• 제목/요약/키워드: drilling survey

검색결과 116건 처리시간 0.026초

비고결 퇴적물에서 다운홀 탄성파 탐사, MASW, SCPT로 구한 횡과 속도 단면과 시추결과 비교 연구 (Comparison of S-wave Yelocity Profiles Obtained by Down-hole Seismic Survey, MASW and SCPT with a Drilling Log in Unconsolidated Sediments)

  • 김현도;김진후
    • 한국지구과학회지
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    • 제25권4호
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    • pp.270-276
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    • 2004
  • 지반의 횡파 속도 단면은 주로 다운흘 탄성파 탐사에 의존해 왔으나 최근에 MASW와 같은 표면파 탐사방법과 SCPT와 같은 탄성파 콘 관입시험법 등이 개발되어 사용되고 있다. 본 연구에서는 비고결 퇴적물에서 다운홀 탄성파 탐사, MASW, SCPT 등을 사용하여 횡파 속도 단면을 구하고 이들을 시추조사 결과와 비교하였다. 그 결과 퇴적물상의변화와 횡파 속도 변화는 밀접한 관계가 있음을 알 수 있었으며, 세 가지 횡파 속도 단면 중 SCPT가 퇴적물상의 변화에 가장 민감하게 반응하는 것을 알 수 있었다. SCPT 결과 퇴적층 내 약 8${\sim}$l2m 깊이에 주로 점토질 모래로 구성되어 있는 저속도 층이 있음을 알 수 있었다.

TBM 주변 지반상태예측을 위한 전기비저항 이론식 유도 및 검증 (Derivation and verification of electrical resistivity theory for surrounding ground condition prediction of TBM)

  • 홍창호;이민형;조계춘
    • 한국터널지하공간학회 논문집
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    • 제22권1호
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    • pp.135-144
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    • 2020
  • 국내에서 TBM 공법을 활용한 터널건설 시 점차 건설심도가 깊어지고 있으며, 이로 인해 상부 지반조사 단계에서 충분한 예측 정확도를 획득하기 위해서는 시추조사 및 물리탐사 비용이 증가하게 된다. 이러한 문제를 극복하기 위해 터널 시공 중 터널 굴착면 전방 예측을 위한 방법들이 제시되었다. 프로브 드릴링을 활용한 굴착면 전방 예측은 코어회수, 시추공 내부 이미지 등을 활용할 수 있는 장점이 있지만 실제 TBM 내에 설치가 어렵고 터널 막장 전체가 아닌 국부적인 지반만을 파악할 수 있다. TSP 등 탄성파를 활용한 방법은 100 m 이상의 긴 탐사거리를 가지지만 신호발생을 위해 발파를 사용하므로 세그먼트 라이닝, 백필 등의 안정성에 영향을 미칠 수 있다. TEPS를 포함한 전자기파 탐사는 지하수 층 등 전도성 있는 이상대를 파악하는 데 적합하지만 소구경 TBM에 설치할 수 있는 전극의 개수가 한정적이며 이는 탐사 범위의 감소 등을 야기한다. 본 연구에서는 전기비저항 탐사 시 굴착면에 설치되는 전극의 개수를 최소화하기 위해 TBM의 굴착면과 측면에 전극이 설치되었을 때에 대한 탐사 이론식을 제시하고 실내실험을 통해 검증하였다.

Water bottom seismic refraction survey for engineering applications

  • Cha Young Ho;Jo Churl-Hyun
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.449-454
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    • 2003
  • The accurate mapping of the basement is one of the most crucial factors in construction of harbour facilities and bridges in the coastal areas. In shallow waters, the seismic reflection method often fails to image the basement geometry beneath the sediment cover in many cases. We present the result of a shallow marine seismic refraction survey using two ships, l2-channel hydrophone arrays deployed on the bottom and a borehole sparker or percussion powder as sources. Velocity structure could be computed by tomography algorithm since more than 6 different source points had been applied for one spread. The comparison of the results of the refraction survey with drilling logs demonstrates remarkable consistency in basement geometry. It thus appears that the refraction method in this study is an efficient and cost-effective way to investigate the basement structure in coastal area, river, and lake.

