• Title/Summary/Keyword: 굴착성

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A Study on the Thermal Crack Control of Tunnel Lining Concrete due to the Overbreak (과다 여굴에 따른 터널 라이닝콘크리트의 온도균열 제어 연구)

  • 장동일;채원규;조광현;김광일;손영현
    • Proceedings of the Korean Institute of Industrial Safety Conference
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    • 1998.05a
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    • pp.215-220
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    • 1998
  • 터널공사에서는 지산의 강도에 따라 선정된 굴착공법을 이용하여 굴착 된 단면에는 굴삭된 터널의 안전과 시공상 능률을 증진시키고, 장기간에 걸친 터널의 사용에 대한 충분한 신뢰성을 갖추기 위하여 지지공$\cdot$라이닝콘크리트 등이 설치된다. (중략)

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A study on heading failure mode for underground excavation in cohesionless soils (비점착성 지반의 지하공간 굴착면 파괴모드에 대한 연구)

  • Shin, Jong-Ho;Kwon, Oh-Yeob;Cho, Jae-Wan;Choi, Min-Gu
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.7 no.3
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    • pp.197-207
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    • 2005
  • Design analysis for underground spaces requires evaluating stability related to heading collapses. A failure mode is one of the critical factors in the conventional methods of stability evaluation. Identification of failure modes is, therefore, essential in securing safe construction. In this study failure modes at the tunnel heading in cohesionless soils are investigated using physical model tests for various tunnel depths and ground surface inclinations. Test results showed that the effect of depth and the inclination of ground surface on a failure mode are of significance. It is identified that, with an increase in depth, failure modes become localized in a region close to tunnel face. It is also known that an increase in the inclination of ground surface results in inclined an d wide failure modes. Numerical simulation of laboratory tests was performed, and shown that the numerical analysis is useful in identifying the heading failure modes, particularly for large underground spaces.

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A Study on the Prediction of Risk Degree of Side Collapes Due to Excavation (기초굴착에 따른 측면붕괴의 위험성 예측에 관한 연구)

  • 강준묵;한승희;이재기
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.9 no.1
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    • pp.17-25
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    • 1991
  • A foundation excavation is necessarily included in construction works of structures. Involving the dangers of collapse, large-scaled excavation walls require periodic deformation measurements. As only relative displacements and acquired and surface measurements can not be made with the conventional measuring methods, the up-to-date method which can overcome these weaknesses is required urgently. Terrestrial photogrammetry is the method by which absolute deformation amounts of many points can be taken out at a distance from object in short time. The objective of this study is to suggest application propriety of terrestrial photogrammetry to the measurement of excavation walls. For it, we devised same position photography(S.P.P) and possibility of SPP proved through basic experiment. SPP was very speedy photographing method. We found out the fact that as the degree of overlap increase, accuracies of results increase. As a result of applying to excavation side-wall, we detected consistent displacement in 3 dimension each direction within the limits expectional accuracy. If control surveying could be carried out more quickly and accurately, the deformation displacement could be analyzed more effectively.

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도수로터널 굴착에 따른 지하수 유출

  • 이병대;함세영;조병욱;이인호;이춘오;성익환
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2001.09a
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    • pp.67-70
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    • 2001
  • 터널 굴착에 따른 연구지역내 지하수체의 거동 특성을 파악하기 위하여 터널 굴착시 그라우팅 이전의 초기 유출량과 초기 그라우팅 이후의 구간별 유출량을 측정하였고 단열구조와 비교, 분석하였다. 초기 유출량은 120,990 m$^3$/day이며, 초기 유출이 심했던 구간은 크게 6개 구간으로 세분할 수 있다. 초기 그라우팅 후 지하수 유출이 심했던 구간 역시, 그라우팅 이전과 마찬가지로 6개 구간으로 세분할 수 있다. 그라우팅 전, 후의 유출량을 비교해 보면 그라우팅후의 유출량은 42,844m$^3$/day으로, 그라우팅 전에 비해 많이 감소되었다. 터널 굴착시 터널내로 유출되는 지하수의 대부분은 터널과 직교 혹은 사교하여 관통하고 있는 단층 및 단층 파쇄대와 연장성이 양호한 절리면들을 따라서 유동되고 있다. 터널내의 지하수 유출에 영향을 미치는 단열들은 대체로 4조의 불연속면군으로 분류 할 수 있는데, 주 분포방향은 크게 TSet 1 : N60-85$^{\circ}$W, TSet 3 : N40-50$^{\circ}$E, TSet 3 : N10-20$^{\circ}$E, TSet 4 : N70-80$^{\circ}$E이다.

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A Study on Economical Ways to Design Underground Distribution Line (경제적 지중배전선로 구성에 관한 설계방안연구)

  • Lee, Hu-Young;Wong, Yoon-Chan
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.373-374
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    • 2007
  • 지중배전관로공사 설계시 고려할 사항은 지중배전관로 공수산정, 적정관로 선정, 매설위치 및 매설깊이, 관재의 선정, 관로의 경간, 관로배열 등이 고려되어야 한다. 관로공사비는 굴착깊이와 굴착폭에 의해 산정되고 이는 관로배열, 굴착지반의 토질에 따른 굴착구배, 용수여부, 도로관리기관의 조례, 다짐정도, 작업환경, 작업시간 등에 의해 변화하게 된다. 이런 현장조건 들은 설계자가 바꿀 수 없는 요소이지만 관로배열을 어떤 형태로 하여 매설할지는 설계자가 정하여야 한다. 본 연구에서는 경제적인 관로배열을 선정하기 위해 관로공수별, 관로유형별 공사비를 산출하여 비교 검토하였고 현장에서의 공사시공성, 케이블의 허용전류 등을 종합적으로 고려하여 최적의 관로배열을 제시하였다.

