Determination of perspective objects for oil and gas exploration in the Krasnopavlovsk-Hrushivsk transverse zone of the Dnipro graben, using a complex of geological-geophysical, morphometric and remote sensing methods

Authors

  • Stanislav Yesipovich Scientific Centre for Aerospace Research of the Earth Institute of Geological Science National Academy of Sciences of Ukraine, Kyiv, Ukraine https://orcid.org/0000-0003-3784-9326
  • Olena Rybak Scientific Centre for Aerospace Research of the Earth Institute of Geological Science National Academy of Sciences of Ukraine, Kyiv, Ukraine https://orcid.org/0000-0002-7859-2590
  • Alla Bondarenko Scientific Centre for Aerospace Research of the Earth Institute of Geological Science National Academy of Sciences of Ukraine, Kyiv, Ukraine https://orcid.org/0000-0002-2257-6196
  • Olena Holovashchuk ДУ «Науковий центр аерокосмічних досліджень Землі Інституту геологічних наук НАН України», 01054, вул. Олеся Гончара, 55-Б, Київ, Україна https://orcid.org/0000-0002-5414-9041

DOI:

https://doi.org/10.36023/ujrs.2023.10.1.227

Keywords:

Dnieper-Donets Rift, structural-facial complex, geotectonic stage, sedimental formations, early Permian sediments, gas capacity perspectives of geological section

Abstract

The location of predictive and prospective objects for the oil and gas deposits exploration within the Krasnopavlovsk-Hrushivsk zone is substantiated, using a complex of geological-geophysical, morphometric and remote sensing methods. The data of the geodynamic scale of cyclicity for the Phanerozoic are used, which are consistent with the structural-facies complexes (SFC) identified by V.K. Havrysh for the Dnieper-Donets Rift (DDR). The region of articulation with Donbass has a sickle shape, and it is to it that the wedging zones of anomalous Early Permian deposits, described by I.I. Demyanenko, gravitate. The Permian period of the development of the Earth's crust is the beginning of the Alpine stage of the expansion of the planet, the rocks of which (early Permian) are characterized by excellent accumulation properties, as well as the subsequent layers of the late Triassic and early Cretaceous. Complex processing of the remotely sensed data and seismic exploration within the area of the Lozova-Shebelinka-Staropokrivka regional seismic profile made it possible to identify promising objects exactly within its boundaries of the field of scattered waves, using mapping of non-structural information.

References

Arsirij, Ju. O., Babij, B. A., Bilyk, S. F., Bojko, Gh. Ju., Brazhyna, Gh. J., Jaremijchuk, R. S. (Eds.) (1999). Atlas of oil and gas fields of Ukraine. Eastern oil and gas region. Lviv. UNGA. vol. 3, pp. 1031–1038. (in Ukrainian)

Chepil P. M. (2008). Druhe zhyttia rodovyshch nafty i hazu Ukrainy – mif chy realnist? Mineralni resursy Ukrainy, № 2, 37–38. (in Ukrainian)

Demyanenko I. I. (1977). Nekotorye osobennosti stroeniya nizhne-permskih solyanyh otlozhenij DDZ. Doklady AN USSR, Seriya B, № 12, 1066–1070 (in Russian)

Demianenko I. I. (2001). Hipsometrychni poverkhy naftohazonosnosti fanerozoiu Dniprovsko-Donetskoi zapadyny. Chernihiv: Chernihivskyi TsNTEI. (in Ukrainian)

Gintov O. B. (1978). Struktury kontinentalnoj zemnoj kory na rannih etapah ee razvitiya. K.: Naukova dumka. (in Russian)

Lepihov H., Hulii V., Lyzanets A., Tsokha O. (2011). Budova i hazonosnist Shebelynskoho rodovyshcha (u svitli teorii abiohennoho henezysu vuhlevodniv). Heoloh Ukrainy, № 3-4, 35-36. (in Ukrainian)

Lukin A. (2004). Pryamye poiski nefti i gaza: prichiny neudach i puti povysheniya effektivnosti. Geolog Ukrainy, № 3, 18–43. (in Russian)

Martynov A. A., Hnykin V. I. (1963). Tektonika Dneprovsko-Doneckoj vpadiny i Donbassa. Trudy UkrNIGRI, № 3, 35–64. (in Russian)

Salop L. I. (1982). Geologicheskoe razvitie Zemli v dokembrii. L. : Nedra. (in Russian)

Semenova S. G., Skvorcova E. A. (1988). Geohimicheskaya i fizicheskaya model razreza osadochnogo chehla v predelah mestorozhdenij uglevodorodov i nad nimi. Prikladnaya geofizika, M.: Nedra, № 119, 82–88. (in Russian)

Timoshin Yu. V., Semenova S. G., Skvorcova E. A. (1984). Vliyanie diffuzionnogo potoka na parametry sejsmicheskogo volnovogo polya nad mestorozhdeniem nefti. Prikladnaya geofizika, M.: Nedra, № 109, 50–56. (in Russian)

Yesypovych S. M. (2015). Istoriia planety Zemlia – pulsuiuchyi rozvytok pid diieiu kosmichnoho presynhu. [Elektronnyi resurs]: monohrafiia: DU Nauk. tsentr aerokosmich. dosl. Zemli IH NAN Ukrainy Internet-portal «NNI Instytut heolohii». URL: http://www.geol.univ.kiev.ua/lib/monogr_Yesypovych.pdf. (in Ukrainian)

Yesypovych S. M. (2019). Perspektyvy hazonosnosti oblasti zchlenuvannia Dniprovskoho hrabena ta Donetskoi skladchastoi sporudy. Tektonika i stratyhrafiia, 21–34. (in Ukrainian)

Yevdoshchuk M. I., Chebanenko I. I., Havrysh V. K. … Tsiokha O.H. (2001). Teoretychni osnovy netradytsiinykh heolohichnykh metodiv poshuku vuhlevodniv. Kyiv: NTP «Naftohaz-prohnoz». (in Ukrainian)

Published

2023-04-03

Issue

Section

Earth observation data applications: Challenges and tasks