• 제목/요약/키워드: Cretaceous basin

검색결과 229건 처리시간 0.021초

남해 대륙붕 도미분지 탄성파자료의 층서해석을 고려한 전산처리 (Seismic Data Processing Suited for Stratigraphic Interpretation in the Domi Basin, South Sea, Korea)

  • 정순흥;김원식;구남형;이호형;신원철;박근필
    • 자원환경지질
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    • 제43권6호
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    • pp.603-613
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    • 2010
  • 남해 대륙붕 도미분지는 제주분지의 북동단에 위치하는 지역으로 동해의 울릉분지와 인접해 있으며 그 발달시기에 대한 연구가 지속적으로 수행되고 있다. 본 연구에서는 도미퇴적분지의 해석에 적합한 탄생파자료 전산처리 모듈을 시험하고 매개변수를 도출하였다. 도미분지 천부 퇴적층인 제3기 층의 경우 반사파 신호의 연속성 향상과 페그레그(peg-leg) 다중반사파 억제가 요구되었고 이를 위하여 중합 층서속도분석(Horizon Velocity Analysis, HVA)과 표면-연관 파동방정식 다중반사파 제거(Surface Relative Wave Equation Multiple Rejection, SRWEMR)모듈을 조합하여 중합단면의 품질을 제고하였따. 연구결과 제작된 도미분지 탄성파 중합단면에서 퇴적층서가 구분되는 부정합면이 인지되었다. 분지의 발달양상 규명에 적절한 중합단면이 도출되었고 다중반사파의 억제로 백악기 기반암의 해석에 도움이 되었다. 본 연구를 통하여 검증된 전산처리과정은 도미분지와 인근 소라분지, 북소라분지의 탄성파 자료 전산처리 품질의 규격화 및 처리속도 향상에 기여할 것으로 기대된다.

경상분지(慶尙盆地)에서 발견(發見)되는 함광퇴적암층(含鑛堆積巖層) (Ore-Bearing Sedimentary Formation in the Cretaceous Gyeongsang Basin, S.Korea)

  • 최위찬;윤욱
    • 자원환경지질
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    • 제24권3호
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    • pp.227-232
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    • 1991
  • Since "Gyeonsang Formation" has been introduced 90 years ago by B.Koto(1903), it was newly found within the lower Chomgog Formation ore mineralized zone. The mineralized zone occurs along the stratigraphic unit there. The ore minerals are mainly composed of hematite, ilmenite and magnetite. The molybdenum (2.100-3.100ppm?), copper and zinc are the accessories. There are also traces of cadmium, gadolinium, neptunium, ruthenium and tin. The ore mineralized zone shows about 1 km of apparent thickness with 10 to 12 degrees of plunging on the surface and extends 12 km along its strike in the U-Bo sheet(Chwae et al., 1990). The mineralized zone could be valuable to correlate the stratigraphic sequence between the Uisong and Mirryang subbasins, if giving consideration of the Palgongsan lineament (Chang, 1975).

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한국(韓國)의 광상생성도(鑛床生成圖) (Metallogenesis in Korea -Explanation of the Metallogenic Map of Korea-)

  • 김선억;황덕환
    • 자원환경지질
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    • 제19권spc호
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    • pp.73-94
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    • 1986
  • 필자(筆者)는 1981년(年) 파리, 1983년(年) 마닐라에서 개최되었던 CGMW 회의(會議)에 참석(參席)함을 계기로 세계공통(世界共通)의 제작규약(製作規約)을 준수(遵守)해 가면서 대한지질도(大韓地質圖) 및 한국의 지체구조도(地體構造圖)를 기본도(基本圖)로 하여 그간의 광상조사연구자료중(鑛床調査硏究資料中) 444개(個) 주요대상광상(主要對象鑛床)을 선정(選定), 이들 자료(資料)를 정리종합(整理綜合) 분류(分類)하여 1983년(年)에 한국의 광상생성도(鑛床生成圖)를 발간(發刊)(한국동력자원연구소(韓國動力資源硏究所))한 바 있다. 처음 시도(試圖)된 일이었을 뿐 아니라 대상개개(對象個個) 광상(鑛床)의 정밀조사자료(精密調査資料)가 부족(不足)하여 흡족(洽足)하지 못하였음에 차후(次後) 보다 보완(補完)된 충실(充實)한 내용(內容)의 광상생성도(鑛床生成圖)를 기대(期待)하여 마지 않는다.

