Contrasting lithospheric geophysical structure of the Black Sea subbasins: Relevance to testing geotectonic models for this mega depression
We present an integrated analysis of the geophysical parameters of the lithosphere of Black Sea basin obtained as a result of the interpretation of magnetic, gravity, thermal, deep seismic sounding and seismic-tomographic data. It first demonstrates inherent significant differences in geophysical pa...
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Subbotin Institute of Geophysics of the NAS of Ukraine
2023
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fturanojs:oai:ojs.journals.uran.ua:article/275178 2023-05-15T18:19:21+02:00 Contrasting lithospheric geophysical structure of the Black Sea subbasins: Relevance to testing geotectonic models for this mega depression Контрастна геофізична будова літосфери суббасейнів Чорного моря: тестування геотектонічних моделей цієї мегадепресії Rusakov, O. Starostenko, V. Pashkevich, I. Kutas, R. 2023-03-22 application/pdf http://journals.uran.ua/geofizicheskiy/article/view/275178 eng eng Subbotin Institute of Geophysics of the NAS of Ukraine http://journals.uran.ua/geofizicheskiy/article/view/275178/270833 http://journals.uran.ua/geofizicheskiy/article/view/275178 Авторське право (c) 2023 O. Rusakov, V. Starostenko, I. Pashkevich, R. Kutas http://creativecommons.org/licenses/by/4.0 Геофізичний журнал; Том 45 № 1 (2023) Geofizicheskiy Zhurnal; Vol. 45 No. 1 (2023) Геофизический журнал; Том 45 № 1 (2023) 2524-1052 0203-3100 Black Sea subbasins lithosphere parameters rifting crustal types crystalline crust faults tectonic evolution Чорне море cуббасейни рифтові типи кори розломи кристалічної кори тектонічна еволюція літосфера info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2023 fturanojs 2023-03-28T01:32:00Z We present an integrated analysis of the geophysical parameters of the lithosphere of Black Sea basin obtained as a result of the interpretation of magnetic, gravity, thermal, deep seismic sounding and seismic-tomographic data. It first demonstrates inherent significant differences in geophysical parameters of lithosphere in the Western and Eastern Black Sea subbasins existing from the prerift stage. The set of reviewed parameters responsible for formation of the present-day lithosphere includes types of crust, depths to acoustic basement, configuration of subbasins, depths to Moho, heat flow and relief of the thermal-asthenosphere boundary (LAB), trends of main deep faults of the crystalline crust, their kinematic types, occurring linear magnetic anomalies, velocity pattern of subcrustal mantle. The above-mentioned parameters of the lithosphere are indicators of the age, geodynamics and driving mechanisms for opening of a subbasins. Oblique trends of the subbasins and the topography of Moho discontinuity in the west and east domains, oblique striking of pre-rifting Istanbul zone and the Shatsky Ridge and different trends of deep faults in the crystalline crust suggest distinct lithospheric structure existing from pre-opening of the Black Sea subbasins and different geodynamical conditions of its formation. The Odesa-Sinop-Ordu deep fault zone as a direct continuation of the Golovanivskaya suture zone of the Ukrainian shield and its slope, probably is of the Precambrian age. So it could be the tectonic boundary between two segments of pre-rift continental crust and between future subbasins. The examples illustrate how indicated parameters of the lithosphere can geophysically confirm the basic ideas of available models for geodynamics of the Black Sea. Представлено комплексний аналіз результатів інтерпретації даних магнітного, гравітаційного, теплового полів, глибинного сейсмічного зондування і сейсмічної томографії. Він вперше демонструє, що суттєві відмінності геофізичних параметрів літосфери Західного та ... Article in Journal/Newspaper Shatsky ridge Scientific Periodicals of Ukraine (Ukrainian Research and Academic Network) |
institution |
Open Polar |
collection |
Scientific Periodicals of Ukraine (Ukrainian Research and Academic Network) |
op_collection_id |
fturanojs |
language |
English |
topic |
Black Sea subbasins lithosphere parameters rifting crustal types crystalline crust faults tectonic evolution Чорне море cуббасейни рифтові типи кори розломи кристалічної кори тектонічна еволюція літосфера |
spellingShingle |
