• 제목/요약/키워드: A-type granite

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경주 남산일대의 A-형 화강암의 암석학 및 지화학적 특성 (Petrology and Geochemical Characteristics of A-type Granite with Particular Reference to the Namsan Granite, Kyeongju)

  • 고정선;윤성효;이상원
    • 암석학회지
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    • 제5권2호
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    • pp.142-160
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    • 1996
  • 한반도 남동부 경주시 일원에 분포하는 남산화강암체에서 산출되는 A-형 화강암에 대한 암석학 및 지화학적 특성에 대하여 고찰하였다. 남산화강암체는 북부의 하이퍼솔브스 알칼리장석화강암과 남부의 서브솔브스 알칼리장석화강암 및 흑운모화강암으로 구성된다. 이들 중 하이퍼솔브스 화강암은 정동구조를 나타내며, 특징적으로 퍼다이트 조직을 나타내는 알칼리장석, 석영과 이들 사이의 간극을 충진하고 있는 철이 풍부한 흑운모와 알칼리각섬석 및 형석으로 구성되며, 석영과 알칼리장석은 종종 미문상조직을 나타낸다.남산화강암체의 하이퍼솔브스화강암 및 서브솔브스호강암은 암석기재 또는 지화학적 특징을 볼 때, 각 I-형의 불국사회강암류와 구분된다. 즉 높은 $SiO_2$, $Na_2O$, $Na_2O+K_2O$, Rb, Nb, Y, Zr, Ga, Th, Ce, U 함량을 나타내며, $TiO_2$, $Al_2O_3$, CaO, $P_2O_5$, MnO, MgO, Ba, Sr, Eu등은 낮은 함량을 나타낸다. 또한 높은 Ga/Al비를 나타내며, 희토류원소의 전체함량이 약 293-466 ppm 으로 분화가 상당히 많이 진행된 화강암의 조성을 보여주며, 희토류원소의 변화패톤도 특징적으로 심한 Eu'-'이상(Eu/$Eu^{\ast}$=0.03~0.05)을 나타내는 편평 백립암질 물질이, 맨틀로부터 새로운 열원의 공급에 의해, 고온에서 부분용융되어 만들어진 A-형 마그마로부터 유래하였을 가능성을 나타낸다.

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광주화강암체에 대한 암석화학적 연구 (Petrochemical Study On the Kwangju Granite Body)

  • 김용준;오민수;박재봉
    • 자원환경지질
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    • 제26권1호
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    • pp.83-96
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    • 1993
  • Kwangju granite body located in vicinity of Kwangju city consist of three rock bodies-Kwangju rock body, Jangsung rock body and Youngkwang rock body. Petrochemistry of Kwangju granite is as follows: Kwangju granite body is igneous complex which compose of a series of differential products of a magma. Kwangju granites are divided into four rock facies based on the geologic age, mineralogical and chemical constituents and texture: Triassic hornblende-biotite granodiorite and biotite granite, and Jurassic porphyritic granite and two mica granite. Harker and other variation diagrams of Kwangju granites plot on trend of calc-alkali rock series and range of peraluminous granite. Parental magma type of Kwangju granites correspond to I-type, Syn-Collision type in compressive stress field by collision movement between both rock block. In chondrite normalized REE patterns of Kwangju grnites, LREE enriched than HREE in REE amount and have more steep negative slope with slightly (-) Eu anormaly.

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언양(彦陽) 및 울산지역(蔚山地域) 화강암질암류(花崗岩質岩類)의 암석화학적(岩石化學的) 연구(硏究) (Petrochemistry of granitic rocks from the Eonyang and the Ulsan area)

  • 이윤종
    • 자원환경지질
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    • 제13권2호
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    • pp.69-79
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    • 1980
  • Granitic rocks, from the Eonyang and the northwestern part of Ulsan area, were mainly studied from the petrochemical point of view. From field work, microscopic observation and the result of K-Ar ages, these granitic rocks are divided into six rock types of a, b, c, d, e and e', of which modal composition are given. Type a, c, e and e' are mainly granodiorite, type b is adamellite, and type d is granodiorite, adamellite and others (porphyritic rock, porphyry and felsitic rocks). Bulk chemical analyses of 22 samples of the granitic rocks are given. The petrographical and petrochemical characteristics of these rocks are discussed briefly. In the petrochemical compositions with their characteristic variation trends of several oxides and norm Or-Ab-An triangular diagram, type a, b and c show some similarity to that of San-yo granite of Japan and younger granite of Ogcheon geosynclinal zone, and then, type e and e', to San-in granite of Japan. But, some of granitic rock samples of type d are similar to San-yo granite and the others of type d to San-in granite because this type is composed of porphyritic rock, porphyry and felsitic rocks. According to the result of K-Ar ages (1976, Lee et al.) of rock samples from type a, b and care Cretaceous, on the otherwise, type d, e and e', are Tertiary granitic rocks. Judging from these evidences, granitic rocks in the area are correlated to the Cretaceous and Tertiary granitic rocks in the, southwestern Japan, that is, type a, band c are correlated to San-yo granite, and type d, e and e' to San-in granite.

