• 제목/요약/키워드: volcanic rock mass

검색결과 28건 처리시간 0.024초

다중 환경추적자를 이용한 제주도 지하수 유동 및 수질 특성 분석

  • 고동찬;김용재
    • 한국지하수토양환경학회:학술대회논문집
    • /
    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
    • /
    • pp.138-141
    • /
    • 2004
  • The environmental tracers tritium/helium-3 (3H/3He) and chlorofluorocarbons (CFCs) were investigated in ground water from Jeju Island, Korea, a basaltic volcanic island. The apparent 3H/3He and CFC-12 ages were in relatively good agreement in samples with low concentrations of terrigenic He. Ground water mixing was evaluated by comparing 3H and CFC-12 concentrations with mixing models, which distinguished old water with negligible 3H and CFC-12, young water with piston flow, and binary mixtures of the two end members. The ground water CFC-12 age is much older in water from wells completed in confined zones of the hydro-volcanic Seoguipo formation in coastal areas than in water from the basaltic aquifer. Comparison of major element concentrations in ground water with the CFC-12 age shows that nitrate contamination processes contribute more solutes in young water than are derived from water-rock interactions in non-contaminated old water. Chemical evolution of ground water resulting from silicate weathering in basaltic rocks reaches the zeolite-smectite phase boundary. The calcite saturation state of ground water increased with the CFC-12 apparent (piston flow) age. In agricultural areas, the temporal trend of nitrate concentration in ground water was consistent with the known history of chemical fertilizer use on Jeju Island, but the response of nitrate concentration in ground water to nitrogen inputs follows an approximate 10-year delay. Based on mass balance calculations, it was estimated that about 40% of the nitrogen applied by fertilizers reached the water table and contaminated ground water resources when the fertilizer use was at the highest level.

  • PDF

풍화진행에 따른 한라산조면암의 역학적 특성변화 (Variations of Mechanical Properties of Hallasan Trachyte with respect to the Degree of Weathering)

  • 조태진;이상배;황택진;원경식
    • 터널과지하공간
    • /
    • 제19권4호
    • /
    • pp.287-303
    • /
    • 2009
  • 한라산 정상부의 백록담 암체는 백록담조면현무암이 분포하는 동측구역과 한라산조면암이 분포하는 서측구역으로 구분된다. 백록담에서 진행되는 풍화, 암벽붕괴, 낙반은 전반적으로 백록담 서측구역에 분포하는 한라산 조면암의 풍화작용과 밀접한 연관성을 가지며, 동측구역에서는 개별 암석 블록들의 국지적 붕락현상이 발생한다. 본 연구에서는 한라산조면암 분포지역의 지질학적 특성을 조사하였으며, 풍화단계별로 조면암 시료를 채취하여 편광현미경분석, X-선 회절분석, 지화학적 분석, 공학적 특성시험을 수행하였다. SEM, XRD, XRF 분석을 통하여 2차 변질광물의 종류와 함량 및 광물조성 변화를 관찰한 결과 점토광물이 확인될 정도의 심한 화학적풍화작용은 발생하지 않았지만 풍화에 따른 화학적풍화지수와 주요원소의 함량 변화에 대한 분석 결과에 의거할때 화학성분의 용탈에 의한 미약한 화학적풍화작용이 발생한 것으로 판단된다. 풍화에 기인된 암석의 공학적특성변화를 고찰하기 위하여 밀도, 비중, 흡수율, 공극률, 탄성파속도, 일축압축강도, 슬레이크내구성지수, 동결-융해시험을 수행하였다. 인공풍화시험을 통한 균열발현 양상과 물리적 특성 측정 결과 기계적풍화작용은 미세균열 및 공극을 발달시켜 암반의 역학적 강도 저하를 야기하고 있으며, 기계적풍화 진행에 의한 추가적인 공극률 저하 양상을 고려할 때 $D_B$ = 1.5 또는 공극률 = $20{\sim}21%$ 범위에서 한라산조면암의 공학적 강도 특성이 소멸될 것으로 분석되었다.

