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      평안누층군의 재조명: 송림 조산운동의 변성작용과 변형작용 = Reassessment of the Pyeongan Supergroup: Metamorphism and Deformation of the Songrim Orogeny

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      https://www.riss.kr/link?id=A106425067

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      다국어 초록 (Multilingual Abstract)

      Pyeongan Supergroup (PS) in the Taebaeksan basin preserves key geological evidences to understand the tectonometamorphic evolution of the Songrim orogeny that affected the formation of the Korean Peninsula during the late Paleozoic to early Mesozoic. The aims of this paper therefore are to investigate the characteristics of the Songrim orogeny based on the previous results of metamorphism and deformations of the PS, and then to review geological significance and research necessity of the PS. Age distributions and Th/U ratio of detrital zircon in the PS indicate that sedimentary environment of the Taebaeksan basin during the late Paleozoic was arc-related foreland basin and retro-arc foreland basin at the active continental margin. In addition, the main magmatic activities occurred in the early Pennsylvanian and Middle Permian, thus sedimentation and magmatic activities occurred simultaneously. The PS was affected by lower temperature-medium pressure (M1) and medium temperature and pressure (M2) regional metamorphism during the Songrim orogeny. During M1, slate and phyllite containing chloritoid, andalusite, kyanite porphyroblasts intensively deformed by E-W bulk crustal shortening combined with folding and shearing. And garnet and staurolite porphyroblasts were formed during the N-S bulk crustal shortening accompained by M2. Such regional metamorphism of the PS is interpreted to occur in an area where high strain zone is localized during ca. 220-270 Ma. In order to elucidate the evolution of the Taebaeksan basin and tectonic features of the Songrim orogeny, it is expected that the study will be carried out such as the regional distribution of metamorphic zones developed in the PS, characteristics and timing of deformations, and late Paleozoic paleo-geography of the Taebaeksan basin.
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      Pyeongan Supergroup (PS) in the Taebaeksan basin preserves key geological evidences to understand the tectonometamorphic evolution of the Songrim orogeny that affected the formation of the Korean Peninsula during the late Paleozoic to early Mesozoic. ...

      Pyeongan Supergroup (PS) in the Taebaeksan basin preserves key geological evidences to understand the tectonometamorphic evolution of the Songrim orogeny that affected the formation of the Korean Peninsula during the late Paleozoic to early Mesozoic. The aims of this paper therefore are to investigate the characteristics of the Songrim orogeny based on the previous results of metamorphism and deformations of the PS, and then to review geological significance and research necessity of the PS. Age distributions and Th/U ratio of detrital zircon in the PS indicate that sedimentary environment of the Taebaeksan basin during the late Paleozoic was arc-related foreland basin and retro-arc foreland basin at the active continental margin. In addition, the main magmatic activities occurred in the early Pennsylvanian and Middle Permian, thus sedimentation and magmatic activities occurred simultaneously. The PS was affected by lower temperature-medium pressure (M1) and medium temperature and pressure (M2) regional metamorphism during the Songrim orogeny. During M1, slate and phyllite containing chloritoid, andalusite, kyanite porphyroblasts intensively deformed by E-W bulk crustal shortening combined with folding and shearing. And garnet and staurolite porphyroblasts were formed during the N-S bulk crustal shortening accompained by M2. Such regional metamorphism of the PS is interpreted to occur in an area where high strain zone is localized during ca. 220-270 Ma. In order to elucidate the evolution of the Taebaeksan basin and tectonic features of the Songrim orogeny, it is expected that the study will be carried out such as the regional distribution of metamorphic zones developed in the PS, characteristics and timing of deformations, and late Paleozoic paleo-geography of the Taebaeksan basin.

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      참고문헌 (Reference)

      1 김동연, "영암-강진 일원 변성사질암의 SHRIMP U-Pb 저어콘 연대" 대한자원환경지질학회 48 (48): 287-299, 2015

      2 김유홍, "강릉탄전 북부 지역의 지질구조" 대한지질학회 48 (48): 131-147, 2012

      3 de Jong, K., "Triassic 40Ar/39Ar ages from the Sakaigawa unit, Kii Peninsula, Japan: implication for possible merger of the Central Asian Orogenic Belt with large-scale tectonic systems of the East Asia margin" 98 : 1529-1556, 2009

      4 Kim, S. W., "Tracking Paleozoic evolution of the South Korean Peninsula from detrital zircon records: Implications for the tectonic history of East Asia" 50 : 195-215, 2017