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경주 동천동 일대에 분포하는 A-형 화강암의 지화학적 특성 (Geochemical Characteristics of A-type granite in Dongcheondong, Gyeongju)

  • 명보라;주지원;김정훈;장윤득
    • 암석학회지
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    • 제26권3호
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    • pp.271-280
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    • 2017
  • 동천동 화강암은 경주 동천동 일대에 분포하는 알칼리장석화강암이다. 이는 주로 우백질의 조립질화강암이며 알칼리장석, 석영, 흑운모, 각섬석이 관찰된다. 경하관찰 결과, 알칼리장석은 퍼싸이트로 나타나며, 석영은 주로 파동소광을 보인다. 사장석은 주로 알바이트 쌍정을 보이며, 흑운모와 각섬석은 간극상으로 산출된다. 동천동 화강암은 $(Na_2O+K_2O)/Al_2O_3$ 비가 높고 (MgO+CaO)/FeOT가 낮은 전형적인 A-형 화강암 영역에 도시되며 경상분지 I-형 화강암류에 비해 $SiO_2$, $Na_2O$, $K_2O$, Rb, Ga, Zr이 부화되어 있는 반면 $TiO_2$, $Al_2O_3$, CaO, MgO, Sr, Ba, Sc 등은 결여되어 있다. 또한, 연구지역 화강암은 I-형 화강암에 비해 희토류원소의 함량이 높고 큰 Eu(-) 이상을 보여준다. 이러한 지화학적 특성은 기존에 보고된 경상분지 I-형 화강암류와 뚜렷이 구분된다. 동천동 A-형 화강암은 현재까지 제시된 A-형 화강암의 기원 중 지각 내의 토날라이트질(Tonalite) 내지 화강섬록암의 I-형 화강암의 부분용융으로 만들어졌을 가능성이 높은 것으로 판단된다.

월출산지역에 분포하는 중생대 화강암류에 대한 암석화학적 연구 (Petrochemistry of Mesozoic Granites in Wolchulsan Area)

  • 김정빈;윤정한;김정택;박재봉;강상원;김동주
    • 자원환경지질
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    • 제27권4호
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    • pp.375-385
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    • 1994
  • The studied area is composed of Precambrian gneiss complex, middle Jurassic biotite granite, late Cretaceour sediments, volcanics and pink feldspar granite. Characteristic minerals of the biotite granite is plagioclase and hornblende whereas the pink feldspar granite is pink feldspar (perthite) and quartz. Plagioclase compositions of the biotite granite and the pink feldspar granite are oligoclase to calcic andesine ($An_{18-44}$) and sodic albite ($An_{0.5-5.0}$), respectively. In the variation diagrams of the Harker and normative Q-Or-Pl diagram, the biotite granite belongs to the category from granodiorite to granite, the pink feldspar granite from nomal to late granite. The values of D.I. L.I. and alkalinity of the pink feldspar granite are higher than those of the biotite granite. While CaO is enriched in the biotite granite, $K_2O$ is enriched in the pink feldspar granite. The ratio of $K_2O/Na_2O$ which indicates the relative ratio of alkali is 1.06 in the pink feldspar granite, and 0.86 in the biotite granite. In A-M-F and N-C-K diagrams both these granites are plotted in peraluminus granite ($Al_2O_3$>$Na_2O+K_2O+CaO$) region, assigned to calc alkaline series and alkaline series respectively. Put into the form of A-C-F diagram, the biotite granite falls under I-type, and the pink feldspar granite S-type. On the base of whole rock ratios of $Fe^{+3}/Fe^{+2}+Fe^{+3}$ and $^{87}Sr/^{86}Sr$ for the granites in studied area, the biotite granite indicates ilmenite series (0.26) and S-type and/or contaminated I-type ($0.72020{\pm}0.00050$), the pink feldspar granite magnetite series (0.44) and I-type ($0.70826{\pm}0.00020$).

