с 01.01.1994 по настоящее время
Казань, Республика Татарстан, Россия
Россия
с 01.01.2023 по настоящее время
Уруссу, Республика Татарстан, Россия
с 01.01.2012 по настоящее время
Казань, Республика Татарстан, Россия
ВАК 1.6 Науки о Земле и окружающей среде
ВАК 1.6.11 Геология, поиски, разведка и эксплуатация нефтяных и газовых месторождений
ВАК 1.6.20 Геоинформатика, картография
УДК 55 Геология. Геологические и геофизические науки
УДК 551 Общая геология. Метеорология. Климатология. Историческая геология. Стратиграфия. Палеогеография
УДК 550.34 Сейсмология
УДК 550.383 Главное магнитное поле Земли
ГРНТИ 38.00 ГЕОЛОГИЯ
ГРНТИ 38.45 Неотектоника
ГРНТИ 38.47 Геоморфология
ГРНТИ 38.53 Геология месторождений нефти, газа и конденсатов
ГРНТИ 37.01 Общие вопросы геофизики
ГРНТИ 37.15 Геомагнетизм и высокие слои атмосферы
ГРНТИ 37.25 Океанология
ГРНТИ 37.31 Физика Земли
ГРНТИ 38.01 Общие вопросы геологии
ГРНТИ 36.00 ГЕОДЕЗИЯ. КАРТОГРАФИЯ
ГРНТИ 37.00 ГЕОФИЗИКА
ГРНТИ 39.00 ГЕОГРАФИЯ
ГРНТИ 52.00 ГОРНОЕ ДЕЛО
ОКСО 05.00.00 Науки о Земле
ОКСО 05.03.01 Геология
ОКСО 05.03.03 Картография и геоинформатика
ББК 2 ЕСТЕСТВЕННЫЕ НАУКИ
ББК 26 Науки о Земле
ББК 263 Геологические науки
ТБК 6 ЕСТЕСТВЕННЫЕ НАУКИ. МАТЕМАТИКА
ТБК 633 Геология
ТБК 6333 Динамическая геология. Тектоника. Вулканология
ТБК 63 Науки о Земле. Экология
BISAC SCI031000 Earth Sciences / Geology
BISAC SCI SCIENCE
This study presents the results of morphometric and lineament analysis conducted on a DEM of a study area in the southwestern Siberian Platform, encompassing several petroleum provinces. The research highlights the informative value of the difference between 6th and 7th order base surfaces, revealing that known deposits are predominantly located in areas with low amplitudes of neotectonic movements. This correlation was used as a prospectivity indicator. Additionally, the relationship between macrofracturing in the sedimentary cover, expressed through lineament density, and the location of known deposits was examined. Known petroleum deposits are mainly situated in areas with low to medium macrofracturing, suggesting this characteristic can be considered a factor in petroleum trap integrity. A comprehensive prospectivity map was generated based on these two exploration criteria, and its reliability was validated. The study demonstrates the effectiveness of using geographic information systems in petroleum exploration.
petroleum exploration, neotectonics, morphometric analysis, lineament density, geographic information system, Siberian Platform
1. Chernova I. Y., Nourgaliev D. K., Chernova O. S., et al. Applying the combination of GIS tools with upgraded structural and morphological methods for studying neotectonics // SOCAR Proceedings. — 2021. — P. 93–103. — DOI:https://doi.org/10.5510/OGP2021SI200560.
2. Filosofov V. P. Fundamentals of the morphometric method of searching for tectonic structures. — Saratov : Saratov State University named after N.G. Chernyshevsky, 1975. — P. 232. — (In Russian).
3. Lastochkin A. N. Neotectonic movements and the location of oil and gas deposits. — Leningrad : Nedra, 1974. — P. 68. — (In Russian).
4. Nurgaliev D. K., Chernova I. Y., Nugmanov I. I., et al. Scientific Foundations of Modern Technology for Forecasting Oil and Gas Potential of Territories // Scientific Notes of Kazan University, Natural Sciences Series. — 2009. — Vol. 151, no. 4. — P. 192–202. — (In Russian).
5. Seregin A. M., Ferdman L. I. Late Cenozoic tectonics of sedimentary basins of the Siberian Platform and hydrocarbon generation processes // Recent Tectonics of the Siberian Platform and Its Influence on Hydrocarbon Potential. — Moscow : Nauka, 1985. — P. 33–38. — (In Russian).
6. Sokolov B. A., Egorov V. A., Syagaeva E. N. Influence of fault-block neotectonics on the distribution of petroleum fields across the Siberian Platform // Recent Tectonics of the Siberian Platform and Its Influence on Hydrocarbon Potential. — Moscow : Nauka, 1985. — P. 26–32. — (In Russian).
7. Varlamov I. P. Recent tectonics of petroleum-bearing regions of Siberia // Recent Tectonics of the Siberian Platform and Its Influence on Hydrocarbon Potential. — Moscow : Nauka, 1985. — P. 3–14. — (In Russian).
8. Zlatopolsky A. A. Program LESSA (Lineament Extraction and Stripe Statistical Analysis) automated linear image features analysis-experimental results // Computers & Geosciences. — 1992. — Vol. 18, no. 9. — P. 1121–1126. — DOI:https://doi.org/10.1016/0098-3004(92)90036-Q.
9. Zlatopolsky A. A. LESSA — Lineament Extraction and Stripe Statistical Analysis. — URL: https://www.lineament.ru (visited on 09/27/2024).