      5 Hwang, S. G., "Thrust and intrusion tectonics in the Jeomchon area" 60-67, 1998

      6 Kim, H. S., "The tectonic boundary between the Okcheon and Taebaeksan basins, South Korea: A restraining bend of a continental transform fault between the South and North China Cratons" 27 : 1-10, 2018

      7 이창진, "The stratigraphy of the Pyeongan Supergroup of South Korea: A review" 한국지구과학회 31 (31): 419-429, 2010

      8 Sanislav, I.V., "The inter-relationships between long-lived metamorphism, pluton emplacement and changes in the direction of bulk shortening during orogenesis" 29 : 513-536, 2011

      9 Kim, M.G., "The Pyeongan Supergroup (upper Paleozoic–Lower Triassic) in the Okcheon Belt, Korea: A review of stratigraphy and detrital zircon provenance, and its implications for the tectonic setting of the eastern Sino-Korean Block" 185 : 1170-1186, 2018

      10 Kawasaki, S., "The Flora of the Heian (Pyongan)System. Part 1" 6 (6): 20-, 1927

      1 김동연, "영암-강진 일원 변성사질암의 SHRIMP U-Pb 저어콘 연대" 대한자원환경지질학회 48 (48): 287-299, 2015

      2 김유홍, "강릉탄전 북부 지역의 지질구조" 대한지질학회 48 (48): 131-147, 2012

      3 de Jong, K., "Triassic 40Ar/39Ar ages from the Sakaigawa unit, Kii Peninsula, Japan: implication for possible merger of the Central Asian Orogenic Belt with large-scale tectonic systems of the East Asia margin" 98 : 1529-1556, 2009

      4 Kim, S. W., "Tracking Paleozoic evolution of the South Korean Peninsula from detrital zircon records: Implications for the tectonic history of East Asia" 50 : 195-215, 2017

      5 Hwang, S. G., "Thrust and intrusion tectonics in the Jeomchon area" 60-67, 1998

      6 Kim, H. S., "The tectonic boundary between the Okcheon and Taebaeksan basins, South Korea: A restraining bend of a continental transform fault between the South and North China Cratons" 27 : 1-10, 2018

      7 이창진, "The stratigraphy of the Pyeongan Supergroup of South Korea: A review" 한국지구과학회 31 (31): 419-429, 2010

      8 Sanislav, I.V., "The inter-relationships between long-lived metamorphism, pluton emplacement and changes in the direction of bulk shortening during orogenesis" 29 : 513-536, 2011

      9 Kim, M.G., "The Pyeongan Supergroup (upper Paleozoic–Lower Triassic) in the Okcheon Belt, Korea: A review of stratigraphy and detrital zircon provenance, and its implications for the tectonic setting of the eastern Sino-Korean Block" 185 : 1170-1186, 2018

      10 Kawasaki, S., "The Flora of the Heian (Pyongan)System. Part 1" 6 (6): 20-, 1927

      11 Cho, D-L, "Termination of the Permo–Triassic Songrim (Indosinian)orogeny in the Ogcheon belt, South Korea: Occurrence of ca. 220 Ma post-orogenic alkali granites and their tectonic implications" 105 : 191-200, 2008

      12 Kim, H. S., "Tectonometamorphic evolution of the Permo-Triassic Songrim (Indosinian) orogeny: Evidence from the late Paleozoic Pyeongan Supergroup in the northeastern Taebaeksan Basin, South Korea" 101 : 483-498, 2012

      13 Kim, H. S., "Tectonic linkage between the Korean Peninsula and mainland Asia in the Cambrian: insights from U–Pb dating of detrital zircon" 368 : 204-218, 2013

      14 Chough, S. K., "Tectonic and sedimentary evolution of the Korean peninsula: a review and new view" 52 : 175-235, 2000

      15 Cheong, C. H., "Stratigraphy and paleontology of the Samcheog coalfield, Gangweondo, Korea (1)" 5 : 13-56, 1969

      16 Hyun Suk Lee, "Sequence stratigraphy of Pyeongan Supergroup (Carboniferous-Permian), Taebaek area, mideast Korea" 한국지질과학협의회 10 (10): 369-389, 2006

      17 Kim, H. S., "Sediment grain size does matter: implications of spatiotemporal variations in detrital zircon provenance for early Paleozoic peri-Gondwana reconstructions" 108 : 1509-1526, 2019

