• 제목/요약/키워드: Daebo orogeny

검색결과 38건 처리시간 0.024초

남한(南韓)의 신기화강암류(新期花崗岩類)의 관입시기(貫入時期)와 지각변동(地殼變動) (Study on the Intrusion Epochs of Younger Granites and their Bearing to Orogenies in South Korea)

  • 김옥준
    • 자원환경지질
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    • 제4권1호
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    • pp.1-9
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    • 1971
  • The "Younger Granites" in Korea were being believed to be late Cretaceous in age and named "Bulkuksa granites" by all previous works until the writer had discovered Jurassic granite in 1963. The present paper is to prove its validity by age dating on these granites which was carried out by Professor Y. Ueda, Tohoku University, Japan. The age of 37 granites samples from various localities ranges from 68 my to 181 my. Of these 10 samples belonged to early Jurassic, 6 samples to mid-Jurassic, 4 samples to late Jurassic, 5 samples to early Cretaceous, and 12 samples to late Cretaceous in age. It is of the writer's opinion that the granites intruded in from early Jurassic to early Cretaceous age belong to Daebo granites and are syntectonic plutons associated with Daebo orogeny, and only those of late Cretaceous age belong to Bulkuksa granites that were associated with Bulkuksa disturbance. Daebo granites are aligned along NE-SW Sinian direction in the middle parts of Korea and crop out in the cores of folded mountains which were formed by Daebo Orogeny, such as Charyong, Noryong, Sobaek, and Dukyu Ranges. On the contrary Bulkuksa granites are restricted in Kyongsang basin and adjacent few localities in distribution and show no alignment. Granites supposedly associated with other disturbances of post-precambrian Have not been found so far in S. Korea. Age dating of granites has revealed that Daebo orogeny might be continuous from Songrim distur bance of late Triassic age. From this viewpoint, it could be assumed that Daedong system of Jurassic age were deposited in separate intermontain basins while Daebo orogeny was active, so that Daedong system in separate localities in Korea could not been correlated in their lithology as well as stratig raphy.

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Precambrian Geology and Structure of the Central Region of South Korea

  • Kim, Ok Joon
    • 자원환경지질
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    • 제5권4호
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    • pp.231-239
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    • 1972
  • The central region of South Korea is composed of Precambrian formations and Jurassic Daebo granites and is divided tectonically into three provinces, that is, the Ok chon geosynclinal zone in the middle, the Kyonggi massif on the north and northwest side, and the Ryongnam massif on the south and southeast side. The general trend of the Okchon geosynclinal zone and the distribution of Daebo granites is northeast, the Sinian direction. The Kyonggi massif is composed of Precambrian Y onchon system, Sangwon system, gneisses, and Daebo granites, and the Ryongnam massif also Precambrian Ryongnam and Yulri systems, gneisses, and Daebo granites. Precambrian formations in both areas are of flysch type sediments and may be roughly correlated with each other. These formations except Sangwon and Yulri systems are thought to be early to middle Precambrian age and have acted as basement for the Okchon geosyncline where late Precambrian Okchon system was deposited. The Okchon geosynclinal zone is divided into paleogeosynclinal zone to southwestern parts where the Okchon system is distributed, and neogeosynclinal zone to northeastern parts where nonmetamorphosed Paleozoic sediments are dominantly cropped out. Both zones are separated by upthrust created by Daebo orogeny of Jurassic period, which continues southwesterly to bind the Okchon geosynclinal zone and the Ryongnam massif at southwestern parts bisecting Korea peninsula diagonally. Three periods of structural development are recognized in the area. Folds and faults of preTriassic age prevail in the Kyonggi massif. Many isoclinal folds and thrusts originated by Jurassic Daebo orogeny are aligned in the Okchon paleogeosynclinal zone paralleling to the geosynclinal axis so that same formation appears repeatedly in narrow strips, whereas fold axis in neogeosynclinal zone trerid west-northwesterly which might be of Triassic in age and modified by later Daebo orogeny. Discontinuity of geology and structure of Okchon geosynclinal zone is attributed to shifting of the geosyncline through geologic time.