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경상분지내 동광상 관련 진동화강암류에 대한 지화학적 연구 (A Geochemical Study on Jindong Granites in Relation to Copper Ore Deposits in Gyeongsang Basin)

  • 이재영;이진국;박법정;이인호;김상욱
    • 자원환경지질
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    • 제27권2호
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    • pp.161-170
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    • 1994
  • Jindong Granites are plotted mainly in the region of granodiorite~diorite of the Streckeisen's diagram, while Yucheon-Eonyang Granites and Onjonri Granites in the region of monzo-granite and monzo-granite~granodiorite, respectively. Jindong Granites show a differenciation trend of calc-alkaline magma, and its magmatic evolution from intermediate to acidic rocks, which might form mineralizing solution, is consistant with the general path of the Cretaceous granitic rocks including Yucheon-Eonyang Granites and Onjongri Granites. The differenciation index (D.I.) is 35~80 for Jindong Granites, which is lower than 85~95 of Yucheon-Eonyang Granites and is partly overlapped by 67~84 of Onjongri Granites. There is clear difference in content of some major and trace elements between Jindong Granites of Cu province and the other granitic rocks of Pb-Zn and Mo provinces. Between these metallogenic provicnes, Cu content is high in Jindong Granites near Haman-Gunbuk mineralized zone, while Pb and Zn are relatively abundant in Yucheon-Eonyang Granites and Mo in Onjongri Granites. Therefore, Jindong Granites of the Cu province are distinguishable by chemical compositions and their related geochemical characteristics from the other Cretaceous granitic rocks of Pb-Zn and Mo provinces. However, the content of Cu and Cl in biotite is applicable to distinguish a productive phase from a barren phase of Jindong Granites, because Cu and Cl show a trend to be concentrated in biotite of Jindong Gratites in the Haman-Gunbuk mineralized zone.

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경상분지(慶尙盆地) 북동부(北東部) 영해(盈海)·영덕일대(盈德一帶)의 화강암질암(花崗岩質岩)의 흑운모(黑雲母)와 각섬석(角閃石)의 진화경로(進化經路) (Evolution Trends of Biotite and Hornblende in Granitic Rocks from Yonghae-Yongdok Area, Northeastern Gyeongsang Basin, Korea)

  • 이윤종;김중욱;정원우
    • 자원환경지질
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    • 제26권3호
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    • pp.349-361
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    • 1993
  • The granitic rocks in the study area are divided into the schist and gneiss complex, Yongdok pluton, Yonghae pluton and Onjong pluton by their texture, fabric and relationship to the adjacent rocks in the field, Schist and gneiss complex occurs as xenolith or roof pendant in the Yongdok, Yonghae and Onjong plutons. The Yongdok pluton occurs in association with pegmatite and aplite in many places of its pluton. In the field it is obviously clarified that the Yongdok pluton is unconformably overlay by the Cretaceous sedimentary rocks. The Yonghae and Onjong plutons are gradationally changed each other, and these plutons truncate both the Yongdok pluton and the Cretaceous sedimentary rocks. Petrographically, the Yongdok pluton consists of granodiorite and granite with minor quartz monzonite. The Yonghae pluton is composed of diorite, quartz diorite, tonalite, and granodiorite. The Onjong pluton also ranges granodiorite to granite. Both the Yongdok and Yonghae-Onjong plutons are different in the constituent minerals, such as alkali feld~par, myrmekite, mica, sphene and mafic minerals. This suggests that each pluton might have been different crystallization sequence and characteristically different gological history during the crystallization period. Iron/magnesium ratio in biotite and hornblende from both the Yongdok and Yonghae-Onjong plutons gradually decrease as the differentiation index increasing in the whole rock. The decrease of this ratio strongly depend on the increase of opaque mineral contents. From the results of chemistry in the whole rocks and some mafic minerals, it is suggest that the granite plutons of the two different geological ages would have been suffered the environment of high oxygen fugacity in the process of magmatic emplacement and during the crystallization period.

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감계 동(銅)-연(鉛)-아연(亞鉛)-금(金)-은광상(銀鑛床) 광석광물(鑛石鑛物)과 유체포유물(流體包有物) 연구(硏究) (Ore Minerals and Fluid Inclusions Study of the Kamkye Cu-Pb-Zn-Au-Ag Deposits, Repubulic of Korea)