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포항(浦項)의 제삼기층(第三紀層)과 일본유전지질(日本油田地質)의 층위대비연구(層位對比硏究) (Stratigraphical Study on Tertiary System of Pohang Area Compared with Petrogeologies of Japan)

  • 장세용
    • 자원환경지질
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    • 제9권1호
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    • pp.1-11
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    • 1976
  • It is believed that geological survey, drilling and geophysical survey which was carried out on Tertiary deposits in Pohang is a valuable but through the studying of many Tertiary sediments in Japan discovered many questions on analysis of final report prepared by National geological survey. The main reason is: 1. The seismic sound velocity which have regulated in the final report prepared by geological survey for Tertiary deposits in Pohang was 1,500-2,000m/sec in spite of oil bearing sediments of same age in Japan are 2,000-3,800m/sec. These may means the requirement of reconsideration of seismic velocity for Tertiary deposits in Pohang and required to have a dipper drilling. 2. Stratigraphically, geophysically, and paleontologically, the Tertiary deposits in Pahang land area is similar with that of Nishiyama-Hunakawa formations of Akita oil field in Japan. Nishiyama-Hunakawa formation is the main oil bearing formation in Japan. 3. Those valcanic rock including andestitic rock and liparitic rock which have extensively distributed over either at land area or at sea bottom, assumed by geological survey as the base of Tertiary sediments. But in case of Japan many oil bearing deposits are in over laid by these kind of volcanic rock. Therefore a possible of same condition with Japan is presumable on Tertiary sediments in Pohang. 4. It is believed that the Tertiary sediments of land area in Pohang is the extension of offshore basin but is wandering that the final report submitted by geologic survey have not remain any word on report of ECAFE discribed so much problematics as followed: A. Although it was assumed that no great thickness exceeding 1,000 meters, or major structures would be encountered in the Tertiary offshore sequence, it was hoped that shallow hydrocarbon deposits might be found, because these sediment are lithologically similar to those of the same age in the producing area of the northwest Honshu region of Japan where hydrocarbon are extracted from depths of only 500 to 600 meters. B. Four possible hydrocarbon trap conditions are represented in the survey area: anticlinal folds, faults, pinch outs, along the igneous basement and lateral facies changes. C. Most of the prime possible reservoir area are beyond the 50 meter water depth mark, except for the structures in Yonil Bay. D. Despite the shallowness of the offshore basin, sufficient trap condition exist in the area to warrant further exploration for hydrocarbon. 5. All of the problems mentioned above have gave us a strong reasons to have us hesitating to make a final conclusion on Tertiary problems in Pohang, before to have a drill to a depth to 3,000 meters or more whatever it is the Tertiary or a Mesozoics below 1,000 meters.

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시추조사 정보 활용방안에 관한 연구 (A Study on the Utilization of Drilling Investigation Information)

  • 김진환;백용;이종현;이규필;김우석
    • 지질공학
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    • 제33권4호
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    • pp.531-541
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    • 2023
  • 4차 산업, AI 시대, 스마트건설 시대에 가장 중요한 것은 디지털 데이터다. 토목 건설 분야의 기초 데이터는 지반조사로부터 시작된다. 시추조사를 포함한 지반조사 데이터 관리를 위해 국토교통부에서는 국토지반정보 통합DB센터를 운영하고 있으나 데이터의 유통에 초점이 맞추어져 있다. 본 연구는 각종 건설공사의 설계, 시공을 위해 수행하였던 시추조사 결과를 장기적으로 활용하는 방안을 마련하기 위해 시범지구를 설정하고 시추조사 자료 중, 일부 지반설계정수를 이용하여 '지반설계정수 디지털 맵'제작하였다. 개발한 알고리즘을 이용하여 시범지구 경암 지층에 대한 마찰각과 투수계수 지반설계정수 디지털 맵을 제작하였다. 지반설계정수 디지털 맵은 지반의 전체적인 상태를 파악할 수 있으나 입력되는 초기 데이터가 부족하여 신뢰성 보완이 필요하다. 추가 연구를 통해 보다 완성된 지반설계정수 디지털 맵을 제작할 수 있을 것이다.