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반송층군의 층서, 퇴적시기, 분지 진화에 관한 고찰 (A Review on the Stratigraphy, Depositional Period, and Basin Evolution of the Bansong Group)

  • 최영기;박승익;최태진
    • 자원환경지질
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    • 제56권4호
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    • pp.385-396
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    • 2023
  • 단양-영월-정선지역 옥천습곡단층대에서 북동-남서 방향의 충상단층대를 따라 분포하는 중생대 반송층군은 페름기-트라이아스기 송림조산운동 혹은 쥐라기 대보조산운동의 기록을 간직하고 있기 때문에 한반도 중생대 조산윤회와 지구조진화를 설명하는 데 있어 매우 중요하다. 본 논평에서는 반송층군의 층서, 퇴적시기, 그리고 분지발달사에 관한 그간 연구를 종합하고 향후 연구방향을 제시하고자 한다. 한반도 남부의 중생대 지구조진화 과정에서 반송층군이 가지는 의미에 대한 시각은 크게 두 가지로 나뉜다. 전통적인 견해는 송림조산운동 후기 혹은 종료 후에 (횡)인장 분지에 반송층군이 퇴적된 후 대보조산운동에 의해 변형이 발생한 것으로 간주한다. 이러한 해석은 단양탄전지역을 중심으로 획득한 층서 및 고생물자료와 구조지질연구 결과에 근거한다. 반면 근래 연구 결과로서 반송층군을 대보조산운동과 관련된 조산동시성 퇴적작용의 산물로 보는 해석이 존재한다. 이러한 대안적 시각은 영월지역 일대에 분포하는 화산쇄설암에 대한 U-Pb 절대연령과 해당 지역의 구조지질학적 해석 결과를 바탕으로 한다. 하지만 두 모델 모두 반송층군으로 분류된 퇴적층에서 도출된 고생물자료와 절대연령자료를 종합적으로 설명하지 못한다. 이는 퇴적학, 구조지질학, 지질연대학, 암석학, 지화학 연구를 통해 획득한 다학제적 자료를 종합한 새로운 분지 진화 모델이 필요하다는 점을 시사한다.

옥천지향사대(沃川地向斜帶) 동남대(東南帶)에서의 화성활동(火成活動)(I): 남원(南原)-거창(居昌)-상주(尙州) 지역(地域)을 중심(中心)으로 (The study on the Igneous Activity in the Southeastern Zone of the Ogcheon Geosynclinal Belt, Korea(I) with the Igneous Activity in Namweon-Geochang-Sangju Area)

  • 김용준;박영석;주승환;오민수
    • 자원환경지질
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    • 제22권4호
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    • pp.355-370
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    • 1989
  • Igneous rocks of study area consist of Pre-Cambrian orthogneiss, Devonian granite, Triassic foliated granites and Jurassic granites distributed along the southeast margin of Ogcheon Geosynclinal belt(SE-zone), and irregular shaped granitic stocks in the central part of the belt(C-zone). Anorthosite and gaabbro are also present in southern part of the SE-zone in the belt and intruded into gneiss complex of Ryongnam massif. Distribuition of foliated granites shows three linear arrangements which are composed of hornblende-biotite foliated granodiorite, porphyritic foliated granodiorite, biotite foliated granodiorite, leuco foliated granite and two mica foliated granite. Foliated granites generated by dextral strike slip movement at deep level. Jurassic granites composed of several rock facies are considered to be formed by differentiation of magma during Daebo Orogeny. A general trend of the chemical composition of these igneous rocks in study area suggests that most of them corresponding to calc-alkaline rock series was affected under orogeny and I-type granite except for two mica foliated granite. In chondrite normalised REE pattern of these igneous rocks, LREE shows more variable range and strong (-)Eu anomaly than HREE. Geochronological episodes of igneous activity from early Proterozoic to Cretaceous in SE-zone of Ogcheon Geosynclinal belt are two more Pre-Cambrian Orogeny, Devonian Orogeny(Variscan), Songrim Disturbance, Daebo Orogeny and Bulkuksa Disturbance.

