• 제목/요약/키워드: LANDSAT

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한국남부(韓國南部)의 백악기말(白堊紀末) 이후(以後)의 화성활동(火成活動)과 광화작용(鑛化作用)에 대(對)한 판구조론(板構造論)의 적용성(適用性) 연구(硏究)( I ) (Applicability of plate tectonics to the post-late Cretaceous igneous activities and mineralization in the southern part of South Korea( I ))

  • 민경덕;김옥준;윤석규;이대성;주승환
    • 자원환경지질
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    • 제15권3호
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    • pp.123-154
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    • 1982
  • Petrochemical, K-Ar dating, Sand Rb/Sr isotopes, metallogenic zoning, paleomagnetic and geotectonic studies of the Gyongsang basin were carried out to examine applicability of plate tectonics to the post-late Cretaceous igneous activity and metallogeny in the southeastern part of Korean Peninsula. The results obtained are as follows: 1. Bulgugsa granitic rocks range from granite to adamellite, whose Q-Ab-Or triangular diagram indicates that the depth and pressure at which the magma consolidated increase from coast to inland varying from 6 km, 0.5-3.3 kb in the coastal area to 17 km, 0.5-10 kb in the inland area. 2. The volcanic rocks in Gyongsang basin range from andesitic to basaltic rocks, and the basaltic rocks are generally tholeiitic in the coastal area and alkali basalt in the inland area. 3. The volcanic rocks of the area have the initial ratio of Sr^{87}/Sr^{86} varying from 0.706 to 0.707 which suggests a continental origin; the ratio of Rb/Sr changing from 0.079-0.157 in the coastal area to 0.021-0.034 in the inland area suggests that the volcanism is getting younger toward coastal side, which may indicate a retreat in stage of differentiation if they were derived from a same magma. The K_2O/SiO_2 (60%) increases from about 1.0 in the coastal area to about 3.0 in the inland area, which may suggest an increase indepth of the Benioff zone, if existed, toward inland side. 4. The K-Ar ages of volcanic rocks were measured to be 79.4 m.y. near Daegu, and 61.7 m.y. near Busan indicating a southeastward decrease in age. The ages of plutonic rocks also decrease toward the same direction with 73 m.y. near Daegu, and 58 m.y. near Busan, so that the volcanism predated the plutonism by 6 m.y. in the continental interior and 4 m.y. along the coast. Such igneous activities provide a positive evidence for an applicability of plate tectonics to this area. 5. Sulfur isotope analyses of sulfide minerals from 8 mines revealed that these deposits were genetically connected with the spacially associated ingeous rocks showing relatively narrow range of ${\delta}^{34}S$ values (-0.9‰ to +7.5‰ except for +13.3 from Mulgum Mine). A sequence of metallogenic zones from the coast to the inland is delineated to be in the order of Fe-Cu zone, Cu-Pb-Zn zone, and W-Mo zone. A few porphyry type copper deposits are found in the Fe-Cu zone. These two facts enable the sequence to be comparable with that of Andean type in South America. 6. The VGP's of Cretaceous and post Cretaceous rocks from Korea are located near the ones($71^{\circ}N$, $180^{\circ}E$ and $90^{\circ}N$, $110^{\circ}E$) obtained from continents of northern hemisphere. This suggests that the Korean peninsula has been stable tectonically since Cretaceous, belonging to the Eurasian continent. 7. Different polar wandering path between Korean peninsula and Japanese islands delineates that there has been some relative movement between them. 8. The variational feature of declination of NRM toward northwestern inland side from southeastern extremity of Korean peninsula suggests that the age of rocks becomes older toward inland side. 9. The geological structure(mainly faults) and trends of lineaments interpreted from the Landsat imagery reveal that NNE-, NWW- and NEE-trends are predominant in the decreasing order of intensity. 10. The NNE-trending structures were originated by tensional and/or compressional forces, the directions of which were parallel and perpendicular respectively to the subduction boundary of the Kula plate during about 90 m.y. B.P. The NWW-trending structures were originated as shear fractures by the same compressional forces. The NEE-trending structures are considered to be priginated as tension fractures parallel to the subduction boundary of the Kula plate during about 70 m.y. B.P. when Japanese islands had drifted toward southeast leaving the Sea of Japan behind. It was clearly demonstrated by many authors that the drifting of Japanese islands was accompanied with a rotational movement of a clock-wise direction, so that it is inferred that subduction boundary had changed from NNE- to NEE-direction. A number of facts and features mentioned above provide a suite of positive evidences enabling application of plate tectonics to the late Cretaceous-early Tertiary igneous activity and metallogeny in the area. Synthesizing these facts, an arc-trench system of continental margin-type is adopted by reconstructing paleogeographic models for the evolution of Korean peninsula and Japan islands. The models involve an extention mechanism behind the are(proto-Japan), by which proto-Japan as of northeastern continuation of Gyongsang zone has been drifted rotationally toward southeast. The zone of igneous activity has also been migrated from the inland in late-Cretaceous to the peninsula margin and southwestern Japan in Tertiary.