충남 금산군 서북부에 분포하는 화성암류에 대한 암석화학적 연구 (Petrochemical Study of Igneous Rocks Occurring in the Northwestern Part of Keumsan Area, Chungnam-do)

  • 김원사;민경남
    • 한국광물학회지
    • /
    • 제19권2호
    • /
    • pp.99-109
    • /
    • 2006
  • 충남 금산 서북부 지역에 분포하는 화성암류에 대해 암석화학적 연구를 실시하였다. 이 지역에는 선캠브리아기의 흑운모편마암과 시대미상의 옥천층군, 그리고 이들을 관입 또는 분출한 중생대 쥬라기의 흑운모화강암 및 백악기의 화산암, 홍색장석화강암, 석영반암 등이 존재한다. 흑운모화강암은 연변부로 갈수록 점이적으로 우백질 암상을 나타내는데, 중심부로부터 연변부로 갈수록 $SiO_2,\;Na_2O,\;K_2O$의 성분은 증가하는데 비해 $Fe_2O_3,\;CaO,\;P_2O_5,\;MgO,\;TiO_2$ 성분은 감소하는 등 역누대구조를 나타낸다. 흑운모화강암과 석영반암은 비알칼리계열에 속하며, 우백질 흑운모화강암은 알칼리계열에 속한다. 또한 이들 화성암은 모두 I-type화성암에 속하며, 동시에 칼크-알칼리계열의 결정분화작용에 부합하는 양상을 나타낸다. 쥬라기의 흑운모화강암은 Eu의 부현상(negative anomaly)이 미약하여 마그마 분화초기의 특징을 나타내는 반면, 백악기의 석영반암은 부현상이 뚜렷하여 진화가 상당히 이루어졌음을 시사한다.

전남 해남지역 구시광상의 화산활동에 수반된 열수변질작용 및 생성환경 (Hydrothermal Alteration Related to Cretaceous Felsic Magmatism in the Gusi Mine, Southern Korea)

  • 문희수;노열;김인준;송윤구;이현구
    • 자원환경지질
    • /
    • 제24권1호
    • /
    • pp.9-20
    • /
    • 1991
  • 구시납석광상은 전남 해남지역의 중생대 백악기 화산암류를 모암으로 산출된다. 모암을 이루는 화산암류는 대부분 웅회암류이나 일부 유문암의 변질산물도 있으며, 이들의 열수변질 산물로서 구시광상의 납석 및 도석을 형성 시켰다. 이 변질작용의 결과로 형성된 광물조합에 의하여 이들은 변질대의 중심부로부터 외각으로 가면서 납석, 디카이트, 석영 및 일라이트-스멕타이트대로 구분된다. 이러한 변질광물의 분포양상은 모암인 장구리응회암이 상대적으로 높은 Si와 K이온 활동도를 갖는 강한 산성 열수용액에 의한 변질작용에 의하여 형성되었음을 지시한다. 이들 광물의 안정영역을 고려할 때 일라이트-스멕타이트대는 $200^{\circ}C$ 이하에서, 디카이트대는 $200{\sim}250^{\circ}C$ 범위에서, 납석대는 $260^{\circ}C$ 이상의 온도 영역에서 형성 되었음을 지시한다. 납석대의 일부에서 다이아스포어를 함유하는 것으로 보아 이때의 최고 온도는 $300^{\circ}C$ 정도에 이르렀을 것이다. 이들 변질작용은 본역에 분포된 화산암류를 형성시킨 화산활동에 기인된 열수변질작용으로 해석된다.

  • PDF

CONSTRUCTION MANAGEMENT OF TUNNELLING IN SEVERE GROUNDWATER CONDITION

  • Young Nam Lee;Dae Young Kim
    • 국제학술발표논문집
    • /
    • The 1th International Conference on Construction Engineering and Project Management
    • /
    • pp.655-661
    • /
    • 2005
  • For a hydro power plant project, the headrace tunnel having a finished diameter of 3.3m was constructed in volcanic rocks with well-developed vertical joint and high groundwater table. The intake facility was located 20.3 km upstream of the powerhouse and headrace tunnel of 20 km in length and penstock of 440 m in height connected the intake and the powerhouse. The typical caldera lake, Lake Toba set the geology at the site; the caving of the ground caused tension cracks in the vertical direction to be developed and initial stresses at the ground to be released. High groundwater table(the maximum head of 20 bar) in the area of well-connected vertical joints delayed the progress of tunnel excavation severely due to the excessive inflow of groundwater. The excavation of tunnel was made using open-shield type TBM and mucking cars on the rail. High volume of water inflow raised the water level inside tunnel to 70 cm, 17% of tunnel diameter (3.9 m) and hindered the mucking of spoil under water. To improve the productivity, several adjustments such as modification of TBM and mucking cars and increase in the number of submersible pumps were made for the excavation of severe water inflow zone. Since the ground condition encountered during excavation turned out to be much worse, it was decided to adopt PC segment lining instead of RC lining. Besides, depending on the conditions of the water inflow, rock mass condition and internal water pressure, one of the invert PC segment lining with in-situ RC lining, RC lining and steel lining was applied to meet the site specific condition. With the adoption of PC segment lining, modification of TBM and other improvement, the excavation of the tunnel under severe groundwater condition was successfully completed.

