• 제목/요약/키워드: Basalt rock

검색결과 116건 처리시간 0.027초

Rock Type Classification by Multi-band TIR of ASTER

  • Watanabe, Hiroshi;Matsuo, Kazuaki
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2003년도 Proceedings of ACRS 2003 ISRS
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    • pp.1445-1456
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    • 2003
  • The ASTER TIR (thermal infrared radiometer) sensor has 5 spectral bands over 8 to 12 ${\mu}$m region. Rock type classification using the ASTER TIR nighttime data was performed in the Erta Ale range of the Ethiopian Rift Valley. Erta Ale range is the most important axial volcanic chain of the Afar region. The petrographic diversity of lava erupted in this area is very important, ranging from magnesian transitional basalt to rhyolites. We tried to classify the rock types based on the spectral behavior of each volcanic rock types in thermal infrared range and estimated SiO$_{2}$ content with emission data by the ASTER TIR.

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대형삼축압축시험을 이용한 북제주현무암 사석재의 강도정수 및 전단거동 (Strength Parameters and Shear Behaviors of North-Cheju Basalt Rubble Using Large-scale Triaxial Test)

  • 정철민;김종수;채영수
    • 한국지반공학회논문집
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    • 제18권2호
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    • pp.147-160
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    • 2002
  • 우리나라 해양수산부(1999) $\ulcorner$항만 및 어항설계기준$\lrcorner$ 에서는 중력식 방파제 또는 중력식 안벽의 기초의 지지력 검토시 Bishop방법을 이용하여 기초의 지지력을 계산하는 것을 표준으로 규정하구 이 때 사석의 강도정수는 대형삼축압축시험을 이용하여 정하는 것이 가장 합리적이나 여러가지 여건상 시험이 불가능할 경우에는 일본 항만기술연구소의 $\ulcorner$항만기연자료 No. 699(水上, 1991)$\lrcorner$를 인용하여 암석의 일축압축강도가 300 kg/$cm^2$이상이면 점착력 0.2kg/$cm^2$, 내부마찰각 $35^{\circ}$$^{\circ}$는 기대할 수 있다는 결과를 인용.제시하고 있다. 그러나 이에 대한 국내의 어떠한 검증도 이루어지지 않았다. 본 연구에서는 비교적 일축압축강도가 작은 북제주 다공질 현무암 사석재를 대상으로 국내최초로 대형삼축압축시험(공시체직경: 30cm, 공시체높이: 60cm)을 실시하였다. 시험결과 북제주 현무암 사석재의 일축압축 강도가 400 kg/$cm^2$보다 클 경우 c=0.3kg/$cm^2,\phi=36^{\circ}$ 의 강도정수를 사용할 수 있음을 제안하고, 입자파쇄와 다이러턴시로 대표되는 사석재의 전단 특성에 대해서도 고찰하였다.

Modulus of elasticity of concretes produced with basaltic aggregate

  • Maia, Lino;Aslani, Farhad
    • Computers and Concrete
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    • 제17권1호
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    • pp.129-140
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    • 2016
  • Basalt is a type of volcanic rocks, grey to black in colour, contains less than 20% quartz, 10% feldspathoid, and at least 65% of the feldspar of its volume. Basalt is considered an igneous rock with fine grains due to the rapid cooling of lava. Basaltic rocks have been widely used as aggregate for various purposes. The study presented in this paper was carried out on basalts that are widespread in the Madeira Island of Portugal and that comprise the major source of local crushed rock aggregates. This paper discusses an experimental programme that was carried out to study the effects of basaltic aggregate on the compressive strength and modulus of elasticity of concrete. For this purpose, cylinder specimens with $150{\times}300mm$ dimensions and prism specimens with $150{\times}150{\times}375mm$ dimensions were cast. The experimental programme was carried out with several concrete compositions belonging to strength classes C20/25, C25/30, C30/37, C40/50 and C60/75. The Eurocode 2 indicates the modulus of elasticity should be 20% higher when the aggregates are of basaltic origin, however results showed significant differences and a correction is proposed.

