• 제목/요약/키워드: P-I diagram

검색결과 58건 처리시간 0.04초

第四紀 後期 英陽盆地의 自然環境變化 (The Late Quaternary Environmental Change in Youngyang Basin, South Eastern Part of Korea Penninsula)

  • 윤순옥;조화룡
    • 대한지리학회지
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    • 제31권3호
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    • pp.447-468
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    • 1996
  • 영양부근 반변천이 절단감입곡류를 하여 생신 구유로상에 약 7m 두께의 토탄지가 형성되어 있다. 이 토탄지를 대상으로 boring 자료분석과 화분분석을 실시하여 토탄지의 지형발달과 제4기 식생 및 기후환경변화를 검토하였다. 구유로상(연지와 원당지 일대)에 토탄지가 형성된 것은 주위산지에서 공급된 선상지성 퇴적물에 의해 구유로가 막혀 습지가 형성되었기 때문에 가능했던 것으로 볼 수 있다. 토탄층은 그 특징에 따라 하부층과 상부층으로 구분되며, 이들 사이에는 부정합관계가 있다. 탄소 연대측정자료, 각 화분분대 화분조성상의 특징, 토탄퇴적속도 등으로 볼 때, 하부토탄층은 대략 60,000년 BP경부터 퇴적되기 시작하여 만빙기까지, 상부토탄층은 완신세 중기경부터 거의 현재까지 형성된 것으로 추정된다. boring지점 1(YY1)과 지점 2(YY2)의 토탄층 화분분석결과는 수목류의 우점시기로 대비할 때, 총 다섯개의 화분대(화분대 YYI, YYII, YYIII, YYIV와 YYV)와 12개의 아분대로 구분되었다. 두지점 간에는 퇴적상 뿐 아니라 화분조성에서도 일견 차이가 있다. 즉, 공통적으로 화분대 III이 존재했으나 화분대 I, II는 주상도 YY1에서만, 화분대 IV와 V는 주상도 YY2에서만 나타났다. 하부토탄층은 화분대 I, II, III시기를 포함하며, NAP시기로서 쑥(Artemisia)속, 오이풀(Sanguisorba)속, 미니라과(Umbelliferae), 벼과(Gramineae)와 사초과(Cyperaceae)등 초본류의 비율이 월등히 높고, 한냉기 수목으로 출현하는 가문비나무(Picea)속, 소나무(Pinus)속, 자작나무(Betula)속 등의 목본류를 포함하며, 이들 목본류의 절대화분량은 상부토탄층에 비해 극히 적어 산림밀도가 낮은 Wurm빙기의 식생경관을 나타내었다. 상부토탄층은 화분대 IVb, V시기를 포함하며, AP시기로서 Pinus와 Quercus 등이 높은 비율로 나타내고 절대 화분량도 많아, 홀로세 온난기의 삼림경관를 나타내었다. 각 화분대 및 아분대 우점수목의 기후환경에 대응하는 생태적 특징으로 작성한 가상 기온변화곡선의 내용은 다음과 같다: 화분대 I은 Butula우점기로서 약 57,000년 BP까지 형성되었으며, 상대적 한냉기로 간주된다. 화분대 II는 EMW우점시기로서 $57,000{\sim}43$,000년 BP에 형성되었으며, Alt Wurm에서 mittel W${\"{u}}$rm으로 전환되는 Interstadial로 간주된다. 화분대 III은 43,000~15,000년 BP간의 가장 오랜 시기를 포함하며, mittel Wurm${\sim}$Jung Wurm기에 해당한다. 한냉기인 화분대 III시기 중에는 Betula, Pinus, Picea 등의 목본류가 교대로 우점하는데, YY1에서 Quercus 와 Picea의 화분조성 변화로 볼 때 아분대 IIId시기가 가장 한냉하였을 것으로 추정된다. 화분아분대 IVa는 하부 화분대와 상부 화분대간의 전환기층으로서 피나무(Tilia)속 우점기로 나타나며, Holocene에 해당하는 화분대 IVb와 V는 약 7,000년 BP부터 현재까지 식생변화로 각각 Quercus와 Pinus가 우점하는 시기로 한국 동해안의 曺(1979)의 화분대 I과 II에 각각 대비된다. Bartlein et al.(1986)의 diagram을 통해 볼 때, 영양지역의 Wurm빙기 최성기의 7월 평균기온은 현재보다 약 10${^\circ}$C 더 낮았을 것으로 추측된다.

