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Magnetic fabric and rock magnetic studies of metasedimentary rocks in the central Okcheon Metamorphic Belt, Korea

Authors
Park, Yong-HeeDoh, Seong-JaeKim, WonnyonSuk, Dongwoo
Issue Date
2005
Publisher
SpringerOpen
Keywords
magnetic fabric; magnetic mineralogy; metamorphism; Okcheon belt
Citation
Earth, Planets and Space, v.57, no.9, pp.855 - 869
Indexed
SCIE
SCOPUS
Journal Title
Earth, Planets and Space
Volume
57
Number
9
Start Page
855
End Page
869
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/46475
DOI
10.1186/BF03351863
ISSN
1343-8832
Abstract
Anisotropy of magnetic susceptibility (AMS) and rock magnetic studies have been carried out for the metasedimentary rocks in the central Okcheon Metamorphic Belt. The study area is divided into three metamorphic zones: the biotite zone, the garnet zone, and the sillimanite + andalusite zone from southeast to northwest. Magnetic foliation dipping to the northwest is the dominant magnetic fabric in the biotite zone. Magnetic lineation plunging down-dip of the vertical cleavage plane is appeared in the southeastern part of the garnet zone, while magnetic lineation plunging to southeast prevails in the middle and northwestern parts of the garnet zone. It is interpreted that this apparent synform structure, defined by AMS fabric data, was formed by successive top-to-the- southeast vergent thrusting followed by back-steepening process during the regional metamorphism in the Late Paleozoic. In the sillimanite + andalusite zone, AMS fabric is clearly defined and may reflect a tectonic fabric, recorded during the thermal metamorphism in the middle Jurassic, despite the scarcity of rock fabric in the field. The spatial distribution of magnetic mineralogy, defined by the rock magnetic results, implies the 500 degrees C isotherm at the boundary between the biotite and garnet zones, which is associated with the transformation of pyrrhotite into magnetite above 500 degrees C under the oxidizing condition.
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COLLEGE OF SCIENCE AND CONVERGENCE TECHNOLOGY > DEPARTMENT OF MARINE SCIENCE AND CONVERGENCE ENGINEERING > 1. Journal Articles

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