      18 Ko, J., "Sandstone petrology of the Pyeongan Supergroup, Taebaeksan region, Korea; implications for the Carboniferous-Triassic tectonic history of East Asia" 69 : 711-719, 1999

      19 Han, R., "SHRIMP U–Pb zircon ages of pyroclastic rocks in the Bansong Group, Taebaeksan Basin, South Korea and their implication for the Mesozoic tectonics" 9 : 106-117, 2006

      20 Kim, J. H., "Pre-Jurassic thrust movement in Danyang area, Danyang coaldield, Korea" 30 : 35-40, 1994

      21 Yu, K. M., "Petrology of late Paleozoic early Mesozoic Pyeongan Group sandstones, Gohan area, South Korea and its provenance and tectonic implications" 109 : 321-338, 1997

      22 Kim, H.S., "Permo–Triassic changes in bulk crustal shortening direction during deformation and metamorphism of the Taebaeksan Basin, South Korea using foliation intersection/inflection axes:implications for tectonic movement at the eastern margin of Eurasia during the Songrim (Indosinian)orogeny" 587 : 133-154, 2013

      23 김형수, "P-T modeling of margarite + anorthite-bearing Al-rich metapelites in the Taebaeksan basin, South Korea: implications for accretion-related metamorphism during the Late Permian–Triassic orogeny" 한국지질과학협의회 16 (16): 207-227, 2012

      24 Kim, H.S., "P-T modeling of kyanite and sillimanite paramorphs growth after andalusite in late Paleozoic Pyeongan Supergroup, South Korea:implication for metamorphism during the Mesozoic tectonic evolution" 118 : 269-286, 2010

      25 Kodaira, R., "Note on a new species of Schizoneura from Chosen(Korea)" 3 (3): 1924

      26 Kim, H.S., "Multiple metamorphic episodes recorded in the Paleozoic Pyeongan Supergroup on the northeastern margin of the Yeongnam massif, South Korea: Implications for the Songrim (Indosinian) orogeny" 113 : 883-896, 2015

      27 Choi, P. Y., "Middle Triassic to Middle Jurassic deformations in the SW Mungyeong coal field, Korea" 68-73, 1998

      28 Hee Sagong, "Mesozoic episodic magmatism in South Korea and its tectonic implication" American Geophysical Union (AGU) 24 (24): 2005

      29 Lee, H.S., "Lithostratigraphy and depositional environments of the Pyeongan Supergroup (Carboniferous-Permain) in the Taebaek area, mid-east Korea" 26 : 339-352, 2006

      30 Zhang, S. H., "Hornblende thermobarometry of the Carboniferous granitoids from the Inner Mongolia Paleo-uplift: implications for the tectonic evolution of the northern margin of North China block" 87 : 123-141, 2006

      31 Choi, D. K., "Geology and Tectonic evolution of the Korean Peninsula" Seoul National University Press 277-, 2014

      32 Tateiwa. I., "Geological atlas of Chosen (Korea), no. 12, Tonhchang, Ulsan, Pyolchangri and Songchon sheets, 1:50,000"

      33 Korea Research Institute of Geoscience and Mineral Resources(KIGAM), "Geological Altlas of the Samcheog Coalfield, 1:25,000 and Geology of the Samcheog Coafield"

      34 Geological Investigation Corps of the Taebaeksan Region(GICTR), "Geologic Atlas of Taebaeksan Region" Geol. Soc. Korea 1962

      35 Hornik, K., "Frequently asked questions on R"

      36 Han, R., "Extensional deformation along the southern boundary of the Gyeonggi Massif, South Korea: structural characteristics, age constraints, and tectonic implications" 103 : 757-776, 2013

      37 Kim, S. W., "Detrital zircon U–Pb geochronology and tectonic implications of the Paleozoic sequences in western South Korea" 95 : 217-227, 2014

      38 Lee, Y.I., "Detrital modes of the Pyeongan Supergroup (Late Carboniferous-Early Triassic) sandstones in the Samcheog coalfield, Korea:implications for provenance and tectonic setting" 119 : 219-238, 1998

      39 Kim, J. H., "Comparison of the Ordovician-Carboniferous boundary between Korea and NE China: implications for correlation and tectonic evolution" 4 : 39-53, 2001

      40 Whiteny, D.L., "Abbreviations for names of rock-forming minerals" 95 : 185-187, 2010

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