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차령화강암(車嶺花崗岩) 저반(底盤)과 이에 관련된 금속광상(金屬鑛床)의 암석학적(岩石學的) 및 지질구조적(地質構造的) 연구(硏究) (The Petrochemical and Structural Study on the Charyong Batholith and its Associated Metallic Deposits)

  • 김옥준
    • 자원환경지질
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    • 제10권3호
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    • pp.107-117
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    • 1977
  • The Charyong batholith extends northeasterly from the west coast to the west of Wonju in the central parts of Korean Penninsula. The batholith is separated by the metamorphic complex into the northern and the southern granites. and is believed to intrude during the Daebo orogeny of early Jurassic to early Cretaceous age. It constitutes a sort of anticlinorium and the metamorphic complex can be regarded as a huge roof pendant. The modal analysis indicates that the Charyong batholith belongs to a series of adamellite-granodiorte-to-nalite. The oxidation property happened during a magmatic segregation reveals that the batholith shows in general orogenic assimilation trend. The granites of early to middle Jurassic age show orogenic assimilation trend, whereas those of late Jurassic to early Cretaceous age post orogenic noassimilation trend. The fracture system of the whole region is two folds: the fractures having attitute of $N25{\sim}40^{\circ}E$ and $70^{\circ}SE$ are regarded as tension fractures, and those of NS, and 50E to vertical and $N50^{\circ}E$ and $80^{\circ}E$ to vertical as shear fractures. All these facts suggest definitely that the Charyong batholith is the syntectonic intrusives during the Daebo orogeny. The mineral deposits in the area studied are gold-silver deposits in majority which was named by O,J.Kim(1970) as the Chonan metallogenic province. They are sulfides baring quartz veins which were emplaced along the tension and shear fractures originated by the Daebo orogeny.

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충남 대천해수욕장과 서천군 마량리 지역에 분포된 남포층군 변성퇴적암층의 변성지구조 진화 (The Tectono-metamorphic Evolution of Metasedimentary Rocks of the Nampo Group Outcropped in the Area of the Daecheon Beach and Maryangri, Seocheon-gun, Chungcheongnam-do)

  • 송용선;최정윤;박계헌
    • 암석학회지
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    • 제17권1호
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    • pp.1-15
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    • 2008
  • 충남 대천해수욕장부근과 서천군 마량리 인대에 변성역암, 변성사암, 천매암 등으로 구성된 변성퇴적 암층이 노출되어 있다. 원암의 구성으로 볼 때 남포층군 중의 조계리층에 대비되며, 대표적인 변성광물군은 흑운모-백운모-석영(${\pm}$사장석${\pm}$녹니석)과 흑운모-백운모-석류석-석영(${\pm}$사장석${\pm}$녹니석)으로 중압변성의 각섬암상중 석류석대에 속한다. 지질온도압력계에 의해 계산된 온도-압력조건은 $560{\sim}595^{\circ}C$$6.9{\sim}8.2\;kb$이다. 천매암에서 분리된 흑운모의 K-Ar 연대는 $143.2{\pm}3.6\;Ma$, $122.6{\pm}2.4\;Ma$$124.8{\pm}2.4\;Ma$인데 뒤의 두 연대는 후기에 열적교란을 받은 것으로 판단된다. 기 발표된 연대측정에 의하면 대동누층군의 생성시기는 $187{\sim}175\;Ma$로 (Han et al., 2006; Jeon et al., 2007) 이 연구의 결과들과 조합하여 대보조산운동기에 일어난 이 지역에서의 변성지구조적 진화과정을 유추하였다. 남포층군 퇴적 직후인 175 Ma 부근에 습곡작용과 중첩된 트러스트운동으로 지각의 두께증가가 시작되었고, 정점변성작용을 거친 후 지각확장에 따른 정단층운동으로 흑운모의 폐쇄온도까지 빠르게 삭박되면서 냉각되는 과정을 겪었다.