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Gene Expression Analysis of So Called Asian Dust Extracts in Human Acute Myeloid Leukemia Cells

  • Choi, You-Jin;Yin, Hu-Quan;Park, Eun-Jung;Park, Kwang-Sik;Kim, Dae-Seon;Lee, Byung-Hoon
    • Toxicological Research
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    • 제26권1호
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    • pp.21-28
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    • 2010
  • As the frequency and the intensity of so called Asian dust (AD) events have increased, public concerns about the adverse health effects has spiked sharply over the last two decades. Despite the recent reports on the correlation between AD events and the risk for cardiovascular and respiratory disease, the nature of the toxicity and the degree of the risk are yet largely unknown. In the present study, we investigated the effects of the dichloromethane extract of AD (AD-X) and that of urban dust (NAD-X) collected during a non-AD period on gene expression in HL-60 cells using Illumina Sentrix HumanRef-8 Expression BeadChips. Global changes in gene expression were analyzed after 24 h of incubation with 50 or 100 ${\mu}g$/ml AD-X and NAD-X. By one-way analysis of variance (p < 0.05) and Benjamini-Hochberg multiple testing correction for false discovery rate of the results, 573 and 297 genes were identified as AD-X- and NAD-X-responsive, respectively. The genes were classified into three groups by Venn diagram analysis of their expression profile, i.e., 290 AD-X-specific, 14 NAD-X-specific, and 283 overlapping genes. Quantitative realtime PCR confirmed the changes in the expression levels of the selected genes. The expression patterns of five genes, namely SORL1, RABEPK, DDIT4, AZU1, and NUDT1 differed significantly between the two groups. Following rigorous validation process, these genes may provide information in developing biomarker for AD exposure.

RELATION BETWEEN MICROSTRUCTURE AND SOFT MAGNETIC PROPERTIES OF Fe-TM-C-N (TM:Hf, Zr AND Nb) NANOCRYSTALLINE FILMS

  • Ryu, H.J.;Choi, J.O.;Han, S.H.;Kim, H.J.;Lee, J.J.;Kang, I.K.
    • 한국자기학회지
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    • 제5권5호
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    • pp.519-523
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    • 1995
  • The Fe-TM-C-N nanocrystalline films (TM : Hf, Zr and Nb) are investigated to examine the relation between microstructure and soft magnetic properties. In these films, as the atomic radius of TM element increases, $P_{N2}$ which was added to get good soft magnetic properties was decreased and the maximum value of the permeability shifted to the high Fe range in the composition diagram. The best soft magnetic properties achieved in these films are : Hc of 0.15 Oe, $\mu_{eff}$ of 7800 (1MHz) and $4{\pi}M_{s}$ of 17.5 kG in Fe-Hf-C-N film ; Hc of 0.06 Oe, $\mu_{eff}$ of 2750 (1MHz) and $4{\pi}M_{s}$ of 16.8 kG in Fe-Zr-C-N film and Hc of 0.31 Oe; $\mu_{eff}$ of 2100 (1MHz) and $4{\pi}M_{s}$ of 15.5 kG in Fe-Nb-C-N film. It was considered that the stronger the bonding force between TM and C(N), the finer TM(C,N) phase is precipitated and therefore, the finer $\alpha$-Fe grains are formed. The effective permeability of the Fe-Zr-C-N films and Fe-Nb-C-N films remains nearly constant up to 10 MHz.