  • PDF

우주선유발 동위원소를 이용한 지표면의 연대측정: 국내 사례를 중심으로 (Cosmogenic Nuclides Dating of the Earth Surface: Focusing on Korean Cases)

  • 성영배;유병용
    • 암석학회지
    • /
    • 제23권3호
    • /
    • pp.261-272
    • /
    • 2014
  • 지난 ~30년 동안 가속기질량분석기와 비활성기체질량분석기 기술의 진보와 함께, 우주선유발 동위원소도 지표면의 연대측정 분야에 광범위하게 적용되어 왔다. 우주선유발 동위원소를 이용한 세부적인 연대측정법으로는 단순노출연대측정, 수직단면연대측정, 매몰연대측정 등이 있어, 다양한 노출(또는 퇴적) 환경에 따라, 다른 접근법이 요구된다. 국내에 적용 가능한 대상으로는, 하안단구, 해안단구, 선상지, 화산지형, 구조지형(단층애), 다양한 암설지형(테일러스, 암괴류 등), 호안 또는 해안 파식대 그리고, 제3기의 퇴적분지층과 고고학유물층에도 적용이 가능하다. 아울러, 기존의 석영이 풍부한 화강암과 변성암 중심에서, 최근에는 석회암과 화산암에도 적용가능하게 되었다.

포항(浦項) 및 장기분지(盆地)에 대한 고지자기(古地磁氣), 층서(層序) 및 구조연구(構造硏究); 화산암류(火山岩類)의 K-Ar 연대(年代) (Paleomagnetism, Stratigraphy and Geologic Structure of the Tertiary Pohang and Changgi Basins; K-Ar Ages for the Volcanic Rocks)