동성광산(東星鑛山)의 지질(地質)과 광상(鑛床), 시추결과(試錐結果)를 중심(中心)하여 (On the Geology, Ore Deposit and Drilling Summary of Dongsung Copper Mine)

  • 김정택
    • 자원환경지질
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    • 제5권3호
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    • pp.133-144
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    • 1972
  • The mine of our present concern is situated at Shim-ri, Gusan-myon, Changwon-gun, Kyongsang-namdo, with lattitude $128^{\circ}35^{\prime}{\sim}36^{\prime}N$ and longitude $35^{\circ}03^{\prime}{\sim}04^{\prime}E$. This mine has not been noticed until the intermittent geological survey for the ore deposits were initiated from September, 1967 till 1970. The main mineralized zones, No.1 and No.2 zones, were studied by the diamond drilling of 9 holes down to the total depth of 1,140m, and found to have ore reserves of Cu 1.99% ore, estimated to reach around $358,000{\frac{M}{T}}$ (proved $117,000{\frac{M}{T}}$, indicated $241,000{\frac{M}{T}}$), which triggered the new exploitation of this mine. Geological composition of the district near the mine is mainly from the andesite belonging to the Silla Series of Kyongsang System and the distribution is broadly spread. Ore deposits are the hydrothermal one, filling the shear zone formed alongside the andesite main joint. There are two stripes of copper bearing mineralized zone which are about 40~70 meters apart and parallel to each other, in addition to which two others are expected. The strike of the main mineralized zone lies at $N15^{\circ}{\sim}20^{\circ}W$, the dip at $60^{\circ}{\sim}70^{\circ}NE$. The principal components of the ore mineral are chalcopyrite, bornite and as secondary, cuprite, tenorite, azurite and malachite. Pyrite, magnetite, specular hematite, very little of galena, sphalerite, quartz, epidote, zoisite, chlorite and calcite are found as gangue mineral. Confirmed by the drilling, the main mineralized zone, No.1 zone, has the length of 320m, average width of 1.62m, Ag 26g/t, Cu 1.84% and the average width of the ore zone except the narrow barren andesite horse interposed in the mineralized zone is 1.32m with Ag 32g/t and Cu 2.26%. The mineralized zone No.2 is 340m long, 1.00m wide with Ag 30g/t and Cu 2.15%. Neglecting the barren andesite horse the width is 0.73m with Ag 42g/t and Cu 2.94%.

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석모도 지열수 개발을 위한 자기지전류탐사의 적용 (Application of magnetotelluric survey for development of deep geothermal water at Seokmo Island, Korea)

  • 이태종;송윤호;박덕원
    • 한국지열·수열에너지학회논문집
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    • 제4권1호
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    • pp.1-10
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    • 2008
  • A magnetotelluric survey and geological survey have been performed to delineate deeply extended fracture systems at the geothermal field in Seokmo Island, Inchon, Korea. One borehole(BH-1) succeed to meet a large fracture system at the depth of 750 m where approximately $72^{\circ}C$ geothermal water is overflowing, while the other borehole(BH-2), which is about 200 m eastward from BH-1, failed to develop enough geothermal water even at the depth of 1,200m. Though there have been so many electric noise sources around the survey region, good quality of MT data above 1 Hz could be obtained with careful installation, remote reference processing. Inversion of MT data for two lines roughly perpendicular to the two major lineaments respectively show that the two lineaments are related to the fracture systems that are extended at least down to 1.5 km depth and inclined eastwards. From the interpretation, additional drilling for BH-2 is recommended and finally meet the fracture systems at the depth of 1,280 m and resulted in overflow of large amount of geothermal water of temperature $69.4^{\circ}C$ from BH-2.

