Tectonophysical conditions of late stages of evolution in the middle part of Transcarpathian deep fault

There is a problem of the mechanism of Neogene magmatism appearance in Transcarpathia within  tectonic evolution of the Carpathian-Pannonian region. In consideration of general submeridional compression the new kinematic and dynamic scheme of Neogene tectonic and magmatic activation associates magma...

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Date:2015
Main Authors: Shevchuk, V., Vasilenko, A.
Format: Article
Language:Russian
Published: S. Subbotin Institute of Geophysics of the NAS of Ukraine 2015
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Online Access:https://journals.uran.ua/geofizicheskiy/article/view/111151
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Journal Title:Geofizicheskiy Zhurnal

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Geofizicheskiy Zhurnal
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author Shevchuk, V.
Vasilenko, A.
author_facet Shevchuk, V.
Vasilenko, A.
author_sort Shevchuk, V.
baseUrl_str
collection OJS
datestamp_date 2020-10-07T11:38:43Z
description There is a problem of the mechanism of Neogene magmatism appearance in Transcarpathia within  tectonic evolution of the Carpathian-Pannonian region. In consideration of general submeridional compression the new kinematic and dynamic scheme of Neogene tectonic and magmatic activation associates magmatism with formation of the shear-zone with right-shift structural paragenesis in the Transcarpathian trough area. According to the scheme the sources of volcanic eruptions were concentrated within the bounds of tension gashes that progressed during the shear-zone impulse evolution. Due to outcrop features of the region the structural argumentation of proposed scheme is effective only in north-eastern border of the shear-zone, on the Transcarpathian deep fault territory, where fault parageneses of different ranks are mapped. Detailed studies carried out within the middle part of the Transcarpathian deep fault allowed to show the jet structure of the central zone of the fault and the intense crushing and exfoliation of flysch formation that took place before volcanism as well as post-volcanic fissure formation. Three stages of fissure formation were marked out and the tectonophysical analysis of their paragenesis shows right-side shift type of local stress fields. The modification of the axes orientation of main normal stresses is explained by consistent implementation of the trans-pressure scheme, the simple shear scheme and the trans-tension scheme. The volcanic rocks, which cover tectonic rocks of the Transcarpathian deep fault seam zone, contain the sporadically shown up fault structures that are the evidence of lateral as well as sub-vertical displacement.
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spelling journalsuranua-geofizicheskiy-article-1111512020-10-07T11:38:43Z Tectonophysical conditions of late stages of evolution in the middle part of Transcarpathian deep fault Shevchuk, V. Vasilenko, A. Transcarpathian deep fault right-shift shear-zone Neogene magmatism fissure paragenesis stress fields There is a problem of the mechanism of Neogene magmatism appearance in Transcarpathia within  tectonic evolution of the Carpathian-Pannonian region. In consideration of general submeridional compression the new kinematic and dynamic scheme of Neogene tectonic and magmatic activation associates magmatism with formation of the shear-zone with right-shift structural paragenesis in the Transcarpathian trough area. According to the scheme the sources of volcanic eruptions were concentrated within the bounds of tension gashes that progressed during the shear-zone impulse evolution. Due to outcrop features of the region the structural argumentation of proposed scheme is effective only in north-eastern border of the shear-zone, on the Transcarpathian deep fault territory, where fault parageneses of different ranks are mapped. Detailed studies carried out within the middle part of the Transcarpathian deep fault allowed to show the jet structure of the central zone of the fault and the intense crushing and exfoliation of flysch formation that took place before volcanism as well as post-volcanic fissure formation. Three stages of fissure formation were marked out and the tectonophysical analysis of their paragenesis shows right-side shift type of local stress fields. The modification of the axes orientation of main normal stresses is explained by consistent implementation of the trans-pressure scheme, the simple shear scheme and the trans-tension scheme. The volcanic rocks, which cover tectonic rocks of the Transcarpathian deep fault seam zone, contain the sporadically shown up fault structures that are the evidence of lateral as well as sub-vertical displacement. S. Subbotin Institute of Geophysics of the NAS of Ukraine 2015-10-01 Article Article application/pdf https://journals.uran.ua/geofizicheskiy/article/view/111151 10.24028/gzh.0203-3100.v37i5.2015.111151 Geofizicheskiy Zhurnal; Vol. 37 No. 5 (2015); 121-131 Геофизический журнал; Том 37 № 5 (2015); 121-131 Геофізичний журнал; Том 37 № 5 (2015); 121-131 2524-1052 0203-3100 ru https://journals.uran.ua/geofizicheskiy/article/view/111151/106019 Copyright (c) 2020 Geofizicheskiy Zhurnal https://creativecommons.org/licenses/by/4.0
spellingShingle Transcarpathian deep fault
right-shift
shear-zone
Neogene magmatism
fissure paragenesis
stress fields
Shevchuk, V.
Vasilenko, A.
Tectonophysical conditions of late stages of evolution in the middle part of Transcarpathian deep fault
title Tectonophysical conditions of late stages of evolution in the middle part of Transcarpathian deep fault
title_full Tectonophysical conditions of late stages of evolution in the middle part of Transcarpathian deep fault
title_fullStr Tectonophysical conditions of late stages of evolution in the middle part of Transcarpathian deep fault
title_full_unstemmed Tectonophysical conditions of late stages of evolution in the middle part of Transcarpathian deep fault
title_short Tectonophysical conditions of late stages of evolution in the middle part of Transcarpathian deep fault
title_sort tectonophysical conditions of late stages of evolution in the middle part of transcarpathian deep fault
topic Transcarpathian deep fault
right-shift
shear-zone
Neogene magmatism
fissure paragenesis
stress fields
topic_facet Transcarpathian deep fault
right-shift
shear-zone
Neogene magmatism
fissure paragenesis
stress fields
url https://journals.uran.ua/geofizicheskiy/article/view/111151
work_keys_str_mv AT shevchukv tectonophysicalconditionsoflatestagesofevolutioninthemiddlepartoftranscarpathiandeepfault
AT vasilenkoa tectonophysicalconditionsoflatestagesofevolutioninthemiddlepartoftranscarpathiandeepfault