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전라남도 고흥 북부지역에 분포하는 편마암류의 변성작용에 관한 연구 (A Study on the Metamorphism of Gneisses in the Northern Gohung Area, Chonnam)

  • 신상은;조계복;박배영
    • 한국지구과학회지
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    • 제25권6호
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    • pp.443-473
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    • 2004
  • 고흥 북부지역에는 화강암질 편마암, 반상변정질 편마암 및 미그마타이트질 편마암이 널리 분포하고 있다. 편마암류는 실리카-알카리 lUGS 분류도에 의하면 화강섬록암 영역에 해당된다. 미량원소는 $SiO_2$ 양이 증가함에 따라 Li,Zn, Sc, Sr, Ni, V, Y등 대부분이 감소하는 경향을 보인다. 사장석 성분은 안데신으로 상당한 범위($An_{32-48}$)를 보여주며 석류석 성분에서 $X_{alm}$$X_{sps}$은 석류석 입자의 주변부에서 높고 $X_{pyp}$는 중심부에서 높으며, XFe는 석류석 입자 주변부에서 높은 변화를 보인다. 본 역의 편마암류의 모암인 화강암류는 대륙의 동시 충돌형과 후기 조산대 및 후 조산대 영역에서 형성되었을 것으로 예상되며 S형과 I형 화성암류가 모두 나타난다. 변성작용은 저압 내지 중압형의 고온 변성작용(803-913$^{\circ}C$, 6.1-7.3kb) 받은 후 저압, 중온의 후퇴 변성작용(570-726$^{\circ}C$, 2.2-5.1 kb) 및 녹니석화 작용 등의 중첩된 후퇴 변성작용이 수반되었다.

삼척지역 북동 영남 육괴에 분포하는 우백질 화강암의 기원 및 진화 (Origin and Evolution of Leucogranite of NE Yeongnam Massif from Samcheok Area, Korea)

  • 정원석;나기창
    • 암석학회지
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    • 제17권1호
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    • pp.16-35
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    • 2008
  • 삼척 원덕읍에 분포하는 영남육괴 변성퇴적암류에 대한 변성작용을 판단하고 이에 따른 우백질 화강암의 기원과 진화과정을 규명하였다. 변성퇴적암류는 광물 조합에 따라 크게 석류석대와 규선석대로 나눌 수 있다. 규산질 퇴적암의 특징을 나타내는 변성퇴적암류는 암석성인격자를 바탕으로 석류석대는 $4.8{\sim}5.8\;kbar$, $740{\sim}800^{\circ}C$, 규선석대는 2.5-4.5 kbar, $640-760^{\circ}C$의 변성작용을 받았다. 이 지역에 분포하는 우백질 화강편마암류(임원 우백질화강암)는 A/CNK=1.31-1.93이고 DF(discriminant factor)>0인 과알루미늄질 화강암이다. 따라서 이는 S-type의 화강암류에 속하며 이의 기원은 주변의 변성퇴적암류이다. 주원소 및 미량원소 성분들은 우백질 화강암이 충돌대 또는 화산호 화강암 같은 대륙의 충돌 환경과 관련성을 나타낸다 우백질 화강암의 Rb/Sr의 비율(1.8-22.9)은 Sr/Ba 비율(0.21-0.79)에 비해 크기 때문에 백운모의 탈수 용융작용으로 우백질 마그마가 형성되었다. 우백질 화강암의 REE 함량은 전반적으로 변성퇴적암류보다 낮은 LREE 함량과 비슷한 HREE 함량을 갖는다. 이러한 형성 과정을 확인하기 위해 일부 변성퇴적암 및 우백질화강암 시료의 광물 함량비율과 기존 연구의 유문암 및 미그마타이트에 들어 있는 광물의 REE 함량을 이용하여 모델링을 수행했다. 이에 따르면 일부 우백질 화강암의 HREE를 저어콘이 조절했을 가능성도 보여주나, 대부분의 우백질 화강암의 LREE 조절자는 모나자이트이고 HREE 조절자는 석류석으로 판단된다 변성퇴적암에서 부수광물들 모나자이트 및 저어콘 같은 부수광물들은 주로 흑운모의 포유물로 확인되기 때문에 변성퇴적암으로부터 형성된 우백질 마그마는 주로 백운모의 붕괴 작용으로 형성된 것이다. 콘드라이트로 표준화한 REE 패턴에서 우백질 화강암은 음의 Eu 이상치를 갖는 것(Type I)과 양의 이상치를 갖는 것(Type II)로 구분할 수 있다. 우백질 화강암은 변성퇴적암류에 비해 낮은 Eu 함량을 갖으며 REE 형태와 관계없이 비슷한 Eu 함량을 갖는다. 이는 REE 모델링에서 변성퇴적암과 우백질 화강암의 장석 성분과 관련이 깊은 것으로 나타난다. 또한 주원소 ($K_2O$ and $Na_2O$) 및 미량원소(Eu, Rb, Sr, Ba) 역시 강한 알칼리 장석의 분화작용을 지시한다. 결론적으로 본 연구지역에 분포하는 우백질 화강암은 대륙충돌 환경에서 변성퇴적암류가 고온변성작용 중에 발생한 백운모 탈수 용융작용으로 발생된 용융체가 이후 분화과정을 겪어 산출된 것으로 판단된다.