보성(寶城)-순천(順天) 지역(地域)에 분포(分布)하는 정편마암류(正片麻岩類)의 지질시대(地質時代)와 성인(成因)에 대(對)한 연구(硏究) (Geochronology and Petrogenesis on Orthogneiss in the Bosung-Suncheon area)

  • 김용준
    • 자원환경지질
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    • 제21권1호
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    • pp.69-83
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    • 1988
  • Orthogneiss of the study area is meta-igneous complex that composed of granite gneiss, porphyroblastic gneiss and migmatitic gneiss. Migmatitic gneiss produced from granite gneiss and porphyroblastic gneiss by strong ductile shearing. These rocks show mostly gneissic and partly mortar textures by strong regional metamorphism and ductile shearing during several orogenies. $^{40}Ar-^{39}Ar$ incremental-release ages of these rocks have been determined for 1 hornblende. 1 biotite and 3 muscovite concentrates separated from orthogneisses in this area. Ages of regional metamorphism and ductile shearing of these rocks are more than 5 stages(1500 Ma, 260 Ma, 190 Ma, 180-170 Ma and 160 Ma) under $300^{\circ}C$ to $500^{\circ}C$. These rocks had not been nearly effected by Daebo orogeny, because this area is far from Daebo granite bodies. The general trend of major chemical composition and mineral composition of these orthogneisses suggest that these rocks are some series of differentiated products from magma.

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경기육괴서북부(京畿陸塊西北部)의 변성암복합체(變成岩複合體)의 층서(層序)와 지질구조(地質構造) (The Stratigraphy and Geologic Structure of the Metamorphic Complex in the Northwestern Area of the Kyonggi Massif)

  • 김옥준
    • 자원환경지질
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    • 제6권4호
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    • pp.201-216
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    • 1973
  • Being believed thus far to be distributed in the wide areas in the vicinity of Seoul, the capital city of Korea, the Yonchon System in its type locality in Yonchon-gun from which the name derived was never previously traced down or correlated to the Precambrian metamorphic complex in Seoul area where the present study was carried out. Due to in accessibility to Yonchon area, the writer also could not trace the system down to the area studied so as to correlate them. The present study endeavored to differentiate general stratigraphy and interprete the structure of the metamorphic complex in the area. In spite of the complexity of structure and rapid changes in lithofacies of the complex, it was succeeded to find out the key bed by which the stratigraphy and structure of the area could be straightened out. The keybeds were the Buchon limestone bed in the western parts of the area; Daisongri quartzite bed cropped out in the southeastern area; Jangrak quartzite bed scattered in the several localities in the northwest, southwest, and eastern parts of the area; and Earn quartzite bed isolated in the eastern part of the area. These keybeds together with the broad regional structure made it possible to differentiated the Precambrian rocks in ascending order into the Kyonggi metamorphic complex, Jangrak group and Chunsung group which are in clinounconformable relation, and the first complex were again separated in ascending order into Buchon, Sihung, and Yangpyong metermorphic groups. Althcugh it has being vaguely called as the Yonchon system thus far, the Kyonggi metamorphic complex have never been studied before. The complex might, however, belong to early to early-middle Precambrian age. The Jangrak and Chunsung group were correlated to the Sangwon system in North Korea by the writer (1972), but it became apparent that the rocks of the groups have different lithology and highly metamorphosd than those of the Sangwon system which has thick sequence of limestone and slightly metamorphosed. Being deposited in the margin of the basin, it is natural that the groups poccess terrestrial sediments rather than limestone, yet no explanation is at hand as to what was the cause of bringing such difference in grade of metamorphism. Thus the writer attempted to correlate the both groups to those of pre-Sangwon and post-Yonchon which might be middle to early-late Precambrian time. Judging from difference in grade of deformation and unconformity between the Kyonggi metamorphic complex, Jangrak group, and Chunsung group, three stages of orogeny were established: the Kyonggi, Jangrak orogenies, and Chunsung disturbance toward younger age. It is rather astonishing to point out that the structure of these Precambrian formations. was not effected by Daebo orogeny of Jurassic age. The post-tectonic block faulting was accompanied by these orogenies, and in consequence NNE and N-S trending faults were originated. These faulting were intermittented and repeated until Daebo orogeny at which granites intruded along these faults. The manifestation of alignment of these faults is indicated by the parallel and straight linear development of valleys and streams in the Kyonggi Massifland.

