• 제목/요약/키워드: Underground excavation

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쉴드TBM 터널 시공 사례 : 인천도시철도1호선 검단연장선 1공구 (Case Study of Shield Tunnel Construction : Incheon Metro Line 1 Geomdan Extension Phase 1 Project)

  • 박병관;주채만;허도학;송현섭;주광수;김도훈;이민상
    • 터널과지하공간
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    • 제34권3호
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    • pp.185-195
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    • 2024
  • 인천도시철도 1호선 검단연장선 1공구 건설공사는 국내 최초로 로드헤더와 TBM 장비가 함께 적용되었다. 쉴드TBM 터널 구간은 1,057 m이며, 대부분 암반으로 구성 되어있으며 공항철도 및 경인아라뱃길 하부 터널 구간 공사를 포함하고 있다. 굴진을 위해 7.8 m 토압식 쉴드TBM 장비가 투입되었으며, 상·하선 구간의 평균 월굴진율은 239.1 m이고, 최대 월굴진율은 334.5 m이다. 본 기술기사에서는 인천도시철도 1호선 검단연장선 1공구 쉴드TBM 터널 굴진 실적을 중심으로 쉴드TBM의 생산성을 종합적으로 평가해 보았으며, 성공적인 쉴드TBM 터널 공사 수행에 있어서 유용한 자료를 제공하고자 한다.

Design and construction of shaft for rock caverns in Singapore

  • Zhang, Xiao-Ping;Lu, Ming;Mao, Dawei;Zhao, Zhiye;Hao, Liu
    • Geomechanics and Engineering
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    • 제13권1호
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    • pp.173-194
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    • 2017
  • Access shaft is of critical importance to the construction and operation of underground rock caverns. It usually has a relatively large cross-section and penetrates through fill materials, soil layers, and weathered rocks before reaching the caverns excavated in solid bedrock. In this paper, the design and construction of vertical shafts are reviewed in terms of diameter, depth, geological conditions, and support structure. Three shaft alternatives, namely alternative I: vertical shaft with spiral roads, alternative II: upper shaft with spiral roads & lower tunnels, alternative III: plain shaft, are proposed based on a simplified geological profile of the Jurong formation, Singapore. The advantages and limitations of the three types of shafts are discussed. The key issues relating to shaft design and construction, such as the shaft sinking, water control, support structure, are also discussed with a series of solutions provided, such as the sequential excavation, pre-grouting and diaphragm walls.

Combination of engineering geological data and numerical modeling results to classify the tunnel route based on the groundwater seepage

  • Aalianvari, A.
    • Geomechanics and Engineering
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    • 제13권4호
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    • pp.671-683
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    • 2017
  • Groundwater control is a significant issue in most underground construction. An estimate of the inflow rate is required to size the pumping system, and treatment plant facilities for construction planning and cost assessment. An estimate of the excavation-induced drawdown of the initial groundwater level is required to evaluate potential environmental impacts. Analytical and empirical methods used in current engineering practice do not adequately account for the effect of the jointed-rock-mass anisotropy and heterogeneity. The impact of geostructural anisotropy of fractured rocks on tunnel inflows is addressed and the limitations of analytical solutions assuming isotropic hydraulic conductivity are discussed. In this paper the unexcavated Zagros tunnel route has been classified from groundwater flow point of view based on the combination of observed water inflow and numerical modeling results. Results show that, in this hard rock tunnel, flow usually concentrates in some areas, and much of the tunnel is dry. So the remaining unexcavated Zagros tunnel route has been categorized into three categories including high Risk, moderately risk and low risk. Results show that around 60 m of tunnel (3%) length can conduit the large amount of water into tunnel and categorized into high risk zone and about 45% of tunnel route has moderately risk. The reason is that, in this tunnel, most of the water flows in rock fractures and fractures typically occur in a clustered pattern rather than in a regular or random pattern.