한국주요빙계의 소유역에 대한 순간단위권 유도에 관한 연구 (I) (Studies on the Derivation of the Instantaneous Unit Hydrograph for Small Watersheds of Main River Systems in Korea)

  • 이순혁
    • 한국농공학회지
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    • 제19권1호
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    • pp.4296-4311
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    • 1977
  • This study was conducted to derive an Instantaneous Unit Hydrograph for the accurate and reliable unitgraph which can be used to the estimation and control of flood for the development of agricultural water resources and rational design of hydraulic structures. Eight small watersheds were selected as studying basins from Han, Geum, Nakdong, Yeongsan and Inchon River systems which may be considered as a main river systems in Korea. The area of small watersheds are within the range of 85 to 470$\textrm{km}^2$. It is to derive an accurate Instantaneous Unit Hydrograph under the condition of having a short duration of heavy rain and uniform rainfall intensity with the basic and reliable data of rainfall records, pluviographs, records of river stages and of the main river systems mentioned above. Investigation was carried out for the relations between measurable unitgraph and watershed characteristics such as watershed area, A, river length L, and centroid distance of the watershed area, Lca. Especially, this study laid emphasis on the derivation and application of Instantaneous Unit Hydrograph (IUH) by applying Nash's conceptual model and by using an electronic computer. I U H by Nash's conceptual model and I U H by flood routing which can be applied to the ungaged small watersheds were derived and compared with each other to the observed unitgraph. 1 U H for each small watersheds can be solved by using an electronic computer. The results summarized for these studies are as follows; 1. Distribution of uniform rainfall intensity appears in the analysis for the temporal rainfall pattern of selected heavy rainfall event. 2. Mean value of recession constants, Kl, is 0.931 in all watersheds observed. 3. Time to peak discharge, Tp, occurs at the position of 0.02 Tb, base length of hlrdrograph with an indication of lower value than that in larger watersheds. 4. Peak discharge, Qp, in relation to the watershed area, A, and effective rainfall, R, is found to be {{{{ { Q}_{ p} = { 0.895} over { { A}^{0.145 } } }}}} AR having high significance of correlation coefficient, 0.927, between peak discharge, Qp, and effective rainfall, R. Design chart for the peak discharge (refer to Fig. 15) with watershed area and effective rainfall was established by the author. 5. The mean slopes of main streams within the range of 1.46 meters per kilometer to 13.6 meter per kilometer. These indicate higher slopes in the small watersheds than those in larger watersheds. Lengths of main streams are within the range of 9.4 kilometer to 41.75 kilometer, which can be regarded as a short distance. It is remarkable thing that the time of flood concentration was more rapid in the small watersheds than that in the other larger watersheds. 6. Length of main stream, L, in relation to the watershed area, A, is found to be L=2.044A0.48 having a high significance of correlation coefficient, 0.968. 