• Title/Summary/Keyword: 중생대

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북한의 화산지형 소고

  • 오종우
    • Journal of the Speleological Society of Korea
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    • v.36 no.37
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    • pp.33-37
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    • 1994
  • 한반도는 지질적으로 안정된 지괴를 유지하고 있기 때문에 활화산이 없고 화산지형도 극히 제한된 지역에 분포하고 있다. 지질사적으로 중생대 이전의 화산활동을 제외하면, 주로 현지 표면상에 나타나는 화산활동의 흔적에 의한 지형들은 대게 신생대 제3기의 주요 화산활동으로써 백두산(2744m), 무두봉(1930m), 대연시봉(2360m), 북포태산(2289m), 남포태산(2435m), 소연지봉(2123m), 관모봉(1387m), 소배산(2174m), 두류산(2309m), 칠보산(906m) 등이 백두산 화산대(그림 1)의 열하를 따라 남동쪽 설령(2442m), 만탑산(2205m) 과 거의 일직선상의 수많은 분출공에서 유동성이 큰 현무암의 분출이 있었다.(중략)

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청양금산금-은광상의 생성 환경

  • 유봉철;이현구;김상중;최선규
    • Proceedings of the KSEEG Conference
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    • 2003.04a
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    • pp.311-314
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    • 2003
  • 청양금산광상(군량맥)의 주변지질은 선캠브리아기의 변성퇴적암류, 중생대의 대동누층군 퇴적암류 및 소규모의 화성암과 맥암류가 분포된다. 선캠브리아기의 변성퇴적암류는 호상편마암, 각섬암질 편암, 사문암, 화강편마암, 미그마타이트질 편마암, 결정질석회암 및 석회규산염암으로 구성된다. 쥬라기 대동누층군 퇴적암류인 조계리층, 백운사층 및 성주리층은 광산의 동쪽에 북북동방향으로 분포되며 함장석각력사암, 사암, 역암, 셰일 및 이암으로 구성된다. (중략)

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The Distribution of Dicotyledons in Time and Space in the Korean Peninsula (한반도 쌍자옆식물의 시.공간적 분포역 복원)

  • 공우석
    • The Korean Journal of Quaternary Research
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    • v.10 no.1
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    • pp.1-18
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    • 1996
  • 한반도 쌍자엽식물의 시·공간적 분포역을 식물화석자료를 바탕으로 분석한결과에 따르면 우리나라에서 발견된 가장오래된 쌍자엽식물은 중생대 백악기의 Platanus, Viburnum, Populophyllum등이다. 당시에 남한에서는 17속의 쌍자엽식물이 보고되었으며 그 중 9속(버즘나무 Platanus, 분꽃나무 Viburnum, 버드나무 Salix, 사시나무 Populus, 녹나무 Cinnamomum 감탕나무 Ilex, 장구밤나무 Grewia, 두릅나무 Aralia, 생강나무 Lindera)은 현 재에도 자연적으로 분포한다, 우리나라의 신생대 제3기 팔레오세와 에오세에 대한 화석정보 는 불분명하다. 올리고세의 쌍자엽식물은 황해 봉산에서 12속이 발견되며 그중 11속은 아직 도 자라고 있다. 마이오세에는 북한의 gkarud도와 강원도의 7곳과 남한의 경북과 강원의 4 곳에서 72속의 쌍자엽식물이 출현했으며 16속(Engelhardtia, planera, Hamamelis, Porana, Sassafras, Parrotia, Comptonia, Hemitrapa, Nothofagus, Erica, Pasania, Cryptocary, Phoebe, Entada, Carpites, Trochodendron)을 제외한 나머지 56속은 현생한다. 신생대 제4기 플라이스토세 동안 복한 전역의 7곳과 남한 전역의 10곳에서 53속의 쌍자엽식물이 산출되었 으며 그 중 Engelhardtia, raphidephis, Sapium등 3속을 제외한 모든속이 아직도 자연적으로 분포한다. 홀로세에는 남한의 14곳에서 29속의 쌍자엽식물이 출토되었는데 Lespidobalanus 를 제외한 나머지는 지금도 잘 자라고 있다. 요약하면 한반도에 중생대 백악기에 쌍자엽식 물이 출현한 이래 신생대 제3기 올리고세와 마이오세 그리고 신생대 제4기 플라이스토세와 홀로세까지 큰 변화없이 식물상과 식생이 지속적으로 명맥이 유지되고 번성하였다, 이는 한 반도가 여러 차례가 기후 변화에 따라 식생대의 이동은 있었으나 식물상의 멸종을 가져올 정도의 환경적 격변을 겪지 않고 비교적 안정적인 환경이 장기간 지속되었음을 의미한다. 아울러 기후가 변화할 때마다 식물들리 서식, 생존할수 있는 다양한 피난처가 한반도의 도 처에 산재되어 있었음을 뜻한다,.