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LPG 지하저장기지 건설을 위한 수륙혼합 탄성파탐사 사례 (Case study on the lake-land combined seismic survey for underground LPG storage construction)

  • 차성수;박근필;이호영;이희일;김호영
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2002년도 정기총회 및 제4회 특별심포지움
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    • pp.101-125
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    • 2002
  • 남양호 수상탄성파 탐사는 호수 하부에 지하유류 비축시설 건설에 필요한 지반안정성 조사 및 설계변수를 도출하기 위하여 사전 조사의 일환으로 수행되었다. 조사지역이 바다에 면한 얕은 수심의 인공 호수로서 주변의 환경은 제방, 매립지, 초고압선 및 안전을 요하는 구조물로 둘러싸인 열악한 탐사 환경을 갖추고 있었다. 이러한 배경 때문에 신뢰성 있고 효과적으로 조사목적을 달성하기 위하여 서로 상이한 4개의 탄성파 탐사법을 동일 지역, 동일 탐사기간 내 적용함으로서 탐사방법간의 상승효과와 탐사 자료해석 결과의 신뢰도 제고를 도모하였다 적용된 탐사법은 수상 단성분 반사법 탐사, 수상 단성분 굴절법 탐사, 육상 24성분 굴절파 탐사 및 수륙 혼합 24성분 굴절파 탐사 등이었다. 특히 수륙혼합 굴절파 탐사법은 국내에서는 최초로 응용된 사례이다. 조사면적 $1km^2$에 대한 총탐사량은 반사법탐사 31개 측선 34 Line-km, 소노부이탐사 14개 측선 육상 굴절파 탐사 1개 측선 890 m, 수륙혼합 굴절파탐사 8개 측선이었다. 반사법 탐사의 경우 호수저면의 지질학적인 특성인 얕은 심도의 무퇴적 내지 박층의 퇴적층과 기반암 분포로 중복반사가 심하였으나 호안 지역에서의 반사파 기록은 양호하였다. 수륙혼합 굴절파 탐사는 아주 양호한 기록을 얻을 수 있었다. 그러나 육상굴절파탐사의 경우 자료의 질이 수륙혼합 굴절파 탐사자료 만큼 좋지 않았는데 그 이유는 저속도의 표토층과 고압선으로부터 유도된 전기적인 잡음 때문이었다 반사법 탐사 결과 기반암구조는 대체로 평탄하며 수면 하 30 m 부근에서부터 발달하고 있다. 소노부이 탐사 결과 기반암은 신선암, 약풍화대 및 풍화대로 구분되었다. 수륙혼합 굴절파탐사 결과 기반암 속도 분포는 4.5 km/s 이상 지역, 4.0 - 4.5 km/s 지역 그리고 4.0 km/s 이하 지역으로 구분할 수 있었으며, 조사지역 북서부가 남동부보다 높은 속도분포를 보인다. 조사지역의 주요구조선은 북서-남동 방향성이다. 탄성파 탐사에서 예상된 단층대의 확인을 위한 시추조사가 추가되었으며 예상된 단층의 확인에 따라서 기존 설계의 변경이 있었다.

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