  • 이현구;김상중
    • 자원환경지질
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    • 제28권1호
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    • pp.9-17
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    • 1995
  • The Kamkye Cu-Pb-Zn-Au-Ag deposits occur as quartz veins that filled fault-related fractures of NW system developed in the Cretaceous Gyeongsang basin. Three major stages of mineral deposition are recognized: (1) the stage I associated with wall rock alteration, such as sericite, chlorite, epidote and pyrite, (2) the early stage II of base-metal mineralization such as pyrite, hematite, and small amounts of sphalerite and chalcopyrite. and the middle to late stage II of Cu-As-Sb-Au-Ag-S mineralization, such as sphalerite, chalcopyrite, galena with tetrahedrite, tennantite, pearceite, Pb-Bi-Cu-S system, argentite and electrum. (3) the stage III of supergene mineralization, such as covellite, chalcocite and malachite. K-Ar dating of alteration sericite is a late Cretaceous ($74.0{\pm}1.6Ma$) and it may be associated with granitic activity of nearby biotite granite and quartz porphyry. Fluid inclusion data suggest a complex history of boiling, cooling and dilution of ore fluids. Stage II mineralization occurred at temperatures between 370 to $220^{\circ}C$ from fluids with salinities of 8.4 to 0.9 wt.% NaCl. Early stage II($320^{\circ}C$, 2.0 wt.% NaCl) may be boiled due to repeated fracturing which opened up the hydrothermal system to the land surface, and which resulted in a base-metal sulfide. Whilst the fractures were opened to the surface, mixing of middle-late stage II ore fluids with meteoric waters resulted in deposition of Cu-As-Sb-Au-Ag minerals from low temperature fluids(${\leq}290^{\circ}C$). Boiling of ore fluids may be occured at a pressure of 112 bar and a depth of 412 m. Equilibrium thermodynamic interpretation of sphalerite-tetraherite assemblages in middle stage II indicates that the ore-forming fluid had log fugacities of $S_2$ of -6.6~-9.4 atm.

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한국 의성소분지 북동부 백악기 하양층군의 고수류 (Paleocurrent Analysis of the Cretaceous Hayang Group in the Northeastern Part of Euiseong Subbasin, Southeast Korea)

  • 고인석;이용태;신영식
    • 한국석유지질학회지
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    • 제4권1_2호
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    • pp.12-19
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    • 1996
  • 백악기 의성소분지 북동부 하양층군 (일직층, 후평동층, 점곡층)에서 관찰된 방향성 퇴적구조는 하도구조, 곡상사층리, 판상사층리, 사엽층리 및 유수연흔 등이다. 이들 퇴적구조들은 주로 세립사암으로부터 역질의 극조립사암에 발달한다. 대소규모의 하도구조는 모든 층에서 ,하도구조와 곡상사층리는 일직층 (충적선상지 환경)에서 , 판상사층리 , 판상사엽층리 , 유수연흔은 후평동층 (범람원 환경)과 점곡층 (호수변 환경) 하부에서 자주 관찰된다. 연구지역에서 측정한 4깨의 방향성 퇴적구조들의 벡타평균 방향은 $290^{\circ}C$며 표준편차는 $\pm68$이다. 주된 고수류의 흐름은 서북서 방향을 지시하며. 퇴적물의 기원지는 연구지역으로 부터 동남동 방향의 어느 곳에 있었음을 시사한다

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Thermal and uplift histories of Mesozoic granites in Southeast Korea: new fission track evidences

  • Shin, Seong-Cheon;Susumu Nishimura
    • 암석학회지
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    • 제2권2호
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    • pp.104-121
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    • 1993
  • Fission track (FT) thermochronological analyses on Mesozoic granites provide new information about cooling and uplift histories in Southeast Korea. Twenty-nine new FT sphene, zircon and apatite ages and seven track length measurements are presented for eleven granite samples. Measured mineral ages against assumed closure temperatures yield cooling rates for each sample. Relatively rapid (7-$15^{\circ}C$/Ma) and simple cooling patterns from the middle Cretaceouss (ca. 90-100 Ma) granites are caused mainly by a high thermal contrast between the intruding magma and country rocks at shallow crustal levels (ca. 1-2.5 km-depths). On the contrary, a slow overall cooling (1-$4^{\circ}C$/Ma) of the Triassic to Jurassic granites (ca. 250-200 Ma), emplaced at deep depths (>>9 km), may mainly depend upon very slow denudation of the overlying crust. The uplift history of the Triassic Yeongdeog Pluton in the Yeongyang Subbasin, west of the Yangsan Fault, is characterized by a relatively rapid uplift (~0.4 mm/a) before the total unroofing of the pluton in the earliest Cretaceous (~140 Ma) followed by a subsidence (~0.2mm/a) during the Hayang Group sedimentation. Stability of original FT zircon ages (156 Ma) and complete erasure of apatite ages suggest a range of 3 to 5.5 km for the basin subsidence. Since 120 Ma up to present, the Yeongyang Subbasin has been slowly uplifted (~0.04 mm/a). The FT age patterns of Jurassic granites both from the northeastern wing of the Ryeongnam Massif and from the northern edge of the Pohang-Kampo Block indicate that the two geologic units have been slowly uplifted with a same mean rate (~0.04 mm/a) since early Cretaceous. Estimates of Cenozoic total uplifts since 100 Ma are different: Ryeongnam Massif (~6 km)=Pohang-Kampo Block (~6 km)>Yeongyang Subbasin(~4 km).