Effect of rock mineralogy on mortar expansion

  • Karaman, Kadir;Bakhytzhan, Aknur
    • Geomechanics and Engineering
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    • 제20권3호
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    • pp.233-241
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    • 2020
  • Alkali-silica reaction (ASR) is among one of the most important damaging mechanisms in concrete, depending primarily on aggregates which contain reactive minerals. However, expansion in concrete may not directly relate to the reactive minerals. This study aims to investigate the influence of ASR and the expansion of mortar bars depending on aggregate type containing various components such as quartz, clay minerals (montmorillonite and kaolinite) and micas (muscovite and biotite). In this study, the accelerated mortar bar tests (AMBT) were performed in two conditions (mortar bars in the same and sole NaOH solutions). Petrographic thin section studies, X-ray diffraction (XRD) analysis (Rietveld method), scanning electron microscopy (SEM) and chemical analyses were carried out. This study showed that quartzite bars led to increase in expansion values of mortar bars in diabase-1 and andesite when these were in the same NaOH solution. However, three samples (basalt, quartzite and claystone) were found having ASR expansion based on the AMBT when the special molds were used for each sample. SEM study revealed that samples which exhibit highest expansions according to AMBT had a generally rough surface and acicular microstructures in or around the micro-cracks. Basalt and quartzite showed more variable in major oxides than those of other samples based on the chemical analyses, SEM studies and AMBT. This study revealed that the highest expansions were observed to source not only from reactive aggregates but also from alteration products (silicification, chloritization, sericitization and argillisation), phyllosilicates (muscovite, biotite and vermiculite) and clays (montmorillonite and kaolinite).

현무암 CO2 지중저장 해외 연구 사례 조사 및 타당성 분석 (A Comprehensive Review of Geological CO2 Sequestration in Basalt Formations)

  • 전현정;신형철;윤태권;한원식;정재훈;곽재휘
    • 자원환경지질
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    • 제56권3호
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    • pp.311-330
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    • 2023
  • CO2 배출량 증가로 인한 지구온난화 심화에 대한 주요 대책으로 CO2를 포집하여 지중에 저장하는 이산화탄소 포집·저장(Carbon capture storage, CCS) 기술이 주목받고 있다. 최근 현무암의 거대한 체적, 높은 반응성, 풍부한 양이온 함량 등의 특성이 CO2 포획 및 저장 기작에 유리하게 작용한다는 사실이 부각되면서, 현무암층을 대상으로 하는 CO2 지중저장이 다양한 분야에서 연구되고 있다. 본 연구에서는 CO2 지중저장 기작, 현무암의 특성과 더불어 국외 연구 사례들을 조사 및 분석하여, 현무암 CO2 지중저장에 대한 타당성을 검토하였다. 조사한 사례들은 수행 방법을 기준으로 실험, 모델링, 현장 실증 연구로 분류하였다. 연구 사례별 실험 조건의 경우 온도는 20 ~ 250 ℃, 압력은 0.1 ~ 30 MPa, 암석-유체 간 반응 시간은 수 시간에서 4년까지 넓은 범위에서 진행되었다. 모델링 연구에서는 현무암 CO2 지중저장 후보지와 유사한 모델을 구축하여 CO2-유체 주입 전∙후 유체역학적 및 지화학적 요인들에 대한 변화를 살펴본 사례가 다수였다. 검토 결과, 현무암은 잠재 CO2 저장용량이 크고, CO2 광물화 반응이 빠르기 때문에 현무암 CO2 지중저장시 온도와 압력 및 지질구조와 같은 환경적인 제약이 적다. 현장 실증 사례인 CarbFix project, Wallula project가 성공적으로 수행되어 실증 수행가능성 또한 높게 평가되고 있다. 그러나 현무암 대상 CO2 지중저장에서 신중히 고려해야 할 점도 존재한다. 광물화 기작이 현무암의 조성, 주입 지역의 특성 등 여러 요인에 따라 결과가 상이하게 나타나고, 탄산염과 규산염 광물 등의 침전으로 인해 관정 주입성(injectivity) 저하가 발생할 수 있다. CO2 주입 시 저장층 내 압력 증가가 발생할 수 있으며 암석-CO2-유체 반응 과정에서 지중환경 오염의 위험성도 존재한다. 유체에 CO2를 용해시켜 주입하기 때문에 기존 방식과 다른 지중 모니터링 기술 또한 요구된다. 따라서, 현무암에서의 CO2 지중저장을 안정적이고 효율적으로 수행하기 위해서는 적합한 대상 지역을 선별하고, 해당 지역에 대한 여러 자료를 구축하여 이를 기반으로 한 다양한 실험, 모델링, 현장 실증 등의 체계적인 연구 수행이 필요하다.

Dynamic stability analysis of rock tunnels subjected to impact loading with varying UCS

  • Zaid, Mohammad
    • Geomechanics and Engineering
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    • 제24권6호
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    • pp.505-518
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    • 2021
  • The present paper has been carried out to understand the effects of impact loading on the rock tunnels, constructed in different region corresponding to varying unconfined compressive strength (UCS), through finite element method. The UCS of rockmass has substantial role in the stability of rock tunnels under impact loading condition due to falling rocks or other objects. In the present study, Dolomite, Shale, Sandstone, Granite, Basalt, and Quartzite rocks have been taken into consideration for understanding of the effect of UCS that vary from 2.85 MPa to 207.03 MPa. The Mohr-Coulomb constitutive model has been considered in the present study for the nonlinear elastoplastic analysis for all the rocks surrounding the tunnel opening. The geometry and boundary conditions of the model remains constant throughout the analysis and missile has 100 kg of weight. The general hard contact has been assigned to incorporate the interaction between different parts of the model. The present study focuses on studying the deformations in the rock tunnel caused by impacting load due to missile for tunnels having different concrete grade, and steel grade. The broader range of rock strength depicts the strong relationship between the UCS of rock and the extent of damage produced under different impact loading conditions. The energy released during an impact loading simulation shows the variation of safety and serviceability of the rock tunnel.