  • 이현구;문희수;민경덕;김인수;윤혜수;이타야 테츠마루
    • 자원환경지질
    • /
    • 제25권3호
    • /
    • pp.337-349
    • /
    • 1992
  • The Tertiary basins in Korea have widely been studied by numerous researchers producing individual results in sedimentology, paleontology, stratigraphy, volcanic petrology and structural geology, but interdisciplinary studies, inter-basin analysis and basin-forming process have not been carried out yet. Major work of this study is to elucidate evidences obtained from different parts of a basin as well as different Tertiary basins (Pohang, Changgi, Eoil, Haseo and Ulsan basins) in order to build up the correlation between the basins, and an overall picture of the basin architecture and evolution in Korea. According to the paleontologic evidences the geologic age of the Pohang marine basin is dated to be late Lower Miocence to Middle Miocene, whereas other non-marine basins are older as being either Early Miocene or Oligocene(Lee, 1975, 1978: Bong, 1984: Chun, 1982: Choi et al., 1984: Yun et al., 1990: Yoon, 1982). However, detailed ages of the Tertiary sediments, and their correlations in a basin and between basins are still controversial, since the basins are separated from each other, sedimentary sequence is disturbed and intruded by voncanic rocks, and non-marine sediments are not fossiliferous to be correlated. Therefore, in this work radiometric, magnetostratigraphic, and biostratigraphic data was integrated for the refinement of chronostratigraphy and synopsis of stratigraphy of Tertiary basins of Korea. A total of 21 samples including 10 basaltic, 2 porphyritic, and 9 andesitic rocks from 4 basins were collected for the K-Ar dating of whole rock method. The obtained age can be grouped as follows: $14.8{\pm}0.4{\sim}15.2{\pm}0.4Ma$, $19.9{\pm}0.5{\sim}22.1{\pm}0.7Ma$, $18.0{\pm}1.1{\sim}20.4+0.5Ma$, and $14.6{\pm}0.7{\sim}21.1{\pm}0.5Ma$. Stratigraphically they mostly fall into the range of Lower Miocene to Mid Miocene. The oldest volcanic rock recorded is a basalt (911213-6) with the age of $22.05{\pm}0.67Ma$ near Sangjeong-ri in the Changgi (or Janggi) basin and presumed to be formed in the Early Miocene, when Changgi Conglomerate began to deposit. The youngest one (911214-9) is a basalt of $14.64{\pm}0.66Ma$ in the Haseo basin. This means the intrusive and extrusive rocks are not a product of sudden voncanic activity of short duration as previously accepted but of successive processes lasting relatively long period of 8 or 9 Ma. The radiometric age of the volcanic rocks is not randomly distributed but varies systematically with basins and localities. It becomes generlly younger to the south, namely from the Changgi basin to the Haseo basin. The rocks in the Changgi basin are dated to be from $19.92{\pm}0.47$ to $22.05{\pm}0.67Ma$. With exception of only one locality in the Geumgwangdong they all formed before 20 Ma B.P. The Eoil basalt by Tateiwa in the Eoil basin are dated to be from $20.44{\pm}0.47$ to $18.35{\pm}0.62Ma$ and they are younger than those in the Changgi basin by 2~4 Ma. Specifically, basaltic rocks in the sedimentary and voncanic sequences of the Eoil basin can be well compared to the sequence of associated sedimentary rocks. Generally they become younger to the stratigraphically upper part. Among the basin, the Haseo basin is characterized by the youngest volcanic rocks. The basalt (911214-7) which crops out in Jeongja-ri, Gangdong-myon, Ulsan-gun is $16.22{\pm}0.75Ma$ and the other one (911214-9) in coastal area, Jujon-dong, Ulsan is $14.64{\pm}0.66Ma$ old. The radiometric data are positively collaborated with the results of paleomagnetic study, pull-apart basin model and East Sea spreading theory. Especially, the successively changing age of Eoil basalts are in accordance with successively changing degree of rotation. In detail, following results are discussed. Firstly, the porphyritic rocks previously known as Cretaceous basement (911213-2, 911214-1) show the age of $43.73{\pm}1.05$$49.58{\pm}1.13Ma$(Eocene) confirms the results of Jin et al. (1988). This means sequential volcanic activity from Cretaceous up to Lower Tertiary. Secondly, intrusive andesitic rocks in the Pohang basin, which are dated to be $21.8{\pm}2.8Ma$ (Jin et al., 1988) are found out to be 15 Ma old in coincindence with the age of host strata of 16.5 Ma. Thirdly, The Quaternary basalt (911213-5 and 911213-6) of Tateiwa(1924) is not homogeneous regarding formation age and petrological characteristics. The basalt in the Changgi basin show the age of $19.92{\pm}0.47$ and $22.05{\pm}0.67$ (Miocene). The basalt (911213-8) in Sangjond-ri, which intruded Nultaeri Trachytic Tuff is dated to be $20.55{\pm}0.50Ma$, which means Changgi Group is older than this age. The Yeonil Basalt, which Tateiwa described as Quaternary one shows different age ranging from Lower Miocene to Upper Miocene(cf. Jin et al., 1988: sample no. 93-33: $10.20{\pm}0.30Ma$). Therefore, the Yeonil Quarterary basalt should be revised and divided into different geologic epochs. Fourthly, Yeonil basalt of Tateiwa (1926) in the Eoil basin is correlated to the Yeonil basalt in the Changgi basin. Yoon (1989) intergrated both basalts as Eoil basaltic andesitic volcanic rocks or Eoil basalt (Yoon et al., 1991), and placed uppermost unit of the Changgi Group. As mentioned above the so-called Quarternary basalt in the Eoil basin are not extruded or intruaed simultaneously, but differentiatedly (14 Ma~25 Ma) so that they can not be classified as one unit. Fifthly, the Yongdong-ri formation of the Pomgogri Group is intruded by the Eoil basalt (911214-3) of 18.35~0.62 Ma age. Therefore, the deposition of the Pomgogri Group is completed before this age. Referring petrological characteristics, occurences, paleomagnetic data, and relationship to other Eoil basalts, it is most provable that this basalt is younger than two others. That means the Pomgogri Group is underlain by the Changgi Group. Sixthly, mineral composition of the basalts and andesitic rocks from the 4 basins show different ground mass and phenocryst. In volcanic rocks in the Pohang basin, phenocrysts are pyroxene and a small amount of biotite. Those of the Changgi basin is predominant by Labradorite, in the Eoil by bytownite-anorthite and a small amount pyroxene.

