'On the eclogites of Norway ' 65 years later

The Western Gneiss Region (WGR) of Norway consists largely of Proterozoic orthogneisses, but also contains paragneisses, peridotites, anorthosites, gabbros and coarse-grained intermediate-acid 'rapakivi granites'. All of these lithologies enclose clogites. Structural and isotopic data sugg...

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Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.604.2790
http://www.minersoc.org/pages/Archive-MM/Volume_51/51-361-333.pdf
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spelling ftciteseerx:oai:CiteSeerX.psu:10.1.1.604.2790 2023-05-15T16:30:22+02:00 'On the eclogites of Norway ' 65 years later The Pennsylvania State University CiteSeerX Archives application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.604.2790 http://www.minersoc.org/pages/Archive-MM/Volume_51/51-361-333.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.604.2790 http://www.minersoc.org/pages/Archive-MM/Volume_51/51-361-333.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://www.minersoc.org/pages/Archive-MM/Volume_51/51-361-333.pdf eclogite gneisses metamorphism peridotites Norway text ftciteseerx 2016-01-08T14:10:41Z The Western Gneiss Region (WGR) of Norway consists largely of Proterozoic orthogneisses, but also contains paragneisses, peridotites, anorthosites, gabbros and coarse-grained intermediate-acid 'rapakivi granites'. All of these lithologies enclose clogites. Structural and isotopic data suggest that many of these rocks were juxtaposed by early Caledonian thrusting prior to eclogite formation at ca. 425 Ma. Low-P protoliths can be demonstrated for many eclogites. Prograde metamorphism to eclogite facies is demonstrated by inclusion suites within garnet grains and zoning of eclogite minerals. The regional distribution of Kn (gnt/cpx) and X ~ x shows a decrease in Tmax, and in the corresponding P, away from the present coastline. The lowest values (500 ~ 10 kbar) are found in the Sunnfjord area and the highest ( ~ 800 ~ along the coast of Sunnmore and Nordmore. Maximum pressures were reached at temperatures 100-200 ~< Tmax- This P-T- t path is consistent with the preservation ofjadeite-rich cpx (and possible coesite) in the coastal regions. Earlier overestimates of P. based on partitioning of A1 between opx and gnt, resulted from combination of early low-T (low-A1) opx and T values derived from cpx/gnt equilibrated at Tmax. Despite pervasive later amphibolitization, high-P assemblages (phengite +kyanite, omphacite +quartz) are locally preserved within gneisses near the coast. The high-P metamorphism can be explained by westward subduction of the Baltic continental plate beneath the Greenland plate, during the Caledonian orogeny. At least some of the Mg-Cr garnet peridotites of the WGR were derived from low-P protoliths (spinel + chlorite peridotites, enclosing high-A1 pyroxenites). While Sm-Nd mineral ages of most eclogites cluster around 425 Ma, garnet peridotites and their enclosed garnet pyroxenites give Proterozoic Sm-Nd mineral ages (1700-1000 Ma). The tectonic position of the Mg-Cr garnet peridotites, relative to the Caledonian high-pressure metamorphism, remains to be resolved. Text Greenland Unknown Greenland Norway
institution Open Polar
collection Unknown
op_collection_id ftciteseerx
language English
topic eclogite
gneisses
metamorphism
peridotites
Norway
spellingShingle eclogite
gneisses
metamorphism
peridotites
Norway
'On the eclogites of Norway ' 65 years later
topic_facet eclogite
gneisses
metamorphism
peridotites
Norway
description The Western Gneiss Region (WGR) of Norway consists largely of Proterozoic orthogneisses, but also contains paragneisses, peridotites, anorthosites, gabbros and coarse-grained intermediate-acid 'rapakivi granites'. All of these lithologies enclose clogites. Structural and isotopic data suggest that many of these rocks were juxtaposed by early Caledonian thrusting prior to eclogite formation at ca. 425 Ma. Low-P protoliths can be demonstrated for many eclogites. Prograde metamorphism to eclogite facies is demonstrated by inclusion suites within garnet grains and zoning of eclogite minerals. The regional distribution of Kn (gnt/cpx) and X ~ x shows a decrease in Tmax, and in the corresponding P, away from the present coastline. The lowest values (500 ~ 10 kbar) are found in the Sunnfjord area and the highest ( ~ 800 ~ along the coast of Sunnmore and Nordmore. Maximum pressures were reached at temperatures 100-200 ~< Tmax- This P-T- t path is consistent with the preservation ofjadeite-rich cpx (and possible coesite) in the coastal regions. Earlier overestimates of P. based on partitioning of A1 between opx and gnt, resulted from combination of early low-T (low-A1) opx and T values derived from cpx/gnt equilibrated at Tmax. Despite pervasive later amphibolitization, high-P assemblages (phengite +kyanite, omphacite +quartz) are locally preserved within gneisses near the coast. The high-P metamorphism can be explained by westward subduction of the Baltic continental plate beneath the Greenland plate, during the Caledonian orogeny. At least some of the Mg-Cr garnet peridotites of the WGR were derived from low-P protoliths (spinel + chlorite peridotites, enclosing high-A1 pyroxenites). While Sm-Nd mineral ages of most eclogites cluster around 425 Ma, garnet peridotites and their enclosed garnet pyroxenites give Proterozoic Sm-Nd mineral ages (1700-1000 Ma). The tectonic position of the Mg-Cr garnet peridotites, relative to the Caledonian high-pressure metamorphism, remains to be resolved.
author2 The Pennsylvania State University CiteSeerX Archives
format Text
title 'On the eclogites of Norway ' 65 years later
title_short 'On the eclogites of Norway ' 65 years later
title_full 'On the eclogites of Norway ' 65 years later
title_fullStr 'On the eclogites of Norway ' 65 years later
title_full_unstemmed 'On the eclogites of Norway ' 65 years later
title_sort 'on the eclogites of norway ' 65 years later
url http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.604.2790
http://www.minersoc.org/pages/Archive-MM/Volume_51/51-361-333.pdf
geographic Greenland
Norway
geographic_facet Greenland
Norway
genre Greenland
genre_facet Greenland
op_source http://www.minersoc.org/pages/Archive-MM/Volume_51/51-361-333.pdf
op_relation http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.604.2790
http://www.minersoc.org/pages/Archive-MM/Volume_51/51-361-333.pdf
op_rights Metadata may be used without restrictions as long as the oai identifier remains attached to it.
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