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NTIS 바로가기자원환경지질 = Economic and environmental geology, v.57 no.1, 2024년, pp.41 - 50
박정영 (한국지질자원연구원 국토우주지질연구본부) , 조등룡 (한국지질자원연구원 국토우주지질연구본부) , 이승환 (한국지질자원연구원 국토우주지질연구본부) , 곽유정 (경북대학교 지질학과) , 박승익 (경북대학교 지질학과)
This study reports the structural geometry and folding mechanism of a regional-scale overturned fold in the Daecheong Island, central-western part of the Korean Peninsula. Based on low-hemisphere stereographic and down-plunge projections using data from a detailed field survey, we classify the regio...
Cho, D.-L., Lee, S.H. and Park, J.-Y. (2021) Geological report of the?Baengnyeongdo.Daecheongdo.Socheongdo sheets (1:50,000).?Korea Institute of Geoscience and Mineral Resources, 73p (in?Korean with English abstract).
Cho, M., Kim, Y. and Ahn, J. (2007) Metamorphic evolution of the?Imjingang Belt, Korea: Implications for Permo-Triassic Collisional?Orogeny. Int. Geol. Rev., v.49, p.30-51, doi: 10.2747/0020-6814.49.1.30.
Cho, M., Lee, Y., Kim, T., Cheong, W., Kim, Y. and Lee, S.R.?(2017) Tectonic evolution of Precambrian basement massifs and?an adjoining fold-and-thrust belt (Gyeonggi Marginal Belt),?Korea: An overview. Geosci. J., v.21, p.845-865, doi: 10.1007/s12303-017-0044-2.
de Jong, K., Han, S. and Ruffet, G. (2015) Fast cooling following a Late?Triassic metamorphic and magmatic pulse: implications for the?tectonic evolution of the Korean collision belt. Tectonophysics,?v.662, p.271-290, doi: 10.1016/j.tecto.2015.06.016.
Fitz-Diaz, E. and van der Pluijm, B. (2013) Fold dating: A new Ar/Ar illite dating application to constrain the age of deformation in?shallow crustal rocks. J. Struct. Geol., v.54, p.174-179, doi: 10.1016/j.jsg.2013.05.011.
Fossen, H. (2016) Structural Geology. Cambridge University Press. 524p.
Frehner, M. and Schmalholz, S.M. (2006) Numerical simulations of?parasitic folding in multilayers. J. Struct. Geol., v.28, p.1647-1657, doi: 10.1016/j.jsg.2006.05.008.
Hudleston, P.J. and Treagus, S.H. (2010) Information from folds: A?review. J. Struct. Geol., v.32, p.2042-2071, doi: 10.1016/j.jsg.2010.08.011.
Kee, W.-S., Kim, S.W., Kim, H., Hong, P., Kwon, C.W., Lee, H.-J.,?Cho, D.-L., Koh, H.J., Song, K.-Y., Byun, U.H., Jang, Y. and?Lee, B.C. (2019) Geologic map of Korea (Scale 1:1,000,000).?Korea Institute of Geoscience and Mineral Resources.
Kim, J.-N., Ree, J.-H., Kwon, S.-T., Park, Y., Choi, S.-J. and?Cheong, C.-S. (2000) The Kyonggi Shear Zone of the Central?Korean Peninsula: Late orogenic imprint of the North and South?China collision. J. Geol., v.108, p.469-478, doi: 10.1086/314412.
Kim, J.-Y. and Kim, T.-S. (1999) Occurrence and geological?significance of stromatolites from the Precambrian Strata in the?Socheong Island, Incheon, Korea. J. Korean Earth Sci. Soc.,?v.20, p.111-125 (in Korean with English abstract).
Kim, M.J., Park, J.-W., Lee, T.-H., Song, Y.-S. and Park, K.-H.?(2016) LA-MC-ICPMS U-Pb ages of the detrital zircons from?the Baengnyeong Group: Implications of the dominance of the?Mesoproterozoic zircons. Econ. Environ. Geol., v.49, p.433-444,?doi: 10.9719/EEG.2016.49.6.433 (in Korean with English abstract).
Kim, M.J., Ha, Y., Park, J.-W. and Park, K.-H. (2021) U-Pb ages?and Hf isotopic compositions of the detrital zircons from?Baengnyeongdo and Daecheongdo: Correlation with North Korea?and the North China Craton. J. Geol. Soc. Korea, v.57, p.17-33,?doi: 10.14770/jgsk.2021.57.1.17 (in Korean with English abstract).
Kim, S. and Choi, S.H. (2021) Geochemical studies on the mantle?source lithologies of late Cenozoic alkali basalts from?Baengnyeong, Pyeongtaek, and Asan in the Korean Peninsula.?Lithos, v.404-405, 106434, doi: 10.1016/j.lithos.2021.106434.
Kim, S.W., Oh, C.W., Williams, I.S., Rubatto, D., Ryu, I.-C., Rajesh,?V.J., Kim, C.-B., Guo, J. and Zhai, M. (2006) Phanerozoic high-pressure eclogite and intermediate pressure granulite facies?metamorphism in the Gyeonggi massif, South Korea: implications?for the eastward extension of the Dabie-Sulu continental collision?zone. Lithos, v.92, p.357-377, doi: 10.1016/j.lithos.2006.03.050.
Kim, S.W., Williams, I.S., Kwon, S. and Oh, C.W. (2008) SHRIMP?zircon geochronology and geochemical characteristics of metaplutonic rocks from the south-western Gyeonggi block, Korea:?implications for Paleoproterozoic to Mesozoic tectonic links?between the Korean Peninsula and eastern China. Precambrian?Res., v.162, p.475-497, doi: 10.1016/j.precamres.2007.10.006.