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
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    • 제25권3호
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    • pp.337-349
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    • 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.

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국내 화산암 지역 지하수 중 자연방사성 물질에 대한 환경 특성 (Environmental Characteristics of Natural Radionuclides in Groundwaters in Volcanic Rock Areas: Korea)

  • 정도환;김문수;주병규;홍정기;김동수;김현구;김혜진;박선화;한진석;김태승
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권1호
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    • pp.36-45
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    • 2013
  • We analyzed natural radionuclides in 80 wells in volcanic rock areas and investigated environmental characteristics. Uranium and radon concentrations ranged from ND to $9.70{\mu}g/L$ (median value: 0.21) ${\mu}g/L$, 38~29,222 pCi/L (median value: 579), respectively. In case of gross-${\alpha}$, 26 samples exceeded MDA (minimum detectable activity, < 0.9 pCi/L) value and the activity values ranged from 1.05 to 8.06 pCi/L. The radionuclides concentrations did not exceed USEPA MCL (maximum contaminant level) value of Uranium ($30{\mu}g/L$) and gross-${\alpha}$ (15 pCi/L). But Rn concentrations in 4 samples exceeded USEPA AMCL (Alternative maximum contaminant level, 4,000 pci/L) and one of them showed a significantly higher value (29,222 pCi/L) than the others. The levels of uranium concentrations in volcanic rock aquifer regions were detected in order of andesite, miscellaneous volcanic rocks, rhyolite, basalt aquifer regions. Radon, however, was detected in order of miscellaneous volcanic rocks, rhyolite, andesite, basalt aquifer regions. The correlation coefficient between uranium and radon was r = 0.45, but we found that correlations of radionuclides with in-situ data or major ions were weak or no significant. The correlation coefficient between the depth of wells and uranium concentrations was a slightly higher than that of depth of wells and radons. Radionuclide concentrations in volcanic rock aquifers showed lower levels than those of other rock aquifers such as granite, metamorphic rock aquifers, etc. This result may imply difference of host rock's bearing-radioactive-mineral contents among rock types of aquifers.

제주도 사라봉-별도봉-화북봉 일원의 화산층서와 화산암의 특성 (Volcanic Stratigraphy and Characteristics of Volcanic Rocks of the Sarabong-Byeoldobong-Hwabukbong Area, Cheju kland, Korea)

  • 고보균;원종관;이문원;손인석
    • 한국지구과학회지
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    • 제22권1호
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    • pp.10-19
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    • 2001
  • 제주도 사라봉-별도봉-화북봉 일대에는 3개의 분석구와 이들로부터 분출한 화산분출물들이 복잡한 화산 층서를 형성하였다. 또한 별도봉 응회암에는 현무암과, 제주도 기반암중의 하나인 화강암의 암편이 나타난다. 그리고 비석거리 하와이아이트(hawaiite)에는 케르수타이트(kaersutite)가 특징적으로 나타나기 때문에 제주도 화산활동사를 연구하는데 중요한 대상이 된다. 이 지역의 최하부에는 신흥리 현무암과 별도봉 응회암이 분포한다 별도봉 응회암에는 반상 현무암과 이 지역의 기반암인 화강암의 암편을 함유한다. 그 위에 화북봉 화산활동에 의해 각섬석류의 한 종류인 케르수타이트를 다량 함유한 비석거리 하와이아이트가 피복하고 그 다음에 화북봉 분석구가 형성되었다. 그 후에 사라봉 화산활동에 의해 사장석과 감람석이 많은 건입동 하와이아이트가 분출하였고 마지막으로 사라봉 분석구가 형성되었다. 별도봉 응회암내에 포획된 현무암은 신흥리 현무암과는 암상이 다른 반정질 현무암으로, 신흥리 현무암과 기반암 사이에 또 다른 현무암층이 존재할 것으로 추정된다. 이 지역의 기반암인 화강암의 암편은 미르메카이트 조직(myrmekitic texture)과 미사장석을 보이며 K-Ar법에 의한 절대연령이 172.4Ma인 쥬라기 화강암이다.

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