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담양(潭陽)-진안(鎭安)사이에 분포(分布)하는 엽리상화강암류(葉理狀花崗岩類)에 대(對)한 지질시대(地質時代)와 성인(成因)에 관(關)한 연구(硏究) (Geochronology and Petrochemistry of Foliated Granites between Damyang and Jinan)

  • 김정빈;김용준
    • 자원환경지질
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    • 제23권2호
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    • pp.233-244
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    • 1990
  • Plutons of Damyang-Jinan area consist of gray feldspar granite gneiss, biotite granite gneiss, foliated granites, Namweon granites, gabbro, biotite granite and Ogangri granite in term of mineralogical, texture and field evidence. From Isotope data of study area, chronological order of the Plutons are the Pre-cambrian gray feldspar granite gneiss(Ar39-Ar40, hornblende, $1998.4{\pm}8.3Ma$), middle to late Triassic Daegang foliated granite(Rb/Sr, whole rock, $288{\pm}4Ma$), foliated hornblende biotite granodiorite(K/Ar, hornblende, $198.7{\pm}9.9Ma$), Sunchang foliated granodiorite(Rb/Sr, whole rock, $222{\pm}4Ma$), foliated two mica granite, Samori foliated granite and Namweon granite(Rb/Sr, whole rock, $211{\pm}3Ma$: K/Ar, hornblende, $203{\pm}10.2Ma$), middle Jurassic Gabbro(K/Ar, hornblende, $180.7{\pm}9MA$) and biotite granite, and Cretaceous Ogangri granite. According to variations diagrams of $Al_2O_3$ versus normative PI(100 An)/(Ab+An), Daegang foliated granite is plotted on tholeiitic series, and other foliated granites on calc alkaline rock series which are consider to be formed by magmatism at continental margin and island arc region. And alkalinity versus $SiO_2$ shows that Daegang folited granite and Samori foliated granite are correspond to alkaline region, foliated hornblende biotite granodiorite and Sunchang foliated granodiorite to calc alkaline region, and foliated two mica granite to both regions. According to ACF diagrams, Daegang and Samori foliated granites are plotted on S-type. Foliated hornblende biotite granodiorite and Sunchang foliated granodiorite on I-type, and foliated two mica granite on both type. Foliated granites are a series of differentiated products from cogenetic magma, and effected under ductile sheared zone. Characteristic foliation of foliated granites are considered to be generated by dextral strike slip faulting and ductile shearing.

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석포(石浦)-덕구간(德邱間)에 분포(分布)하는 소위(所謂) 홍제사화강암(洪濟寺花崗岩)의 지질연대(地質年代)와 생성과정(生成過程)에 대(對)한 硏究(연구) (Geochronology and Petrogenetic processes of the so-called Hongjesa granite in the Seogpo-Deogku Area)

  • 김용준;이대성
    • 자원환경지질
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    • 제16권3호
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    • pp.163-221
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    • 1983
  • Main aspects of this study are to clarify geochronology and petrogenetic processes of the so-called Hongjesa granite, which is a member of various intrusive rocks exposed in the northeastern part of the Ryongnam Massif, one of the Precambrian basements of South Korea. In this study, the Hongjesa grainte is divided into four rock units based on the geologic age, mineralogical and chemical constituents, and texture: the Precambrian Hongjesa granite gneiss (Hongjesa granite Proper) and leucogranite gneiss, the Paleozoic gnessic two mica granite, and the Jurassic muscovite granite. The Hongjesa granite gneiss is identified by its grayish color, slight foliation, and porphyroblastic texture. The leucogranite gneiss is distinct by its light gray color, sand medium to coarse grained texture. The gneissic two mica granite is distinguished from others by its strong foliation, containing gray-colored feldspar phenocrysts with biotite and muscovite in varying amounts. The muscovite granite occurs as a small stock containing feldspar phenocrysts along margin of the stock. These granitic rocks vary widely in composition, reflecting the facts that they partly include highly metamorphosed xenolith and schlierens as relics of magmatic and anatectic processes. In particular, grayish porphyroblasts of microcline perthite is characteristic of the Hongjesa granite gneiss, whereas epidote and garnet occur in both the Hongjesa granite gneiss and leucogranite gneiss. These minerals are considered to be formed by potassic metasomatism and contamination of highly metamorphosed rocks deeply buried under the level of the Hongjesa granite emplacement. The individual synchronous granitic rocks plotted on Harker diagram show mostly similar trends to the Daly's values. The plots of the Hongjesa granite gneiss and gneissic two mica granite concentrate near the end part of the calc-alkalic rock series on the AMF diagrams, whereas those of the leucogranite gneiss and muscovite granite indicate the trend of the Skaergaard pluton. These granitic rocks plotted on a Q-Ab-Or diagram (petrogeny's residua system) fall well outside the trough of the system. This can be attributed to the potassic matasomatism of these rocks. On the ACF diagram, these rocks appear to be dominantly I-type prevailing over S-type. The K-Ar ages, obtained from a total of 7 samples of the leucogranite gneiss, gneissic two mica granite, muscovite granite, porphyritic alkali granite, and rhyolitic rock, in addition to the Rb/Sr ages of the Hongjesa granite gneiss by previous workers, permit the rock units to be arranged in the following chronological order: The middle Proterozoic Hongjesa granite gneiss (1714-1825 m.y.), the upper proterozoic leucogranite gneiss (875-880 m. y.), the middle Paleozoic gneissic two mica granite (384 m. y.) the upper Jurassic muscovite granite (147 m. y.), the Eocene alkali granite (52 m. y.), and the Eocene rhyolitic rock (45 m. y.). From the facts and data mentioned above, it is concluded that the so-called Hongjesa granite is not a single granitic mass but is further subdivided into the four rock units. The Hongjesa granite gneis, leucogranite gneiss, and gneissic two mica granite are postulated to be either magmatic or parautochtonous, intrusive, and the later muscovite granite is to be magmatic in origion.

