.
Machel H.G. Bacterial and thermochemical sulfate reduction in diagenetic settings-old and new insights. Sedimentary Geology, 2001, vol. 140, issues 1-2, pp. 143-175. DOI: 10.1016/S0037-0738(00)00176-7
Machel H.G. Concepts and models of dolomitization: a critical reappraisal. In: The Geometry and Petrogenesis of Dolomite Hydrocarbon Reservoirs. Geological Society, 2004, vol. 235, pp. 7-63. DOI: 10.1144/GSL.SP.2004.235.01.02
Machel H.G., Mountjoy E.W. Chemistry and environments of dolomitization - a reappraisal. Earth-Science Reviews, 1986, vol. 23, pp. 175-222.
Makhnach A.A. Stadial'nyy analiz litogeneza [Stage analysis of lithogenesis]. Minsk: BGU, 2000, 255 p. (In Russ.).
Makhnach A.A. Vodonosnye sistemy kak areny katageneza gornykh porod [Aquifer systems as arenas of rock catagenesis]. Gidrogeokhimiya osadochnykh basseynov: Trudy Rossiyskoy nauchnoy konferentsii. Tomsk: Izd-vo NTL, 2007, pp. 43-50. (In Russ.).
Malyshev N.A. Tektonika, evolyutsiya i neftegazonosnost' osadochnykh basseynov evropeyskogo severa Rossii [Tectonics, evolution and oil and gas potential of sedimentary basins of the European north of Russia]. Ekaterinburg: UrO RAN, 2002, 271 p. (In Russ.).
Manzano B., Fowler M.G., Machel H.G. The influence of thermochemical sulphate reduction on hydrocarbon composition in Nisku reservoirs. Org. Geochem., 1997, vol. 27, pp. 507-521.
Maydl' T.V. Litologiya i kollektory produktivnykh karbonatnykh otlozheniy nizhnego devona vala Gamburtseva [Lithology and reservoirs of productive carbonate strata of the Lower Devonian of the Gamburtsev swell]. Geologiya i resursy goryuchikh iskopaemykh evropeyskogo Severa SSSR. Trudy Instituta geologii Komi NTs UrO AN SSSR, 1989, no. 69, pp. 34-46. (In Russ.).
Maydl' T.V., Mityusheva T.P., Ul'nyrov I.L., Nechaev M.S. Vliyanie sostava plastovykh rassolov na epigeneticheskie izmeneniya verkhnesiluriysko-nizhnedevonskikh karbonatnykh porod vala Gamburtseva (Timano-Pechorskaya neftegazonosnaya provintsiya) [Effect of formation brine composition on epigenetic changes in Upper Silurian-Lower Devonian carbonate rocks of the Gamburtsev swell (Timan-Pechora petroleum province)]. Neftegazovaya geologiya. Teoriya i praktika, 2024a, vol. 19, no. 3, available at: https://www.ngtp.ru/rub/2024/22_2024.html (In Russ.). EDN: BOOZTS
Maydl' T.V., Nechaev M.S. Kontseptual'naya model' formirovaniya nizhnedevonskikh otlozheniy severo-vostoka Timano-Pechorskoy neftegazonosnoy provintsii [Conceptual model for the formation of Lower Devonian strata in the northeast of the Timan-Pechora petroleum province]. Geologiya i mineral'nye resursy Evropeyskogo severo-vostoka Rossii: materialy XVIII Geologicheskogo s"ezda Respubliki Komi, Syktyvkar: IG Komi NTs UrO RAN, 2024, vol. III, pp. 48-50. (In Russ.). EDN: JYUDNO
Maydl' T.V., Sokerina N.V., Nechaev M.S., Ul'nyrov I.L., Isaenko S.I. Flyuidnyy rezhim obrazovaniya vtorichnykh dolomitov v paleozoyskikh karbonatnykh kollektorakh Khasyreyskogo mestorozhdeniya (val Gamburtseva) [Fluid regime of secondary dolomites formation in Paleozoic carbonate reservoirs of the Khasyrey field (Gamburtsev swell)]. Vestnik geonauk, 2024b, no. 7(355), pp. 3-12. (In Russ.). DOI: 10.19110/geov.2024.7.1
Maydl' T.V., Zhemchugova V.A., Naumchev Yu.V. Geokhimicheskie predposylki vydeleniya predfranskogo nesoglasiya v devonskom razreze Timano-Pechorskogo osadochno-porodnogo basseyna [Geochemical prerequisites for identifying the pre-Frasnian unconformity in the Devonian section of the Timan-Pechora sedimentary-rock basin]. Vestnik Instituta geologii Komi NTs UrO RAN, 2018, no. 285 (9), pp. 30-38. (In Russ.). DOI: 10.19110/2221-1381-2018-9-30-38
Mesozoic and Cenozoic carbonate systems of the Mediterranean and the Middle East: stratigraphic and diagenetic reference models - an introduction. In: Van Buchem F.S., Gerdes K.D., Esteban M. (eds). Mesozoic and Cenozoic Carbonate Systems of the Mediterranean and the Middle East: Stratigraphic and Diagenetic Reference Models. Geological Society, London, Special Publications, 2010, vol. 329, pp. 1-7.