7. Watershed lag, Lg, in hrs in relation to the watershed area, A, and length of main stream, L, was derived as Lg=3.228 A0.904 L-1.293 with a high significance. On the other hand, It was found that watershed lag, Lg, could also be expressed as {{{{Lg=0.247 { ( { LLca} over { SQRT { S} } )}^{ 0.604} }}}} in connection with the product of main stream length and the centroid length of the basin of the watershed area, LLca which could be expressed as a measure of the shape and the size of the watershed with the slopes except watershed area, A. But the latter showed a lower correlation than that of the former in the significance test. Therefore, it can be concluded that watershed lag, Lg, is more closely related with the such watersheds characteristics as watershed area and length of main stream in the small watersheds. Empirical formula for the peak discharge per unit area, qp, ㎥/sec/$\textrm{km}^2$, was derived as qp=10-0.389-0.0424Lg with a high significance, r=0.91. This indicates that the peak discharge per unit area of the unitgraph is in inverse proportion to the watershed lag time. 8. The base length of the unitgraph, Tb, in connection with the watershed lag, Lg, was extra.essed as {{{{ { T}_{ b} =1.14+0.564( { Lg} over {24 } )}}}} which has defined with a high significance. 9. For the derivation of IUH by applying linear conceptual model, the storage constant, K, with the length of main stream, L, and slopes, S, was adopted as {{{{K=0.1197( {L } over { SQRT {S } } )}}}} with a highly significant correlation coefficient, 0.90. Gamma function argument, N, derived with such watershed characteristics as watershed area, A, river length, L, centroid distance of the basin of the watershed area, Lca, and slopes, S, was found to be N=49.2 A1.481L-2.202 Lca-1.297 S-0.112 with a high significance having the F value, 4.83, through analysis of variance. 10. According to the linear conceptual model, Formular established in relation to the time distribution, Peak discharge and time to peak discharge for instantaneous Unit Hydrograph when unit effective rainfall of unitgraph and dimension of watershed area are applied as 10mm, and $\textrm{km}^2$ respectively are as follows; Time distribution of IUH {{{{u(0, t)= { 2.78A} over {K GAMMA (N) } { e}^{-t/k } { (t.K)}^{N-1 } }}}} (㎥/sec) Peak discharge of IUH {{{{ {u(0, t) }_{max } = { 2.78A} over {K GAMMA (N) } { e}^{-(N-1) } { (N-1)}^{N-1 } }}}} (㎥/sec) Time to peak discharge of IUH tp=(N-1)K (hrs) 11. Through mathematical analysis in the recession curve of Hydrograph, It was confirmed that empirical formula of Gamma function argument, N, had connection with recession constant, Kl, peak discharge, QP, and time to peak discharge, tp, as {{{{{ K'} over { { t}_{ p} } = { 1} over {N-1 } - { ln { t} over { { t}_{p } } } over {ln { Q} over { { Q}_{p } } } }}}} where {{{{K'= { 1} over { { lnK}_{1 } } }}}} 12. Linking the two, empirical formulars for storage constant, K, and Gamma function argument, N, into closer relations with each other, derivation of unit hydrograph for the ungaged small watersheds can be established by having formulars for the time distribution and peak discharge of IUH as follows. Time distribution of IUH u(0, t)=23.2 A L-1S1/2 F(N, K, t) (㎥/sec) where {{{{F(N, K, t)= { { e}^{-t/k } { (t/K)}^{N-1 } } over { GAMMA (N) } }}}} Peak discharge of IUH) u(0, t)max=23.2 A L-1S1/2 F(N) (㎥/sec) where {{{{F(N)= { { e}^{-(N-1) } { (N-1)}^{N-1 } } over { GAMMA (N) } }}}} 13. The base length of the Time-Area Diagram for the IUH was given by {{{{C=0.778 { ( { LLca} over { SQRT { S} } )}^{0.423 } }}}} with correlation coefficient, 0.85, which has an indication of the relations to the length of main stream, L, centroid distance of the basin of the watershed area, Lca, and slopes, S. 14. Relative errors in the peak discharge of the IUH by using linear conceptual model and IUH by routing showed to be 2.5 and 16.9 percent respectively to the peak of observed unitgraph. Therefore, it confirmed that the accuracy of IUH using linear conceptual model was approaching more closely to the observed unitgraph than that of the flood routing in the small watersheds.

