The structure of velocity mantle number of horizons under Phennoscandia according to seismic-tomography data

Seismic boundaries of the second kind have been distinguished under Phennoscandia according to three-dimensional P-velocity model of the mantle and velocity number of horizons of the upper mantle and its transitional zone has been shown. Four velocity horizons and corresponding seismic boundaries of...

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Date:2016
Main Authors: Tsvetkova, T. A., Bugaenko, I. V.
Format: Article
Language:Russian
Published: S. Subbotin Institute of Geophysics of the NAS of Ukraine 2016
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Online Access:https://journals.uran.ua/geofizicheskiy/article/view/107723
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Journal Title:Geofizicheskiy Zhurnal

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Geofizicheskiy Zhurnal
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author Tsvetkova, T. A.
Bugaenko, I. V.
author_facet Tsvetkova, T. A.
Bugaenko, I. V.
author_sort Tsvetkova, T. A.
baseUrl_str
collection OJS
datestamp_date 2020-10-07T11:35:07Z
description Seismic boundaries of the second kind have been distinguished under Phennoscandia according to three-dimensional P-velocity model of the mantle and velocity number of horizons of the upper mantle and its transitional zone has been shown. Four velocity horizons and corresponding seismic boundaries of the second kind have been distinguished. It has been shown that within the limits of the upper mantle the market boundaries correspond to the known ones, distinguished by the super-long profiles: Phennolora, Quartz, Ruby and Svekalapka massif. Seismic boundaries of the second kind of transitional zone have been marked.
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publisher S. Subbotin Institute of Geophysics of the NAS of Ukraine
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spelling journalsuranua-geofizicheskiy-article-1077232020-10-07T11:35:07Z The structure of velocity mantle number of horizons under Phennoscandia according to seismic-tomography data Tsvetkova, T. A. Bugaenko, I. V. seismic tomography seismic boundaries of the second kind Seismic boundaries of the second kind have been distinguished under Phennoscandia according to three-dimensional P-velocity model of the mantle and velocity number of horizons of the upper mantle and its transitional zone has been shown. Four velocity horizons and corresponding seismic boundaries of the second kind have been distinguished. It has been shown that within the limits of the upper mantle the market boundaries correspond to the known ones, distinguished by the super-long profiles: Phennolora, Quartz, Ruby and Svekalapka massif. Seismic boundaries of the second kind of transitional zone have been marked. S. Subbotin Institute of Geophysics of the NAS of Ukraine 2016-02-01 Article Article application/pdf https://journals.uran.ua/geofizicheskiy/article/view/107723 10.24028/gzh.0203-3100.v38i1.2016.107723 Geofizicheskiy Zhurnal; Vol. 38 No. 1 (2016); 57-77 Геофизический журнал; Том 38 № 1 (2016); 57-77 Геофізичний журнал; Том 38 № 1 (2016); 57-77 2524-1052 0203-3100 ru https://journals.uran.ua/geofizicheskiy/article/view/107723/102691 Copyright (c) 2020 Geofizicheskiy Zhurnal https://creativecommons.org/licenses/by/4.0
spellingShingle seismic tomography
seismic boundaries of the second kind
Tsvetkova, T. A.
Bugaenko, I. V.
The structure of velocity mantle number of horizons under Phennoscandia according to seismic-tomography data
title The structure of velocity mantle number of horizons under Phennoscandia according to seismic-tomography data
title_full The structure of velocity mantle number of horizons under Phennoscandia according to seismic-tomography data
title_fullStr The structure of velocity mantle number of horizons under Phennoscandia according to seismic-tomography data
title_full_unstemmed The structure of velocity mantle number of horizons under Phennoscandia according to seismic-tomography data
title_short The structure of velocity mantle number of horizons under Phennoscandia according to seismic-tomography data
title_sort structure of velocity mantle number of horizons under phennoscandia according to seismic-tomography data
topic seismic tomography
seismic boundaries of the second kind
topic_facet seismic tomography
seismic boundaries of the second kind
url https://journals.uran.ua/geofizicheskiy/article/view/107723
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