Moore C.H. Carbonate diagenesis and porosity. Amsterdam: Elsevier, 1989, 338 р.
Mougin P., Lamoureux-Var V., Bariteau A., Huc A.Y. Thermodynamic of thermochemical sulphate reduction. Petroleum Science and Engineering, 2007, vol. 58, pp. 413-427. DOI: 10.1016/j.petrol.2007.01.005
Nanomineralogiya. Ul'tra- i mikrodispersnoe sostoyanie mineral'nogo veshchestva [Nanomineralogy. Ultra- and microdispersed state of mineral matter]. St. Petersburg: Nauka, 2005, 581 p. (In Russ.).
Perel'man A.I., Kasimov N.S. Geokhimiya landshaftov [Geochemistry of landscapes]. Moscow: Izd-vo Moskovskogo gosudarstvennogo universiteta, 1999, 610 p. (In Russ.).
Prishchepa O.M., Bogatskiy V.I., Makarevich V.N., Chumakova O.V., Nikonov N.I., Kuranov A.V., Bogdanov M.M. Novye predstavleniya o tektonicheskom i neftegazogeologicheskom rayonirovanii Timano-Pechorskoy neftegazonosnoy provintsii [New ideas about tectonic and oil and gas geological zoning of the Timan-Pechora petroleum province]. Neftegazovaya geologiya. Teoriya i praktika, 2011, vol. 6, no. 4, available at: http://www.ngtp.ru/rub/4/40_2011.pdf (In Russ.). EDN: OYOEMB
Romashkin Yu.N. Zakonomernosti lokalizatsii, mineral'nyy sostav i usloviya obrazovaniya flyuoritoproyavleniy v basseyne r. Peschanoy (Severo-vostochnyy Pay-Khoy) [Localization patterns, mineral composition and conditions of formation of fluorite occurrences in the Peschanaya River basin (Northeastern Pay-Khoy)]. Rudogenez na Timane i severe Urala. Syktyvkar: Rotaprint KF AN SSSR, 1981, pp. 44-53. (In Russ.).
Roure F., Swennen R., Schneider F., Faure J.L., Ferket H., Guilhaumou N., Osadetz K., Robion P., Vandeginste V. Incidence and Importance of Tectonics and Natural Fluid Migration on Reservoir Evolution in Foreland Fold-and-Thrust Belts. Oil & Gas Science and Technology, 2005, vol. 60, no. 1, pp. 67-106. DOI: 10.2516/ogst:2005006
Sakhibgareev R.S. Izmenenie kollektorov na vodoneftyanykh kontaktakh [Changes in reservoirs at oil-water contacts]. DAN SSSR, 1983, vol. 271, no. 6, pp. 1456-1460. (In Russ.).
Sergeeva E.I. Epigenez osadochnykh porod: Ucheb. posobie [Epigenesis of sedimentary rocks: Textbook. Manual]. St. Petersburg: Izd-vo S.-Peterb. un-ta, 2004, 152 p. (In Russ.).