Kim, S.W., Kwon, S., Santosh, M., Williams, I.S. and Yi, K. (2011)?A Paleozoic subduction complex in Korea: SHRIMP zircon U-Pb ages and tectonic implications. Gondwana Res., v.20, p.890-903, doi: 10.1016/j.gr.2011.05.004.
Kim, S.W., Kwon, S., Park, S.-I., Yi, K., Santosh, M. and Kim, H.S.?(2017) Early to Middle Paleozoic tectonometamorphic evolution?of the Hongseong area, central western Korean Peninsula:?tectonic implications. Gondwana Res., v.47, p.308-322, doi:?10.1016/j.gr.2016.05.016.
Kim, S.W., Kwon, S., Santosh, M., Cho, D.-L., Kee, W.-S., Lee, S.-B. and Jeong, Y.-J. (2019) Detrital zircon U-Pb and Hf isotope?characteristics of the Early Neoproterozoic successions in the?central-western Korean Peninsula: Implication for the Precambrian?tectonic history of East Asia. Precambrian Res., v.322, p.24-41,?doi: 10.1016/j.precamres.2018.12.008.
Lacombe, O., Beaudoin, N.E., Hoareau, G., Labeur, A., Pecheyran,?C. and Callot, J.-P. (2021) Dating folding beyond folding, from?layer-parallel shortening to fold tightening, using mesostructures:?lessons from the Apennines, Pyrenees, and Rocky Mountains.?Solid Earth, v.12, p.2145-2157, doi: 10.5194/se-12-2145-2021.
Lee, B.Y., Oh, C.W., Cho, D.L., Zhai, M., Lee, B.C., Peng, P. and?Yi, K. (2019) The Devonian back-arc basin and Triassic arccontinent collision along the Imjingang belt in the Korean?Peninsula and their tectonic meaning. Lithos, v.328-329, p.276-296, doi: 10.1016/j.lithos.2019.01.011.
Lee, S.-J., Kim, J.-Y. and Lee, K.C. (2003) Bacterial microfossils?from Precambrian sedimentary rocks, Socheong Island, Korea. J.?Geological Soc. Korea. v.39, p.171-182 (in Korean with English?abstract).
Lim, S.-B., Choi, H.-I., Kim, B.C. and Kim, J.C. (1999) Depositional?systems of the Sedimentary basins (I)-Depositional systems and?their evolution of the Proterozoic Paegryeong Group and Taean?Formation. Korea Institute of Geology, Mining and Materials,?116p (in Korean).
Oh, C.W., Kim, S.W., Choi, S.G., Zhai, M., Guo, J. and Sajeev, K.?(2005) First finding of eclogite facies metamorphic event in?South Korea and its correlation with the Dabie-Sulu Collision?Belt in China. J. Geol., v.113, p.226-232, doi: 10.1086/427671.
Oh, C.-W., Imayama, T., Yi, S.-B., Kim, T., Ryu, I.-C., Jeon, J. and?Yi, K. (2014) Middle Paleozoic metamorphism in the Hongseong?area, South Korea, and tectonic significance for Paleozoic orogeny?in northeast Asia. J. Asian Earth Sci., v.95, p.203-216, doi:10.1016/j.jseaes.2014.08.011.
Park, J.-Y., Park, S.-I. and Choi, T. (2020) Microstructural and?geochronological analyses of Mesozoic ductile shear zones in the?Western Gyeonggi Massif, Korea: Implications for an orogenic?cycle in the East Asian continental margin. Minerals, 10, 362,?doi: 10.3390/min10040362.
Park, S.-I., Kim, S.W., Kwon, S., Thanh, N.X., Yi, K. and Santosh,?M. (2014) Paleozoic tectonics of the southwestern Gyeonggi?massif, South Korea: Insights from geochemistry, chromian-spinel chemistry and SHRIMP U-Pb geochronology. Gondwana?Res., v.26, p.684-698, doi: 10.1016/j.gr.2013.07.015.
Park, S.-I., Kwon, S., Kim, S.W., Hong, P.S. and Santosh, M. (2018)?A Mesozoic orogenic cycle from post-collision to subduction in?the southwestern Korean Peninsula: new structural, geochemical,?and chronological evidence. J. Asian Earth Sci., v.157, p.166-186, doi: 10.1016/j.jseaes.2017.08.009.
Park, S.-I., Noh, J., Cheong, H.J., Kwon, S., Song, Y., Kim, S.W.?and Santosh, M. (2019) Inversion of two-phase extensional basin?systems during subduction of the Paleo-Pacific Plate in the SW?Korean Peninsula: Implication for the Mesozoic "Laramide-style" orogeny along East Asian continental margin. Geosci.?Front., v.10, p.909-925, doi: 10.1016/j.gsf.2018.11.008.
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Torremans, K., Muchez, P. and Sintubin, M. (2018) Non-cylindrical?parasitic folding and strain partitioning during the Pan-African?Lufilian orogeny in the Chambishi-Nkana Basin, Central African?Copperbelt. Solid Earth, v.9, p.1011-1033, doi: 10.5194/se-9-1011-2018.
Wang, Y., Zwingmann, H., Zhou, L., Lo, C.-h., Viola, G. and Hao, J.?(2016) Direct dating of folding events by 40 Ar/ 39 Ar analysis of?synkinematic muscovite from flexural-slip planes. J. Struct.?Geol., v.83, p.46-59, doi: 10.1016/j.jsg.2015.12.003
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