East Mountain Crimea strain fields of different age

Actual data of kinematic analysis have been given, reconstruction and discrimination of strain fields with respect to the stage of main folding within the limits of the East Mountain Crimea have been fulfilled. The field of sub-meridional—northwestern compression realized in connection with processe...

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Datum:2017
1. Verfasser: Gonchar, V. V.
Format: Artikel
Sprache:Russisch
Veröffentlicht: S. Subbotin Institute of Geophysics of the NAS of Ukraine 2017
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Online Zugang:https://journals.uran.ua/geofizicheskiy/article/view/94011
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Geofizicheskiy Zhurnal
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author Gonchar, V. V.
author_facet Gonchar, V. V.
author_sort Gonchar, V. V.
baseUrl_str
collection OJS
datestamp_date 2020-10-07T11:14:17Z
description Actual data of kinematic analysis have been given, reconstruction and discrimination of strain fields with respect to the stage of main folding within the limits of the East Mountain Crimea have been fulfilled. The field of sub-meridional—northwestern compression realized in connection with processes of Arabian collision is responsible for formation of final folding of the Sudak-Karadag zone and post-folding collision compression of the East Mountain Crimea. As pre-folding fields arc defined the following ones: the fields of thrust-displacement type with northeastern and west-north-west orientations of compression axes and thrust fields with northeastern and northwestern orientation of axes of tension. The last ones can most probably be related to manifestation of riftogenesis behind the arc in the Black Sea region during Middle Cretaceous—Paleocene. The field of northeastern compression might be related to regional compression in Late Eocene—Oligocene, stipulated the folding of the Great Caucasus.
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spelling journalsuranua-geofizicheskiy-article-940112020-10-07T11:14:17Z East Mountain Crimea strain fields of different age East Mountain Crimea strain fields of different age Gonchar, V. V. East Mountain Crimea strain fields folding paleotectonic reconstructions East Mountain Crimea strain fields folding paleotectonic reconstructions Actual data of kinematic analysis have been given, reconstruction and discrimination of strain fields with respect to the stage of main folding within the limits of the East Mountain Crimea have been fulfilled. The field of sub-meridional—northwestern compression realized in connection with processes of Arabian collision is responsible for formation of final folding of the Sudak-Karadag zone and post-folding collision compression of the East Mountain Crimea. As pre-folding fields arc defined the following ones: the fields of thrust-displacement type with northeastern and west-north-west orientations of compression axes and thrust fields with northeastern and northwestern orientation of axes of tension. The last ones can most probably be related to manifestation of riftogenesis behind the arc in the Black Sea region during Middle Cretaceous—Paleocene. The field of northeastern compression might be related to regional compression in Late Eocene—Oligocene, stipulated the folding of the Great Caucasus. Actual data of kinematic analysis have been given, reconstruction and discrimination of strain fields with respect to the stage of main folding within the limits of the East Mountain Crimea have been fulfilled. The field of sub-meridional—northwestern compression realized in connection with processes of Arabian collision is responsible for formation of final folding of the Sudak-Karadag zone and post-folding collision compression of the East Mountain Crimea. As pre-folding fields arc defined the following ones: the fields of thrust-displacement type with northeastern and west-north-west orientations of compression axes and thrust fields with northeastern and northwestern orientation of axes of tension. The last ones can most probably be related to manifestation of riftogenesis behind the arc in the Black Sea region during Middle Cretaceous—Paleocene. The field of northeastern compression might be related to regional compression in Late Eocene—Oligocene, stipulated the folding of the Great Caucasus. S. Subbotin Institute of Geophysics of the NAS of Ukraine 2017-03-01 Article Article application/pdf https://journals.uran.ua/geofizicheskiy/article/view/94011 10.24028/gzh.0203-3100.v39i1.2017.94011 Geofizicheskiy Zhurnal; Vol. 39 No. 1 (2017); 61-78 Геофизический журнал; Том 39 № 1 (2017); 61-78 Геофізичний журнал; Том 39 № 1 (2017); 61-78 2524-1052 0203-3100 ru https://journals.uran.ua/geofizicheskiy/article/view/94011/195717 Copyright (c) 2020 Geofizicheskiy Zhurnal https://creativecommons.org/licenses/by/4.0
spellingShingle East Mountain Crimea
strain fields
folding
paleotectonic reconstructions
Gonchar, V. V.
East Mountain Crimea strain fields of different age
title East Mountain Crimea strain fields of different age
title_alt East Mountain Crimea strain fields of different age
title_full East Mountain Crimea strain fields of different age
title_fullStr East Mountain Crimea strain fields of different age
title_full_unstemmed East Mountain Crimea strain fields of different age
title_short East Mountain Crimea strain fields of different age
title_sort east mountain crimea strain fields of different age
topic East Mountain Crimea
strain fields
folding
paleotectonic reconstructions
topic_facet East Mountain Crimea
strain fields
folding
paleotectonic reconstructions
East Mountain Crimea
strain fields
folding
paleotectonic reconstructions
url https://journals.uran.ua/geofizicheskiy/article/view/94011
work_keys_str_mv AT goncharvv eastmountaincrimeastrainfieldsofdifferentage