• Title/Summary/Keyword: 지구조

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Geological Application of Lineaments from Satellite Images - A Case Study of Euiseong Sub-basin (위성 영상선구조의 지질학적 응용 - 의성소분지의 경우)

  • 김원균;김상완;원중선;민경덕;김정우
    • Korean Journal of Remote Sensing
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    • v.16 no.1
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    • pp.25-36
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    • 2000
  • To evaluate the feasibility of using lineaments for the interpretation of regional geological structures, the extracted lineaments from satellite image and surveyed surface geological features mapped in the field were analyzed for the Euiseong Sub-basin. The lineaments extracted from Landsat-5 TM images show primary directions of N20$^{\circ}$~30$^{\circ}$E, N60$^{\circ}$~70$^{\circ}$E, N60$^{\circ}$~70$^{\circ}$W, which represent the trends of faults, strikes, and joints. In the sedimentary formation in the northern part of Palgongsan Uplift Zone, primary directions of the lineaments are NNE and NWW, and NEE in southern parts. The analysis of satellite lineaments is proved to be very useful to study the large-scale structures and surface geology of the Euiseong Sub-basin, whereas the previous research using brittle tectonics approach was advantaged in the outcrop scale in interpretation.

3차원 BRDF 모델을 이용한 달의 조도 및 전 지구 알베도 변화 추이 수치모사

  • Yu, Jin-Hui;Kim, Seok-Hwan
    • The Bulletin of The Korean Astronomical Society
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    • v.37 no.1
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    • pp.99.1-99.1
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    • 2012
  • Hapke의 양방향 분포 함수를 균일하게 입힌 실 크기 3차원 달표면 BRDF 모델을 이용한 달의 조도 수치모사 와 Big Bear Solar Observatory(BBSO)의 달빛 조도 관측 결과를 비교하였다. 1999년 9월 5일 UT9:30에서 UT12:30까지 지구상의 $34^{\circ}$ 15'30.04"N $116^{\circ}$ 55'16.49"W 위치에서 계산된 달의 조도가 관측된 조도와 1% 이내의 차이를 보이는 것을 확인하였다. 이후 검증된 달의 BRDF 모델과 램버시안 산란 지구 모델을 이용해 시간별 전 지구 알베도 추이를 광선 추적 수치 모사한 결과와 실제 BBSO에서의 측정결과 간 1% 이내의 차이를 보이는 것을 확인하여, .BRDF 모델과 광선추적 수치모사 기법의 타당성을 검증하였다.

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Neotectonics and late Quaternary Marine Terraces along the Coastal Zone of the Northern Chile. (칠레 북부해안에 발달된 제4기 해안단구(고해수면)와 신구조운동)

  • 한상준
    • The Korean Journal of Quaternary Research
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    • v.9 no.1
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    • pp.61-86
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    • 1995
  • 칠레 북부해안에는 여러개의 해안 단구들이 발견되는데 이는 지구조 운동과 하께 해수면 변동과 밀접한 관련이 있다, 단구의 형성시기는 전부 밝혀지지는 않았으며 여전히 논란이 되고 있다,. 안토파가스타에서 이끼케까지 9개지역에서 발견되는 여러단구에 대한 탄 소 연대측정 전자스핀 공명법, 우라늄측정, 아미노산 연대측정 방법들을 이용하여 그 형성시 기를 측정하였다, 그결과들은 기본적으로 3∼4개의 뚜렷한 단구를 선정하여 지역간에 서로 대비하였다, 대부분의 단구들은 산소 동위연소 연대(Oxygen Isotope State) 3에서 11범주에 들어가는데 이것은 계단식 단구들이 단지 지구조 운동만으로 형성된 것이 아니라 전지구 기 후 변동과 밀접하게 관련된 전세계 해수면 변동에 의해 강한 영향을 받았음을 시사한다. 특 히 플라이스토세에 형성된 일련의 해빈 사구들은 플라이스토세 초기에서 중기사이 반복된 간빙기를 나타낸다.