Black Sea subbasins lithosphere parameters rifting crustal types crystalline crust faults tectonic evolution Чорне море cуббасейни рифтові типи кори розломи кристалічної кори тектонічна еволюція літосфера Rusakov, O. Starostenko, V. Pashkevich, I. Kutas, R. Contrasting lithospheric geophysical structure of the Black Sea subbasins: Relevance to testing geotectonic models for this mega depression |
topic_facet |
Black Sea subbasins lithosphere parameters rifting crustal types crystalline crust faults tectonic evolution Чорне море cуббасейни рифтові типи кори розломи кристалічної кори тектонічна еволюція літосфера |
description |
We present an integrated analysis of the geophysical parameters of the lithosphere of Black Sea basin obtained as a result of the interpretation of magnetic, gravity, thermal, deep seismic sounding and seismic-tomographic data. It first demonstrates inherent significant differences in geophysical parameters of lithosphere in the Western and Eastern Black Sea subbasins existing from the prerift stage. The set of reviewed parameters responsible for formation of the present-day lithosphere includes types of crust, depths to acoustic basement, configuration of subbasins, depths to Moho, heat flow and relief of the thermal-asthenosphere boundary (LAB), trends of main deep faults of the crystalline crust, their kinematic types, occurring linear magnetic anomalies, velocity pattern of subcrustal mantle. The above-mentioned parameters of the lithosphere are indicators of the age, geodynamics and driving mechanisms for opening of a subbasins. Oblique trends of the subbasins and the topography of Moho discontinuity in the west and east domains, oblique striking of pre-rifting Istanbul zone and the Shatsky Ridge and different trends of deep faults in the crystalline crust suggest distinct lithospheric structure existing from pre-opening of the Black Sea subbasins and different geodynamical conditions of its formation. The Odesa-Sinop-Ordu deep fault zone as a direct continuation of the Golovanivskaya suture zone of the Ukrainian shield and its slope, probably is of the Precambrian age. So it could be the tectonic boundary between two segments of pre-rift continental crust and between future subbasins. The examples illustrate how indicated parameters of the lithosphere can geophysically confirm the basic ideas of available models for geodynamics of the Black Sea. Представлено комплексний аналіз результатів інтерпретації даних магнітного, гравітаційного, теплового полів, глибинного сейсмічного зондування і сейсмічної томографії. Він вперше демонструє, що суттєві відмінності геофізичних параметрів літосфери Західного та ... |
format |
Article in Journal/Newspaper |
author |
Rusakov, O. Starostenko, V. Pashkevich, I. Kutas, R. |
author_facet |
Rusakov, O. Starostenko, V. Pashkevich, I. Kutas, R. |
author_sort |
Rusakov, O. |
title |
Contrasting lithospheric geophysical structure of the Black Sea subbasins: Relevance to testing geotectonic models for this mega depression |
title_short |
Contrasting lithospheric geophysical structure of the Black Sea subbasins: Relevance to testing geotectonic models for this mega depression |
title_full |
Contrasting lithospheric geophysical structure of the Black Sea subbasins: Relevance to testing geotectonic models for this mega depression |
title_fullStr |
Contrasting lithospheric geophysical structure of the Black Sea subbasins: Relevance to testing geotectonic models for this mega depression |
title_full_unstemmed |
Contrasting lithospheric geophysical structure of the Black Sea subbasins: Relevance to testing geotectonic models for this mega depression |
title_sort |
contrasting lithospheric geophysical structure of the black sea subbasins: relevance to testing geotectonic models for this mega depression |
publisher |
Subbotin Institute of Geophysics of the NAS of Ukraine |
publishDate |
2023 |
url |
http://journals.uran.ua/geofizicheskiy/article/view/275178 |
genre |
Shatsky ridge |
genre_facet |
Shatsky ridge |
op_source |
Геофізичний журнал; Том 45 № 1 (2023) Geofizicheskiy Zhurnal; Vol. 45 No. 1 (2023) Геофизический журнал; Том 45 № 1 (2023) 2524-1052 0203-3100 |
op_relation |
http://journals.uran.ua/geofizicheskiy/article/view/275178/270833 http://journals.uran.ua/geofizicheskiy/article/view/275178 |
op_rights |
Авторське право (c) 2023 O. Rusakov, V. Starostenko, I. Pashkevich, R. Kutas http://creativecommons.org/licenses/by/4.0 |
_version_ |
1766196416800096256 |