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Geochemical Composition of the Continental Crust in Korean Peninsula (한반도 지각암류의 지구화학적 특성)

  • Lee, Seung-Gu;Kim, Dong-Yeon
    • The Journal of the Petrological Society of Korea
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    • v.21 no.2
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    • pp.113-128
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    • 2012
  • The chemical composition of the continental crust play an important role in understanding of crustal formation and evolution and quantifying other processes taking place within continental crust. We summarized geochemical data reported in the previous literature for the crustal rocks in the Korean Peninsula and divided their chemical composition into geologic time scale. In the variation diagram normalized by average composition of the upper crustal rocks, the geochemical characteristics of the upper crust during Triassic period is different from those of the upper crustal rocks after Jurassic period or before Precambrian. However, the geochemical characteristics of the Jurassic and Precambrian period are similar each other. Our summarized data indicate that the source material of Triassic upper crust may be different from that of Jurassic or Precambrian upper crust.

A Review on the Stratigraphy, Depositional Age, and Composition of the Chungnam Basin Fills (충남분지 충전물의 층서, 퇴적시기, 조성에 관한 고찰)

  • Lee, Hyojong;Park, Seung-Ik;Choi, Taejin
    • Economic and Environmental Geology
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    • v.52 no.5
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    • pp.357-366
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    • 2019
  • Deposition of the Daedong Supergroup has been considered to be related with the Triassic Songrim and Jurassic Daebo orogenies. The Chungnam Basin fills is an important sedimentary succession to understand the geological evolution of the Early to Middle Mesozoic Korean Peninsula. Previous paleontological and paleomagnetic studies have suggested the Late Triassic to Early Jurassic sedimentation of the Chungnam Basin fills. However, the orogenic model of the basin development has remained controversial because recently reported zircon U-Pb isotopic ages are not harmonious with the previous studies. This paper aims to review the stratigraphy, depositional age, and composition of the Chungnam Basin fills, together with test of the basin development models.

Proposal of Educational Activities in Geosites for Geological Field Courses in Gunsan City, Jeonbuk, Korea (전북 군산시 일대 야외지질학습을 위한 지질명소와 교육적 활용 논의)

  • Jeong, Dong-Gwon;Cho, Kyu-Seong
    • Journal of the Korean earth science society
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    • v.43 no.3
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    • pp.464-479
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    • 2022
  • In this study, appropriate geosites for geological field trips were explored and measures for their effective utilization in education were discussed, focusing on Okseo-myeon, Sanbuk-dong, Bieung-do, Yami-do, Sinsi-do, and Seonyu-do areas in Gunsan City, Korea. To this end, we analyzed the geological learning elements of the curriculum that were revised in 2015 and selected 7 geosites through field work based on prior research on the study areas. These areas have immense potential as a rich source of information on the Mesozoic geology of the Korean Peninsula, including igneous rocks formed as a consequence of Jurassic and Cretaceous igneous activities, Cretaceous sedimentary rocks, dinosaur footprints, plant fossils, ripple marks, and folds. When the learning elements available at the geosites were compared to those of the curriculum, they contained essentials used in high grade of elementary school and high school, and in particular, they had most of the learning elements used in high school. Accordingly, educational activities that can be carried out in each of the geosites in Gunsan City were proposed.