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DEEP-South: 2nd phase of observations for small Solar System bodies

  • Kim, Myung-Jin;Choi, Young-Jun;Yang, Hongu;Lee, Hee-Jae;Kim, Dong-Heun;JeongAhn, Youngmin;Roh, Dong-Goo;Moon, Hong-Kyu;Chang, Chan-Kao;Durech, Josef;Broz, Miroslav;Hanus, Josef;Masiero, Joseph;Mainzer, Amy;Bauer, James
    • 천문학회보
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    • 제45권1호
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    • pp.46.1-46.1
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    • 2020
  • DEEP-South (DEep Ecliptic Patrol of the Southern Sky) team will start the 2nd phase of KMTNet observation in Oct 2020. The DEEP-South observation mainly consists of three survey modes: (1) Activity survey (AS) that aims at finding active phenomena of small Solar System bodies. (2) Light curve survey (LS) targets to discover and characterize light variations of asteroids. And (3) Deep drilling survey (DS) focuses on the objects beyond the orbit of Jupiter (Centaurus and trans-Neptunian objects) as well as near Earth asteroids. For asteroid family (AF) studies and target of opportunity (TO) observations for urgent photometric follow-up, targeted mode will also be used. DEEP-South team is awarded 7.0% of the telescope time at each site every year from Oct 2020 to Sep 2023 in the 2nd phase of KMTNet operation which corresponds to about 75 full nights a year for the network. In this presentation, we will introduce our survey strategy and observation plan.

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Mapping Submarine Bathymetry and Geological Structure Using the Lineament Analysis Method

  • Kwon, O-Il;Baek, Yong;Kim, Jinhwan
    • 지질공학
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    • 제24권4호
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    • pp.455-461
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    • 2014
  • The Honam-Jeju, Korea-Japan, and Korea-China subsea tunnel construction projects have drawn significant attention since the early 2000s. These subsea tunnels are much deeper than most existing natural shallow sea tunnels linking coastal areas. Thus, the need for developing new technologies for the site selection and construction of deep subsea tunnels has recently emerged, with the launch of a research project titled "Development of Key Subsea Tunnelling Technology" in 2013. A component of this research, an analysis of deep subsea geological structure, is currently underway. A ground investigation, such as a borehole or geophysical investigation, is generally carried out for tunnel design. However, when investigating a potential site for a deep subsea tunnel, borehole drilling requires equipment at the scale of offshore oil drilling. The huge cost of such an undertaking has raised the urgent need for methods to indirectly assess the local geological structure as much as possible to limit the need for repeated borehole investigations. This study introduces an indirect approach for assessing the geological structure of the seafloor through a submarine bathymetry analysis. The ultimate goal here is to develop an automated approach to the analysis of submarine geological structures, which may prove useful in the selection of future deep subsea tunnel sites.

3성분 지오폰을 이용한 막장전방 예측 탄성파탐사 (Seismic reflection imaging ahead of tunnel face using 3 component geophones)

  • 조철현;차영호;양종화;방기문
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2005년도 추계학술대회 논문집
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    • pp.412-417
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    • 2005
  • To ensure the safety of the tunnelling without the loss of economy, the tunnel seismic profiling(TSP) method for the prediction ahead of tunnel face, begins to be used routinely in these days. TSP method does not interfere the tunnelling works while the horizontal drilling does, and its prediction length is longer than that of the drilling. Yet the most frequently adopted technique of TSP in Korea is the multi-shot and 2 receiver array using in-hole receivers, even though this array requires as many as 26 drill-holes for receiver installation and ballasting, which results in 3-6 hours of suspension in excavation work. In this paper, multi-receiver and lesser shot array using side-wall attached 3 component geophones is to be described to prove the efficiency in terms of the survey time as well as the reliability of the method by comparison of the predicted weak points and the face mapping results. The predictions mostly agreed with the real fractures or joint developed zones which have been confirmed during the excavation. It also has been found that TSP method can be effectively applied to perform draining ground water ahead of tunnel face by imaging the geologic discontinuities.

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