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절취 사면의 파괴 특성과 관련된 영향 요인 분석 ; 경기도 남부 국도 사례 (Analysis of Influence Factors Related to Failure Characteristics of Excavated Slopes ; A Case of Southern Kyounggi Area along the Nat과l Road)

  • 김정환;윤운상;최재원
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 봄 학술발표회 논문집
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    • pp.277-284
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    • 1999
  • This study describes the influence factors related to slope failure pattern and dimension in the southern Kyounggi area. Intrusive and metamorphic rocks are distributed in the study area. Geological condition, rainfall property and slope geometry are influence on slope failure characteristics in the study we& Geological factors related to slope failure are rock type, geological structure and weathering condition. Because of deep soil (RS-CW) depth of granite region, circular failure type is major failure pattern in granite region. Almost granite slopes with circular or surface failure pattern are failed during heavy rainfall season. But typical wedge failure type related to geological structure factor is a main failure pattern of metamorphic rock slope. Additionally failure dimension is influenced by geological factors and several factors, i.e. natural slope condition, failure type, rainfall intensity and etc. failure height/width ratio and thickness/length ratio of granite slope are 0.88 and 0.23. But the ratios of metamorphic rock slope are 1.36 and 0.19.

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마사토, 황토를 골재로 이용한 시멘트계 고화재의 물리적 특성 평가 (Evaluation on the Physical Characteristics of Cement-Type Solidification using Weathered Granite St Yellow Soil as an Aggregate)

  • 김특준;김인섭;이종규;추용식;김병익;김남호
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 봄 학술발표회 논문집
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    • pp.601-606
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    • 2002
  • This study explored physical properties of a hardened cement and a concrete specimen using a high performance cement type solidification consisting of a weathered granite soil and a yellow soil mainly. Also the development of high performance cement type solidification was purposed for an intensity improvement and a long-term durability. As the experimental results, a mortar used by the weathered granite soil shows positive result, however using the yellow soil as a mortar Shows less positive result at the compressive strength. Also the dynamic modulus of elasticity measurement result, the concrete specimens used by the weathered granite and the yellow soil reached above 90%, so it seems to have the durability of freezing and thawing.

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한반도 남서부 남원 일대에 분포하는 A형 대강 화강암의 암석학, 지화학 및 지구조적 의미 (Petrology, Geochemistry and Tectonic Implication of the A-type Daegang granite in the Namwon area, Southwestern part of the Korean Peninsula)

  • 김용준;조등룡;이창신
    • 자원환경지질
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    • 제31권5호
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    • pp.399-413
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    • 1998
  • Daegang granite is located around the Namwon-gun, Cheolabuk-do, and is an elongate stock $(80 km^{2})$ in the NNE-SSW direction. Daegang granite has the very same mineralogical and geochemical characteristics as those of the typical A-type granites; (1) it is a one feldspar hypersolvus granite, and is classified as an alkali feldspar granite in the lUGS scheme, (2) has small amounts of Fe-rich biotite (annite) and alkali amphibole (ribeckite) that are late in the crystallization sequence of the granitic magma, (3) always contains opaque oxides, fluorite and zircon, (4) shows high and quite homogeneous $SiO_2$, content (mostly 72~77 wt.%) and $(Na_{2}O+K_{2}O)/Al_{2}O_{3}$ ratio (0.90~0.98), (5) contains high Ga, lOOOO*Ga/Ai, $K_{2}O+Na_{2}O$, $(K_{2}O+Na_{2}O)/CaO$, $K_{2}O/MgO$, FeO/MgO, agpaitic index, Zr, Nb, Ce, Y, Zn value or ratio that resemble to those of the Australian A-type granites (Whalen et al., 1987), and (6) has enriched LREE and HREE that show flat variation pattern with slightly depleted in HREE and profound Eu anomalies (Eu/Eu*=0.04~0.l4). In the tectonic discrimination diagrams of Pearce et al. (1984) and Eby (1992), Daegang granite is classified as a within plate granite and $A_{2}-type$.

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