Smith L.B., Davies G.R. Structurally controlled hydrothermal alteration of carbonate reservoirs. AAPG Bulletin, 2006, vol. 90, no.11, pp. 1635-1640. DOI: 10.1306/intro901106
Sotnikova A.G. Varandey-Adz'vinskiy avlakogen: zony neftegazonakopleniya v karbonatnykh sredneordovik-nizhnedevonskikh otlozheniyakh i prioritetnye napravleniya geologorazvedochnykh rabot na uglevodorodnoe syr'e (susha, Pechoromorskiy shel'f) [Varandey-Adzva aulacogen: oil and gas accumulation zones in Middle Ordovician-Lower Devonian carbonate strata and priority areas of geological exploration for hydrocarbon raw materials (land, Pechora Sea shelf)]. Geologiya nefti i gaza, 2009, no. 2, pp. 10-21. (In Russ.).
Spotl C., Dublyansky Y.V., Koltai G., Honiat Ch., Plan L., Angerer T. Stable isotope imprint of hypogene speleogenesis: Lessons from Austrian caves. Chemical Geology, 2021, vol. 572, pp. 120-209. DOI: 10.1016/j.chemgeo.2021.120209
Stefanov Yu.P. Rezhimy dilatansii i uplotneniya razvitiya deformatsii v zonakh lokalizovannogo sdviga [Dilatancy and compaction regimes of deformation development in localized shear zones]. Fizicheskaya mezomekhanika, 2010, no. 13, pp. 44-52. (In Russ.).
Stupakova A.V. Timano-Pechorskiy basseyn. Stroenie i osnovnye etapy razvitiya [Timan-Pechora Basin. Structure and main stages of development]. Georesursy, 2017, no. 1, pp. 56-64. (In Russ.). DOI: 10.18599/grs.19.7
Sungatullin R.Kh., Kuleshov V.N., Kadyrov R.I. Izotopnyy sostav (δ13S i δ18O) dolomitov iz permskikh evaporitovykh tolshch vostoka Russkoy Plity (na primere Syukeevskogo mestorozhdeniya gipsa) [Isotopic composition (δ13C and δ18O) of dolomites from Permian evaporite strata in the east of the Russian Plate (using the Syukeev gypsum deposit as an example)]. Litologiya i poleznye iskopaemye, 2014, no. 5, pp. 432-442. (In Russ.). DOI: 10.7868/S0024497X14050073
Swart P.K. The geochemistry of carbonate diagenesis: The past, present and future. Sedimentology, 2015, vol. 62, pp. 1233-1304. DOI: 10.1111/sed.12205
Swart P.K., Oehlert A.M. Revised interpretations of stable C and O patterns in carbonate rocks resulting from meteoric diagenesis. Sedimentary Geology, 2018, vol. 364, pp. 14-23. DOI: 10.1016/j.sedgeo.2017.12.005
Timonin N.I. Pechorskaya plita: istoriya geologicheskogo razvitiya v fanerozoe [Pechora plate: history of geological development in the phanerozoic]. Ekaterinburg: UrO RAN, 1998, 240 p. (In Russ.).
Timonin N.I., Yudin V.V., Belyaev A.A. Paleogeodinamika Pay-Khoya [Pay-Khoy paleogeodynamics]. Ekaterinburg: UrO RAN, 2004, 228 p. (In Russ.).
