• 제목/요약/키워드: Yemi Breccia

검색결과 3건 처리시간 0.016초

예미각력암 : 성인과 층서적 의미 (The Yemi Breccia : Origin and Stratigraphic Implications)

  • 우경식
    • 한국석유지질학회지
    • /
    • 제5권1_2호
    • /
    • pp.16-26
    • /
    • 1997
  • 강원도 예미부근에는 예미각력암 (Yemi Breccia)이라는 층이 보고되어 있다. 이 층은 두위봉형 조선누층군 막골층을 부정합으로 덮고 있으며, 이 층 위에 고성 셰일이 정합적으로 놓인다고 알려져 왔다. 예미각력암의 야외조사와 조직적 관찰결과, 예미각력암은 막골층 상부가 퇴적될 당시에 퇴적된 증발암이 속성작용에 의해 용해됨으로써 생성된 속성산물인 용해-붕락 각력암 (solution-collapse breccia)이라 생각된다. 따라서 예미각력암은 기존에 독림된 층으로 제안된 바와는 달리 막골층의 상부층의 일부로 간주되어야 하며, 상위의 고성셰일은 직운산층으로, 고성석회암은 두위봉층과 대비되는 것으로 생각된다.

  • PDF

칼린형 금광상 탐사와 국내 적용성 연구 (Exploration for the Carlin-type Gold Deposits and Its Potential to Korea)

  • 박맹언;성규열;백승균;김필근;강흥석;문영환
    • 자원환경지질
    • /
    • 제38권4호
    • /
    • pp.421-434
    • /
    • 2005
  • 미국 네바다주의 칼린형 금광상을 모델로 강원도 예미지역에 대한 칼린형 금광상의 잠재력을 평가하였다 연구지역에 분포하는 고생대 퇴적암은 스러스트 단층 및 습곡으로 구성된 뚜렷한 구조적 규제를 받았으며, 고각의 단층과 투수성이 큰 예미각력암 및 호층의 석회질 이암층이 결합되어 있다. 남부 지역에 분포하는 석회암에 대한 탈륨, 안티몬, 비소, 은, 납, 아연, 구리, 몰리브덴 및 텅스텐에 대한 원소부화도의 분포 양상은 칼린형 금광상과 지구화학적 유사성을 나타낸다. 또한, 탄소와 산소동위원소 값은 이들 지역이 광역적으로 열수의 영향을 받았음을 지시한다. 연구지역에 대한 지질구조, 화학분석, 변질광물 감정 및 안정 동위원소 분석 및 지구물리학적 해석 견과, 광화대는 북동부 방향으로 연장될 가능성이 높으며 이를 확인하기 위해서 앞으로 체계적인 정밀탐사가 필요하다.

남한(南韓) 대석회암통(大石灰岩統)의 층서(層序)와 지질구조(地質構造) (The Stratigraphy and Geologic Structure of the Great Limestone Series in South Korea)

  • 김옥준;이하영;이대성;윤석규
    • 자원환경지질
    • /
    • 제6권2호
    • /
    • pp.81-114
    • /
    • 1973
  • The purpose of the present study is to clarify the stratigraphy and geologic structure of the Great Limestone Series by means of study on fossil conodonts and detail investigation of geologic structure. In recent years very few geologists in Korea argue without confident evidences against the age and stratigraphy of the Great Limestone Series which have been rather well established previously in most parts of the regions although it is ambiguous and has not been studied in other areas. Five type localities in the Kangweon basin where the Great Limestone Series is well cropped out were chosen for the study. Total 26 genus and 66 species of conodont were identified from 290 samples collected and treated. From the study on conodonts the age of each formations of the Great Limestone Series has been determined as follows: The Great Limestone Series of Duwibong type Duwibong limestone: Caradocian (mid-Ord.) Jikunsan shale: Landeilian (mid-Ord.) Maggol limestone: Llanvirn-Llandeilian (mid-Ord.) Dumugol: Arenigian (Ord.) Hwajeol: Upper Cambrian The Great Limestone Series of Yeongweol type Mungok (Samtaesan) : Ordovician Machari: upper Cambrian The Great Limestone Series of Jeongseon type Erstwhile Jeongseon limestone: mid-Ord. The erstwhile Jongseon Limestone formation in Jeongseon district is separated into Hwajeol, Dongjeom, Dumudong, and Maggol formations which were cropped out repeatedly by folding and faulting, but Maggol is predominant in areal distribution. Yemi Limestone Breccia bed is not a single bed but distributed in several horizons so that it bears no stratigraphic significance. The limestone bed above Yemi Limestone Breccia, which was believed by some geologists to be much younger than Ordovician, is identified to be Maggol and its age is determined to be mid-Ordovician. Sambangsan formation in Yeongweol district was believed to be Cambrian age and lower horizon than Machari formation by Kobayashi, but C. M. Son believed that it might belong to later than Ordovician and lies above the Great Limestone Series of Yeongweol type. It was identified to be upper Cambrian and lies beneath the Machari formation and above the Daeki formation, the lower most horizon of the Great Limestone Series. The age of Yeongweol type Choseon system is contemporaneous with that of Duwibong type Choseon system. The difference in lithofacies is not due to lateral facies change, but due to the difference in its depositional environment. The Yeongweol type Choseon system is believed to be deposited in the small Yeongweol basin which was separated from the main Kangweon sedimentary basin. Judging from these facts it is definitely concluded that there exists no Gotlandian formation in the regions studied. Structurally the Kangweon basin comprises five basins and two uplifted areas. These structures were originated by at least two crustal movements, that is, Songrim disturbance of Triassic and Daebo orogeny of Jurasic age.

  • PDF