  • PDF

다변량 통계 분석 및 질량 균형법을 이용한 제주도 지하수의 수질 요소 분리

  • 고동찬;고경석;김용제;이승구
    • 한국지하수토양환경학회:학술대회논문집
    • /
    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
    • /
    • pp.450-452
    • /
    • 2004
  • Using factor analysis and bivariate comparisons of major components in ground water, three geochemical processes were identified as controlling factors of ground water chemistry; 1) natural mineralization by water rock interactions, 2) effect of seawater which includes salinization by seawater near seashores and deposition of sea salt, and 3) nitrate contamination by N fertilization. Contribution of rainfall was also estimated from the measured composition of wet deposition. The geochemical processes were separated using total alkalinity as an indicator for natural mineralization, Cl for effect of seawater, and nitrate for N fertilization. Relatively high correlation of major components with nitrate suggests that nitrification of nitrogenous fertilizers significantly affects ground water chemistry. Total cations derived from nitrate sources have good linearity for nitrate in equivalent basis with a slope of 1.8, which is a mean of proton production coefficients in nitrification of two major compounds in nitrogenous fertilizers, ammonium and urea. Contribution of nitrate sources to base cations, Cl, and SO$_4$ in ground water was determined considering maximum contribution of natural mineralization to estimate a threshold of the effect of N fertilization for ground water chemistry, which shows W fertilization has a greatest effect than any other processes in ground water with nitrate concentration greater than 50 mg/L for Ca, Mg, Na and with concentration greater than 30 mg/L for Cl and SO$_4$.

  • PDF

울릉도 화산암류의 낙석 규모 및 거동 분석 (Analysis of Magnitude and Behavior of Rockfall for Volcanic Rocks in Ulleung-Do)

  • 문기봉;유영민;윤현석;서영호;서용석;백용
    • 지질공학
    • /
    • 제24권3호
    • /
    • pp.373-381
    • /
    • 2014
  • 낙석은 형상, 체적 및 중량 등 그 규모를 예측하기 어렵고 비탈면의 높이 및 경사 등 기하학적 형상 등에 따라 불규칙적인 거동을 보인다. 본 연구에서는 해안도로를 따라 낙석이 빈번하게 발생하는 울릉도의 비탈면을 대상으로 현장조사를 수행하여 낙석의 유형을 분류하고 규모를 산정하였다. 또한 시뮬레이션 기법을 적용하여 도로에 영향을 미치는 낙석의 거동을 분석하였다. 연구지역에 분포하는 집괴암과 조면암질암은 각각 탈락형과 박리형의 낙석 유형를 보이며, 낙석의 규모는 조면암질암이 집괴암에 비해 상대적으로 2~3배 크게 분포하는 것으로 나타났다. 시뮬레이션을 이용한 낙석의 거동을 분석한 결과, 도로에 작용하는 충격 에너지가 표준 낙석방지울타리의 흡수 가능 운동에너지의 범위를 초과하여 고강도특수망을 적용할 경우 안정성이 확보되는 것으로 나타났다.

월악산화강암(月岳山花崗岩)의 접촉변성(接觸變成)에 관(關)하여 (Study on The Contact Metamorphism of Weolagsan Granite)

  • 이대성;강준남
    • 자원환경지질
    • /
    • 제11권4호
    • /
    • pp.169-182
    • /
    • 1978
  • The Weolagsan area consists of four units; (1) Low grade meta-sediments of the upper members of Ogcheon age unknown group such as Changri (mainly black slate and phyllitic rock), Majeonri (mainly alternation of slate, limestone and chert) and Hwanggangri Formation (pebble bearing phyllitic sediments); (2) Samtaesan Formation of Chosun System of Ordovician; (3) So called meta-volcanics and (4) Weolagsan Granite and its associations which intruded above mentioned meta-sediments and meta-volcanics. This study was focused to know the Woelagsan granite and its metasomatic effects to the country rocks petrographically and petrochemically. According to the field survey, microscopic work and some chemical analysis, the granite is a "normal granite" based on the Streckeisen's classification and belongs to a mass of the Central-zone younger group in Ogcheon geosynclinal belt. The granite metasomatized the country rocks along its northern contact zone. Zone of calcareous and cherty rocks (Majeonri formation) was silicified partly and skarned locally at the contact with the granite. The chemical analysis of the zone show no difinite variations in contents of $SiO_2$ and CaO with the distance from the granite. It seems to be indicated that the silicification of this part was not so metasomatized by the granite body, but thermally affected as much as to be partially remelted in the specific parts of the formations. Meta-volcanic rock zone was slightly chloritized near contact with the granite. Limestone of Samtaesan Formation was silicified and skarned along the contact zone by the granite body. The chemical analysis of the zone show some noticiable changes in compositions of $SiO_2$ and CaO with distance from the granite boundary. It can be imagined that the silicification of this zone was metasomatically originated by Woelagsan Granite. According to chemical analysis on several trace elements, the ratio of Zn/Cr and Ni/Cr are relatively higher than that of Cu/Cr in the above mentioned silicified zones. Generally the variation of these metal elements in the zones tend to be regular with distance from the granite body.

  • PDF