과지압 하에 있는 대규모 지하공동의 지보 시스템에 관한 연구 (A Study on the Support System of Large Caverns Under High Initial Stress)

  • 박연준;유광호;최영태;김재용
    • 터널과지하공간
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    • 제14권2호
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    • pp.154-166
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    • 2004
  • 본 연구에서는 측압이 매우 큰 암반에 대규모 유류저장공동을 병렬로 굴착할 경우, 공동 및 지보재의 역학적 안정성을 평가하였다. 수치해석적인 방법을 동원하여 공동 주변 암반의 거동을 분식하고, 주된 지보재인 rockbolt와 숏크리트의 역할을 분석하였으며, 각 지보재의 안정성을 평가하였다. 적정한 지보시스템 구축을 위하여 지보재 모델링 기법, 공동 단면 형상, 지보재의 규격 등이 공동의 안정성에 미치는 영향을 파악하였다. 해석결과 지보재의 타설시기와 다단계 굴착에 따른 공동 형상의 변화가 지보재에 발생하는 응력에 큰 영향이었음을 알 수 었었으며, 강섬유보강 숏크리트의 변형 및 파괴 특성을 고려한 해석기법 개발의 필요성을 확인하였다.

Performance of Soil-Bentonite Cutoff Wall considering Defects and Formation of Bentonite Cake

  • Nguyen, The Bao;Lee, Chul-Ho;Lim, Jee-Hee;Jeoung, Jae-Hyeung;Choi, Hang-Seok
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.1264-1273
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    • 2010
  • Soil-bentonite cutoff walls are widely recognized to be the effective barrier for containment of wastes and groundwater. Bentonite cake is usually found remaining on the trench surface due to the use of bentonite slurry during the excavation for the cutoff wall construction. Defects also inevitably take place due to the inappropriate construction procedures or improperly mixed soil-bentonite backfill. The defects include insufficient keys and windows in the soilbentonite cutoff wall. In this study, the performance of the soil-bentonite cutoff wall is evaluated based on the flow rates through the wall. Three-dimensional numerical models were applied to simulate the groundwater flow through the soil-bentonite cutoff walls of typical geometries with consideration of the defects and bentonite cake. Results of the simulations showed that the bentonite cake has no effect in the insufficient key cases. In the keyed wall cases, the bentonite cake with very low hydraulic conductivity significantly impedes the flow of groundwater through the wall. The presence of the bentonite cake not only compromises the window defect but also renders the wall construction more effective in blocking the groundwater flow. These findings show the significance of the bentonite cake in a soil-bentonite cutoff wall construction.

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그라우팅 강성도에 따른 2-Arch 터널의 거동 (Behavior of 2-Arch Tunnel with Stiffness of Grouting)

  • 이종민;이상덕
    • 터널과지하공간
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    • 제20권4호
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    • pp.260-266
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    • 2010
  • 본 연구에서는 모형실험을 통한 2-Arch 터널의 거동과 주변지반의 거동으로부터 중앙부 Pilot 터널굴착 및 선행터널(우측터널)과 후행터널(좌측터널) 굴착에 따라 좌 우 터널 상호간에 미치는 영향을 분석하고자 하였으며, 보강영역의 상대강성비와 토피고에 따라 발생하는 원지반 이완영역 및 아칭효과에 의한 중앙필러 및 주변 지반의 하중전이 현상을 규명하고자 하였다. 이를 위하여 2-Arch 터널의 시공순서를 반영한 실험순서에 따라 모형실험을 수행하였으며, 보강영역의 강성 및 토피고를 변화시켜 이에 따른 2-Arch 터널의 변형 및 주변지반의 변위를 측정하였다.