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산청 회장암복합체 내 발달하는 단열계의 기하학적·운동학적 특성 (Geometric and Kinematic Characteristics of Fracture System in the Sancheong Anorthosite Complex, Korea)

  • 이덕선;강지훈
    • 암석학회지
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    • 제25권4호
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    • pp.389-400
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    • 2016
  • 영남육괴 지리산지구의 남동부에 위치하는 산청지역은 주로 선캄브리아시대 지리산 변성암복합체, 산청 회장암복합체, 중생대 화성암류 등으로 구성되어 있다. 산청 회장암복합체 내에는 다수의 단열조의 상대적인 시간관계(선후관계 및 공존관계)와 전단단열의 발달순서 및 운동감각을 결정하는데 이용되는 기하학적 지시자가 잘 관찰된다. 본 논문은 이들 다수의 단열조에 대한 방향성과 운동학적 기하학적 특성을 정밀하게 분석하여 산청 회장암복합체에 발달하는 인장단열의 발달순서와 전단단열의 발달순서 및 운동성을 고찰하였다. 그 결과 산청 회장암복합체에 발달하는 단열계는 적어도 5회의 변형단계(Dn 단계에서 Dn+3 이후단계로 명기)를 걸쳐 형성되었음이 인지된다. (1) Dn 단계: 북북서-남남동 방향의 인장단열 형성기. 이후 응력장 변화로 인해 우수향 ${\rightarrow}$ 좌수향 전단단열운동을 활동하였다. (2) Dn+1 단계: (북)북동-(남)남서 방향의 인장단열 형성기. 이 단계의 단열조는 이후 좌수향 ${\rightarrow}$ 좌수향 ${\rightarrow}$ 우수향 전단단열운동으로 재활동하였다. (3) Dn+2 단계: 북서-남동 방향의 인장단열 형성기. 이후, 우수향 전단단열운동을 겪었다. (4) Dn+3 단계: 남-북 방향의 인장단열 형성기. (5) Dn+3 이후단계: (동)북동-(서)남서 방향의 인장단열 형성기. Dn 단계는 송림조산운동 전기, Dn+1 단계는 송림조산운동 후기, Dn+2 단계는 대보조산운동 시기, Dn+3 단계는 불국사 조산운동 시기 그리고 Dn+3 이후단계는 불국사 조산운동 시기 이후에 형성되었다.

Paleostress of the Joseon and Pyeongan Supergroups in South Korea using the New Calcite Strain Gauge (NCSG)

  • Jang, Bo-An;Ko, Chin-Surk;Kim, Jung-Han;Kim, Cheong-Bin;Kang, Seong-Seung
    • 지질공학
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    • 제24권3호
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    • pp.311-322
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    • 2014
  • Limestone bodies under the tectonic environment have experienced various tectonic processes, and also changed the stress state. In this study, calcite twins found in limestones of the Joseon Supergroup and Pyeongan Supergroup in the northeastern part of the Ogcheon Belt, South Korea were measured, then the paleostress (i.e., the maximum shortening axis) was reconstructed using the new calcite strain gauge (NCSG) technique. The average twin thickness and average twin intensity increase as the total twin strain increases. We utilize the appearance of twins, the average twin thickness and average twin intensity, and the total twin strain to estimate that the observed calcite twins were produced at temperatures of < $200^{\circ}C$ in the Joseon Supergroup and $170^{\circ}C$ in the Pyeongan Supergroup. In the Joseon Supergroup, the dominant direction of the maximum shortening axis WNW-ESE to NW-SE; NE-SW shortening is also observed. The maximum shortening axes in the Pyeongan Supergroup are oriented NW-SE and NE-SW. The NE-SW direction of maximum shortening is associated with the occurrence of the Songrim orogeny of the Paleozoic to Early Jurassic, and the NW-SE direction of maximum shortening correlates to the Daebo orogeny of the Early Jurassic to Late Jurassic. It is thus concluded that the paleostress across the study area changed from NE-SW to NW-SE during the Mesozoic.