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동보(東寶) 중석(重石)-모리브덴 광상(鑛床)의 광물공생(鑛物共生)과 유체포유물(流體包有物) (Mineral Paragenesis and Fluid Inclusions of the Dongbo Tungsten-Molybdenum Deposits)

  • 박희인;문상호;배영부
    • 자원환경지질
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    • 제18권4호
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    • pp.331-342
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    • 1985
  • The Dongbo tungsten-molybdenum deposits are fissure-filling veins emplaced in granites of late Cretaceous age. Integrated field, mineralogic and fluid inclusion studies were undertaken to illuminate the characters and origin of the ore deposits. Mineral paragenesis is complicated by repeated fracturing, but four distinct depositional stages can be recognized; (I) tungsten-molybdenum minerals-quartz-chlorite stage, (II) iron-oxide and sulfides-quartz stage, (III) iron -oxide-base metal sulfides-sulfosalts-quartz-carbonates stage, (IV) barren rhodochrosite-zeolite stage. Fluid inclusion studies were carried out for stage I quartz and stage III quartz, sphalerite and calcite. Fluid inclusion studies reveals highly systematic trends of homogenization temperature and salinity throughout the mineralization. Ore fluids during stage I were complex, NaCl rich brine and salinity reached values as high as 34.4 weight percent equivalent NaCl, but the later ore fluids were more dilute and reached to 9.7 weight percent equivalent NaCl during stage III. Intermittent boiling of ore fluid during stage I is indicated by the fluid inclusions in stage I quartz. Depositional temperatures and pressures during stage I range from $520^{\circ}C$ to $265^{\circ}C$and from 600 to 400 bars. Homogenization temperatures of the stage III quartz, sphalerite and calcite range from $305^{\circ}C$ to $190^{\circ}C$. Fluid inclusion data from the Dongbo mine are nearly similar to those from other hydrothermal tungsten deposits in the Kyeongsang basin. Depositional temperature and salinity of ore fluids during precipitation of tungsten-molybdenum minerals in Dongbo mine were much higher, but $CO_2$ contents were much lower than those from hydrothermal tungsten-molybdenum deposits of late Cretaceous plutonic association in central parts of Korean peninsula.

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한국 동남부지역 금·은 광상산 에렉트럼의 화학조성 (Chemical Variations of Electrum from Gold and/or Silver Deposits in the Southeast Korea)

  • 최선규;박맹언;최상훈
    • 자원환경지질
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    • 제27권4호
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    • pp.325-333
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    • 1994
  • Gold and/or silver mineralization in the southeast province, Korea, occurred in hydrothermal quartz vein that fills fracture zones in Cretaceous volcanic and sedimentary rocks of the Gyeongsang basin or granites and Precambrian gneiss. Most of the gold-silver-bearing veins in the province occur in Hapcheon, Suncheon and Haman-Gunbuk area where they are associated with Cretaceous Bulgugsa granites. On the basis of the Ag/Au ratio on amounts produced and ore grades, mode of occurrence, and associated mineral assemblages, hydrothermal Au-Ag deposits in southeast province, Korea, can be classified as follows: pyrite-type gold deposit (Group IIB, Samjeong and Sangchon deposits), antimony-type gold-silver deposit (Group IV, Gisan and Geochang deposits), and antimony-type silver deposit (Group V, Sanggo, Seweon, Seongju and Gahoe deposits). All of the gold-silver deposits in the province are generally characteristics of the gold-silver or silver-dominant type deposit which contains more silver-bearing minerals than those deposits in central Korea. The gold-silver mineralization in the deposits consist of two generation; the early characterized by gold precipitation and the late represented by silver-rich (as silver-bearing sulfosalts minerals) mineralization. All but one deposit (Samjeong deposit) having relatively lower Au content in electrum values between ${\approx}20$ and ${\approx}50$ atomic %. The mineralogical data on electrum-sphalerite and/or arsenopyrite geothermometry and fluid inclusion data indicate that the gold and silver mineralizations were occurred at temperatures of $190{\sim}280^{\circ}C$ and $150{\sim}180^{\circ}C$, respectively. These suggest that the gold-silver mineralization in the province occurred in the lower temperature and pressure conditions as epithermal-type hydrothermal vein deposit.

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