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Effect of Joint Persistence on the Formation of Tetrahedral Block Inside an Underground Opening (절리 영속성이 사각 단면 지하공동에서의 사면체 블록 형성에 끼치는 영향)

  • Cho, Taechin
    • Tunnel and Underground Space
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    • v.26 no.6
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    • pp.475-483
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    • 2016
  • A numerical analysis model capable of predicting the shape, the size and the potentiality of collapse of tetrahedral blocks considering the persistence obtained from the field survey of joint distribution around the underground excavation surface has been developed. Numerical functions of analyzing both the exposed trace distribution on the excavation surface and the formation of tetrahedral block controlled by the extent of joint surface have been established and linked to the previously developed three dimensional deterministic block analysis model. To illustrate the reliability of advanced numerical model the case of underground excavation in which the collapse of rock block had practically taken place was studied. Representative orientations of joint sets was determined based on the joint distribution pattern observed on the excavation surfaces. The formation of block on the roof of underground opening was analyzed to unveil the potential tetrahedral block the shape of which was very similar to the collapsed rock block. Mechanisms of collapse process has been also analyzed by considering the three dimensional shape of tetrahedral block.

Deformation Analysis of Excavated Behind Ground by The Artificial Displacement Method (II) - Numerical Analysis and Application - (강제변위법을 이용한 굴착배면지반의 변형해석(II) - 수치해석 및 적용성 -)

  • Yun, Jung-Mann
    • Journal of the Korean Geosynthetics Society
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    • v.7 no.3
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    • pp.31-40
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    • 2008
  • The deformation behavior of the excavated behind ground due to the displacement shape of retention walls is predicted by numerical analysis, which can be performed using the artificial displacement method with elasto-plastic constitutive model. The displacement shape of the behind ground around the retention wall is similar to the displacement shape of the retention wall. However, far from the retention wall, it changes to the displacement shape of cantilever. The deformation (the settlement, the lateral movement) of the excavated behind ground can be decreased by restraining the upper displacement of the retention wall. The displacement shape of the retention wall due to excavation affects on the plastic failure zone and decreasing zone of stability of the excavated behind ground.

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Field Study on Stabilization of Landfill Gas by Air Injection Mode (공기주입방식에 의한 매립지가스 안정화에 관한 현장연구)

  • Kim, Kyung;Park, Joonseok
    • Journal of the Korean GEO-environmental Society
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    • v.7 no.4
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    • pp.63-71
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    • 2006
  • This study was conducted to evaluate air injection mode on stabilization of landfill gas and to predict the time for landfill mining. It took 8 times longer for pulse aeration to get to aerobic condition, compared to continuous aeration. It was evaluated that continuous aeration mode is more preferable than pulse mode for rapid air exchange in landfill mining. High correlation ($r^2$ = 0.95) was found between continuous aeration time and time to maintain aerobic condition when $0.2m^3/min$ of air was continuously injected and stopped. The aerobic condition ($CH_4$ < 5%) was maintained for 1.5 times longer than aeration time.

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Estimation from Field Tests of the Excavation Efficiency of an Improved Hydraulic Rock Splitting System (현장실험을 통한 개선된 수압암반절개시스템의 굴착 효율성 평가)

  • Park, Jong Oh;Woo, Ik
    • The Journal of Engineering Geology
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    • v.31 no.4
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    • pp.719-730
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    • 2021
  • An improved packer and injection system was developed to improve the efficiency of excavation by hydraulic rock splitting by reducing vibration and noise. Field testing of the system found hydraulic fractures limited in expansion and extension due to the loss of injection pressure by leackage from the cracks, and then the single packer applied to injection hole allowed to produce a sufficient tensile displacement for rock excavation. Numerical analysis based on the field test data could explain the development of cracks in the field experiments.

A Study on Numerical Analyses and Field Application for Tunneling Using the Critical Strain in the Ground (지반의 한계변형률을 이용한 터널수치해석 및 현장 적용성 연구)

  • Park, Si-Hyun
    • The Journal of Engineering Geology
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    • v.18 no.3
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    • pp.339-347
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    • 2008
  • This study was carried out to assess quantitatively the safety of a tunnel by using critical strains in the ground. Critical strain is a new material property of the ground. It can be applied as deformation limits in the ground due to excavation using the measured displacement at the tunnel construction site. To achieve this purpose, the critical strain concept was reviewed and applied to assess the tunnel safety. First of all, the calculated excavation displacements of a circular tunnel by commercial programs were investigated and inputted into a feedback analysis module to calculate strains in the ground. Then the safety of tunnels was evaluated based on the critical strain concept. Subsequently the measured displacements obtained in the field are utilized practically to assess the safety of tunnels using the critical strain concept. Through this study, it was confirmed that the critical strain concept is useful to assess the safety of tunnels quantitatively.