Ul'nyrov I.L., Maydl' T.V. Litologiya, usloviya osadkonakopleniya i formirovanie porod-kollektorov verkhnesiluriyskikh karbonatnykh otlozheniy vala Gamburtseva (Timano-Pechorskaya neftegazonosnaya provintsiya) [Lithology, sedimentation conditions and formation of reservoir rocks of the Upper Silurian carbonate strata of the Gamburtsev Swell (Timan-Pechora petroleum province)]. Neftegazovaya geologiya. Teoriya i praktika, 2023, vol. 18, no. 3, http://www.ngtp.ru/rub/2023/26_2023.html (In Russ.). EDN: ZQRFWL
Ul'nyrov I.L., Nechaev M.S. Litologiya i pustotnoe prostranstvo verkhnesiluriysko-nizhnedevonskikh karbonatnykh otlozheniy yuzhnoy chasti vala Gamburtseva (Varandey-Adz'vinskaya strukturnaya zona) [Lithology and void space of the Upper Silurian-Lower Devonian carbonate stata of the southern part of the Gamburtsev swell (Varandey-Adzva structural zone)]. Geologiya, geofizika i razrabotka neftyanykh i gazovykh mestorozhdeniy, 2024, no. 3, pp. 28-39. (In Russ.). EDN: FXNCIR
Vilesov A.P., Zakharova O.A., Zagranovskaya D.E., Rasskazova S.N., Stepanova V.S. Istoriya formirovaniya i otsenka perspektiv neftegazonosnosti karbonatnykh rezervuarov ovinparmskogo gorizonta nizhnego devona Dolginsko-Papaninskoy strukturnoy zony (shel'f Timano-Pechorskoy plity) [History of formation and assessment of oil and gas potential of carbonate reservoirs of the Ovinparma level of the Lower Devonian of the Dolginsko-Papanin structural zone (shelf of the Timan-Pechora plate)]. Proneft'. Professional'no o nefti, 2020, vol. 4, pp. 24-32. (In Russ.). DOI: 10.7868/S2587739920040035
Wacey D., Wright D.T., Boyce A.J. A stable isotope study of microbial dolomite formation in the Coorong Region, South Australia. Chemical Geology, 2007, vol. 244, pp. 155-174. DOI: 10.1016/j.chemgeo.2007.06.032
Warren J.K. Dolomite: Occurrence, evolution and economically important associations. Earth-Science Reviews, 2000, vol. 52, pp. 1-81. DOI: 10.1016/S0012-8252(00)00022-2
Whitaker F.F. Smart P.L. Geochemistry of meteoric diagenesis in carbonate islands of the northern Bahamas: 2. Geochemical modelling and budgeting of diagenesis. Hydrological Processes, 2007, vol. 21, no. 7, pp. 967-982. DOI:10.1002/hyp.6533
Whitaker F.F., Jones G.D., Sanford W.E., Smart P.L., Wilson A.M. Hydrology, geochemistry and diagenetic potential of Saline ground waters: field results from the Bahamas and model studies. Karst Waters Institute Special Publication, 2002, vol. 7, pp. 124-128.
Whitaker F.F., Smart P.L., Jones G.D. Dolomitization: from conceptual to numerical models. Special Publication of the Geological Society, 2004, vol. 235, pp. 99-139. DOI: 10.1144/GSL.SP. 2004.235.01.05
Whitaker F.F., Smart P.L., Vahrenkamp V.C., Nicholson H., Wogelius R. Dolomitization by near-normal sea-water? Field evidence from the Bahamas. Society of Economic Paleonologists and Mineralogists Special Publication, 1994, vol. 21, pp. 111-132.
Whitaker F.F., Xiao Y. Reactive transport modeling of early burial dolomitization of carbonate platforms by geothermal convection. AAPG Bulletin, 2010, vol. 94, pp. 889-917. DOI: 10.1306/12090909075
Yur'eva Z.P. Nizhnedevonskie otlozheniya severo-vostoka evropeyskoy chasti Rossii (stratigrafiya, korrelyatsiya) [Lower Devonian strata of the northeast of the European part of Russia (stratigraphy, correlation)]. Syktyvkar: IG Komi NTs UrO RAN, 2020, 164 p. (In Russ.).
Zhemchugova V.A., Maslova E.E. Vtorichnaya dolomitizatsiya kak faktor, opredelyayushchiy kollektorskie svoystva nizhnedevonskikh otlozheniy vostochnogo borta Khoreyverskoy vpadiny (Timano-Pechorskiy neftegazonosnyy basseyn) [Secondary dolomitization as a factor determining factor the reservoir properties of the Lower Devonian strata of the eastern side of the Khoreyver depression (Timan-Pechora petroleum basin)]. Vestnik Moskovskogo universiteta. Seriya 4: Geologiya, 2020, no. 3, pp. 47-56. (In Russ.).