Occurrence of Radioactive Minerals and U-Th Geochemistry of the Weolaksan and Sokrisan Granite in the Central Ogcheon Belt (중부 옥천대 월악산과 속리산 화강암의 방사성 광물 산출상태와 U-Th 지구화학)

  • Hwang, Jeong
    • The Journal of Engineering Geology
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    • v.32 no.2
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    • pp.295-310
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    • 2022
  • The Weolaksan and Sokrisan granites yield high SiO2 and alkali (Na2O+K2O) contents and low CaO and P2O5 contents. The Al saturation index is ≥1.3, which indicates that the granites are peraluminous. The mean U and Th contents are 8.3 and 39.3 ppm, respectively, higher than typical Mesozoic granites in South Korea and about twice the global mean for granitic rocks. The causes of such high radioelement contents are related to high degrees of fractionation and the crustal origin of the granites. U- and Thbearing radioactive minerals occur in the granites include zircon, thorite, monazite, xenotime, fergusonite and uraninite. The fact that the mean Th/U ratio of the granites (5.4) is similar to the global average crustal value suggests that the radioelement contents of granite were controlled by the crustal source material. Given the correlation of Zr, Y, and heavy rare earth elements for U and Th, radioelements are more likely hosted by xenotime than zircon and monazite.

Characteristics of Fracture System in Precambrian Metamorphic Rocks and Mesozoic Granites from Seokmo-do, Ganghwa-gun (강화군 석모도 일대의 선캠브리아기 변성암류 및 중생대 화강암류에서 발달하는 단열계의 분포특성)

  • Park, Deok-Won;Lee, Chang-Bum
    • The Journal of the Petrological Society of Korea
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    • v.19 no.2
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    • pp.123-139
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    • 2010
  • The properties of fracture system in Precambrian Jangbong schist and Mesozoic granites from Seokmo-do, Ganghwa-gun were investigated and analyzed. Most of the fractures measured at outcrops are nearly vertical or steeply dipping. Orientations of fracture sets in terms of frequency order are as follows: Set $1:N2^{\circ}E/77^{\circ}SE$, Set $2:N17^{\circ}E/84^{\circ}NW$, Set $3:N26^{\circ}E/64^{\circ}SE$, Set $4:N86^{\circ}W/82^{\circ}SW$, Set $5:N80^{\circ}W/77^{\circ}NE$, Set $6:N60^{\circ}W/85^{\circ}SW$, Set $7:N73^{\circ}E/87^{\circ}NW$, Set $8:N82^{\circ}W/53^{\circ}NE$, Set $9:N23^{\circ}W/86^{\circ}SW$, Set 10: $N39^{\circ}W/61^{\circ}NE$. Especially, the rose diagram of fracture strikes(N:240) indicates that there are two dorminant directions of N-S~NNE and WNW. These distribution pattern of fractures from Seokmo-do correponds with those of major lineaments from South Korea suggested in previous study. Meanwhile, the scaling properties on the length distribution of fracture populations have been investigated. First, fracture sets from Precambrian Jangbong schist and Mesozoic granites(north and south rock body) has been classified into five groups(group I~V) based on strike and frequency. Then, the distribution chart generalized the individual length-cumulative frequency diagram for above five groups were made. From the related chart, five subpopulations(group I~V) that closely follow a power-law length distribution show a wide range in exponents(-0.79~-1.53). These relative differences in exponent among five groups emphasizes the importance of orientation effect. From the related chart, the diagram of group III occupies an upper region among five groups. Finally, the distribution chart showing the chracteristics of the length frequency distribution for each rock body were made. From the related chart, the diagram of each rock body shows an order of porphyritic biotite granite < hornblende granodiorite < medium-grained biotite granite(south rock body) < medium-grained biotite granite(north rock body) < Precambrian Jangbong schist. From the related chart, the diagram of more older rock body in the formation age tends to occupy an upper region. Especially, the diagram of Precambrian Jangbong schist occupies an upper region compared with the diagrams of Mesozoic granites. These distributional chracteristics suggests that coexistence of new fracture initiation and growing of existing fractures corresponding with stress field acted since the formation of rock body.