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예천전단대 북동부 명호지역 엽리상 화강암류와 압쇄 편마암류에 대한 지구화학 및 Nd-Sr 동위원소 연구 (Geochemical and Nd-Sr Isotope Studies for Foliated Granitoids and Mylonitized Gneisses from the Myeongho Area in Northeast Yecheon Shear Zone)

  • 김성원;이창윤;유인창
    • 자원환경지질
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    • 제41권3호
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    • pp.299-314
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    • 2008
  • 북동 방향의 호남전단대는 한국의 옥천대 남쪽 경계와 선캠브리아기 영남육괴 사이를 지나는 광역적인 우수향 주향 이동 단층대로 동아시아의 두드러진 지나 변형의 방향과 평행하다. 이 논문에서는 호남전단대의 한 지류인 예천전단대 명호지역의 선캠브리아기 압쇄 석영-백운모 편마암과 엽리상 각섬석-흑운모 화강암의 지화학 및 Nd-Sr 동위원소자료를 보고하고자 한다. 엽리상 각섬석-흑운모 화강암류를 $SiO_2$$Na_2O+K_2O$의 분별도에 도시하면 $SiO_2$의 함량은 61.9-67.lwt% 그리고 $Na_2O+K_2O$의 함량은 5.21-6.99wt%로 화강섬록암 영역에 대부분이 점시된다. 선캠브리아기 압쇄 석영-백운모 편마암은 화강암의 영역에 점시된다. $SiO_2$에 대한 수정된 알칼리-라임 지수 및 Fe#($FeO_{total}/(FeO_{total}+MgO)$)에 의한 관계도에서 엽리상 각섬석-흑운모 화강암류는 캘크-알카리 계열의 마크네슘 성분이 우세한 코딜러리안(Cordilleran)형 중생대 화강암류의 지화학 특징과 잘 부합된다. 또한 이들 암석들은 $Al_2O_3/(CaO+Na_2O+K_2O)$$0.89{\sim}1.10$로 중알루미나에서 약한 고알루미나질의 I형에 해당한다 하지만, 원남층의 압쇄 편마암은 $1.11{\sim}1.22$의 과알루미나질을 보여준다. 연구지역 엽리상 각섬석-흑운모 화강암류 및 압쇄 편마암류의 미량원소 성분을 초생맨틀(Primitive mantle) 값으로 규격화한 거미 성분도상에서는 저장력 원소(large ion lithophile element)이며 불호정성 원소인 Rb, Ba, Th 및 U이 부화되어 있고 Ta, Nb, P, Ti 가 상대적으로 다른 원소보다 결핍되어 있으며 이러한 지화학적 특징은 호상형(Arc-type) 화강암류와 전형적인 활동성 대륙연변부의 지각물질로부터 유래한 화강암류와 유사하다. ${\varepsilon}_{Nd}(T)$와 Sr 초생값은 엽리상 각섬석-흑운모 화강암류가 상부지각의 기원물질로부터 형성된 마그마로부터 생성되었음을 지시해 주고 있다. 연구지역을 포함한 영주저반의 엽리상 각섬석-흑운모 화강암류는 전단대에서 멀어지면서 변형에 의한 특정 원소들(Ti, P, Zr, V 및 Y)의 변화경향이 관찰되지 않는다. 이러한 원인으로, 많은 유체를 가지고 있는 엽리상 각섬석-흑운모 화강암류에서는 전단운동 변형동안 전단대 내와 외부의 유체의 흐름에 의한 질량 전달이 동일하게 일어나 암석 내의 부피변화 및 지화학 변질들을 야기 시키지 않았을 것으로 추정된다.

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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