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Tectonics of the Tertiary Eoil and Waeup basins in the southeastern part of Korea (한반도 동남부 제3기 어일분지 및 와읍분지의 지구조 운동)

  • Chang, Tae-Woo;Jeong, Jae-Hyok;Chang, Chun-Joong
    • The Journal of Engineering Geology
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    • v.17 no.1 s.50
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    • pp.27-40
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    • 2007
  • Stratigraphy has been renewedly set up and the evolution of tectonic events related to basin formation has been exam-ined on the basis of fault-slip data analysis in the Tertiary Eoil and Waeup basins of the southeastern part of Korea. First of all, field mapping was carried out in detail for Tertiary formations and then paleostress analysis were peformed with more than 400 fault slip data collected from 11 sites in the Tertiary formations and the Yucheon Group. It is judged that both the Eoil and Waeup basins filled up with Tertiary deposits might be simultaneously formed in separate locations. The Janggi Group in the Eoil basin is divided into following stratigraphic units in ascending order: Gampo Conglomerte, Hongdeok Basalt, Nodongri Conglomerate and Yeondang Basalt, and the Bomkori Group in the Waeup basin: Waeupri Tuff; Andongri Conglomerate, Yongdongri Tuff and Hoamri Volcanic Breccia. Paleostress analysis by using striated faults reveals five sequential tectonic events: (1) NW-SE transtension (event I), (2) NW-SE transpression (event IIl), (3) NE-SW pure extension (event III), (4) N-S transpression (event IV) and (5) E-W pure compression (event V). Therefore, five sequential tectonic movements are closely associated with the formation and evolution of the Tertiary basins in the study area: tectonic event I of NW-SE extension is related to formation of the Tertiary basins during the late Oligocene to the Early Miocene, tectonic events II, III and IV caused the termination of the Tertiary basin opening and the crustal uplift in the study area, and tectonic event V upheaved the east coast or Korean Peninsula with compressive stress due to intense subduction of the Pacific plate into Asian continent since the Early Pliocene.

Cenozoic Geological Structures and Tectonic Evolution of the Southern Ulleung Basin, East Sea(Sea of Japan) (동해 울릉분지 남부해역의 신생대 지질구조 및 지구조 진화)

  • Choi Dong-Lim;Oh Jae-Kyung;Mikio SATOH
    • The Korean Journal of Petroleum Geology
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    • v.2 no.2 s.3
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    • pp.59-70
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    • 1994
  • The Cenozoic geological structures and the tectonic evolution of the southern Ulleung Basin were studied with seismic profiles and exploration well data. Basement structure of the Korea Strait is distinctly characterized by normal faults trending northeast to southwest. The normal faults of the basement are most likely related to the initial liking and extensional tectonics of Ulleung Basin. Tsushima fault along the west coast of Tsushima islands runs northeastward to the central Ulleung Basin. The Middle Miocene and older sequences in the Tsushima Strait show folds and faults mostly trending northeast to southwest. These folds and faults may be interpreted as a result of compressional tectonics. The Late Miocene to Qauternary sequences are not much deformed, but numerous faults mostly N-S trending are dominated in the Tsushima Strait. The Ulleung Basin was in intial rifting during Oligocene, and then active extension and subsidence from Early to early Middle Miocene. Therefore SW Japan separated from Korea Peninsula and drifted toward southeast, and Ulleung Basin was formed as a pull-apart basin under dextral transtensional tectonic regime. During rifting and extensional stage, Tsushima fault as a main tectonic line separating SW Japan block from the Korean Peninsula acted as a normal faulting with right-lateral strike-slip motion as SW Japan drifted southeastward. During middle Middle Miocene to early Late Miocene, the opening of Ulleung basin stopped and uplifted due to compressional tectonics. The southwest Japan block converging on the Korean Peninsula caused compressional stress to the southern margin of Ulleung Basin, resulting in strong deformation under sinistral transpressional tectonic regime. Tsushima fault acted as thrust fault with left-lateral strike-slip motion. From middle Late Miocene to Quaternary, the southern margin of Ulleung Basin has been controlled by compressional motion. Thus the Tsushima fault still appears to be an active thrust fault by compressional tectonic regime.

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