Mesozoic Granitoids and Associated Gold-Silver Mineralization in Korea (한국 중생대 화강암류와 이에 수반된 금-은광화작용)

  • 최선규;박상준;최상훈;신홍자
    • Economic and Environmental Geology
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    • v.34 no.1
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    • pp.25-38
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    • 2001
  • Contrasts in the style of the gold-silver mineralization in geologic and tectonic settings in Korea, together with radiometric age data, reflect the genetically different nature of hydrothermal activities, coinciding with the emplacement age and depth of Mesozoic magmatic activities. It represents a clear distinction between the plutonic settings of the Jurassic Daebo orogeny and the subvolcanic environments of the Cretaceous Bulgugsa igneous activities. During the Daebo igneous activities (about 200-130 Ma) coincident with orogenic time, gold mineralization took place between 197 and 127 Ma. The Jurassic deposits commonly show several characteristics: prominent association with pegmatites, low Ag/Au ratios in the ore-concentrating parts, massive vein morphology and a distinctively simple mineralogy including Fe-rich sphalerite, galena, chalcopyrite, Au-rich eIectrum. pyrrhotite and/or pyrite. During the Bulgugsa igneous activities (120-60 Ma), the precious-metal deposits are generally characterized by such features as complex vein morphology, medium to high AgiAu ratios in the ore concentrates, and abundance of ore minerals including base-metal sulfides, Ag sulfides, native silver, Ag sulfosalts and Ag tellurides. Vein morphology, mineralogical, fluid inclusion and stable isotope results indicate the diverse genetic natures of hydrothermal systems. The Jurassic Au-dominant deposits were formed at the relatively high temperature (about 300 to 450$^{\circ}$C) and deep-crustal level (>3.0 kb) from the hydrothermal fluids containing more amounts of magmatic waters (3180; 5-10 %0). It can be explained by the dominant ore-depositing mechanisms as CO2 boiling and sulfidation, suggestive of hypo/mesothermal environments. In contrast, mineralization of the Cretaceous Au-Ag type (108-71 Ma) and Agdominant type (98-71 Ma) occurred at relatively low temperature (about 200 to 350$^{\circ}$C) and shallow-crustal level «1.0 kb) from the ore-fonning fluids containing more amounts of less-evolved meteoric waters (15180; -10-5%0). These characteristics of the Cretaceous precious-metal deposits can be attributed to the complexities in the ore-precipitating mechanisms (mixing, boiling, cooling), suggestive of epilmesothermal environments. Therefore, the differences of the emplacement depth between the Daebo and the Bulgugsa igneous activities directly influence the unique temporal and spatial association of the deposit type.

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Problems in Construction of Tunnel and Rock . Slope at Mudstone and Shale Resion (이암/셰일 지역에서의 터널 및 사면 시공시의 문제점)

  • 이내용;김용일;정한중;김영근
    • Proceedings of the Korean Geotechical Society Conference
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    • 2002.11b
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    • pp.115-140
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    • 2002
  • 이암층, 함탄층, 석회암층과 같은 특수지질불량구간에서 터널과 암반사면의 합리적인 시공을 달성하기 위해서는 먼저 대상지질에 대한 지질특성, 암반특성을 정확히 이해하는 것이 필요하며, 지반특성에 적합한 지보대책을 수립하도록 하여야 한다. 본고에서는 전형적인 퇴적암지층으로 알려진 포항지역중 중생대 퇴적암류로부터 신생대 제 3기의 미고결 퇴적암류에 이르는 다양하고 복잡한 지질구조를 이루고 있는 지역에서의 터널 및 암반사면의 시공사례를 통하여 시공중의 제반문제점을 검토하여 이암층에서의 안전하고 합리적인 터널/암반사면의 시공방안에 대하여 고찰하였다.

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