고압분사주입공법으로 보강된 개량체의 특성 및 흙막이벽의 변형해석 (Mechanical Properties of the Ground Improved by High Pressure Jet-Grouting and Analysis of Deformation of Propped Retaining Walls)

  • 심태섭;주승완
    • 한국농공학회지
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    • 제42권6호
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    • pp.98-105
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    • 2000
  • Recently, the construction method of high pressure jet-grouting is in wide-use, for the purpose of structure foundation ground, reinforcing of ground behind propped retaining walls and cut-off in order to perform safe construction of underground excavation work. This study was performed a serious of tests of field permeability and unconfined compressive strength upon ground improved established on the ground behind propped retaining walls and examined proper jet mechanism by changing the construction parameter value of high pressure jet-grouting. In addition, we got the conclusion like the followings as a result of inspecting the condition of earth pressure distribution and deformation, using elasto-plastic method and FEM. 1. In that characteristics of strength of ground improved, with the same condition of construction parameter, unconfined compressive strength of sand gravel is shown bigger than that of silty sand by about 1.6 times and cut-off effect is shown to have effect of reducing the permeability of original ground by about 10$^{-2}$ ~10$^{-3}$ cm/s. 2. As a result of analysis of figures of horizontal displacing quantity of propped retaining walls materials regarding before and after High pressure jet- grouting through FEM, the reducing quantity of 0.1~0.3mm in maximum horizontal displacement is shown.

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Stability assessment of tunnel face in a layered soil using upper bound theorem of limit analysis

  • Khezri, Nima;Mohamad, Hisham;Fatahi, Behzad
    • Geomechanics and Engineering
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    • 제11권4호
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    • pp.471-492
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    • 2016
  • Underground tunnelling is one of the sustainable construction methods which can facilitate the increasing passenger transportation in the urban areas and benefit the community in the long term. Tunnelling in various ground conditions requires careful consideration of the stability factor. This paper investigates three dimensional stability of a shallow circular tunnel in a layered soil. Upper bound theorem of limit analysis was utilised to solve the tunnel face stability problem. A three dimensional kinematic admissible failure mechanism was improved to model a layered soil and limiting assumptions of the previous studies were resolved. The study includes calculation of the minimum support pressure acting on the face of the excavation in closed-face excavations. The effects of the characteristics of the layers on the minimum support pressure were examined. It was found that the ratio of the thickness of cover layers particularly when a weak layer is overlying a stronger layer, has the most significant influence on the minimum tunnel support pressure. Comparisons have been made with the results of the numerical modelling using FLAC3D software. Results of the current study were in a remarkable agreement with those of numerical modelling.

미고결 저토피 터널에 작용하는 토압에 관한 연구 (Tunnel Pressure acting on Shallow Tunnel in Unconsolidated Ground)

  • 이재호;아쿠타가와 신니치;김영수;문홍득
    • 터널과지하공간
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    • 제17권6호
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    • pp.453-463
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    • 2007
  • Terzaghi터널토압 이론은 shield 및 도심 NATM터널의 설계토압으로 현재까지도 사용되고 있다. 본 논문에서 지반의 변형거동과 한계상태를 가정한 Terzaghi 토압과의 상호 관계에 관한 조사를 위해 Terzaghi 터널토압이론, 2차원 실내 터널 모형 실험과 변형률 연화모델을 기본으로한 비선형 수치해석을 실시하였다. 굴착에 따른 터널 토압와 지반 변형거동의 폭넓은 이해와 그들의 상호작용에 대한 효율적인 활용은 경제적인 터널 지보설계와 안정한 시공을 이끌 수 있다.

초고층에서의 현장타설말뚝 재하시험방법 고찰 (The Study of Load Test Method for In-Site Casting Pile In High Rise Building.)

  • 김대학;홍영길;한성무;구웅회;박찬덕
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.385-392
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    • 2008
  • Modern city have had a lot of high-rise building in high standards and multi-level performance. Using of city space reach better stages by using integration. These skyscraper have increased working load on ground. that building is efficiently designed for that soil capacity is well applied. With material side, big size pile, high strength concrete and high strength steel is used for that getting enough lobby space and resisting load increased of high-rise building. limit load test and load transmitted test can make soil capacity optimized. By the way, method of measuring pile capacity is more advanced and bigger. pile type applied by high rise building have underground excavation space, also reflect regional soil property and have some fact reviewed. A lot of high rise building recently is built as land mark in Seoul, Busan and Incheon. about method of measuring capacity of foundation pile, example of construction field is compared and reviewed.

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