• 제목/요약/키워드: three dimensional excavation

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지하처분연구시설에 대한 3차원 터널 안정성 해석 (Three-dimensional Stability Analysis for an Underground Disposal Research Tunnel)

  • 권상기;조원진
    • 터널과지하공간
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    • 제14권3호
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    • pp.188-202
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    • 2004
  • 고준위폐기물의 처분개념 실증을 위해 원자력연구소부지 내에 지하연구시설을 건설하는 경우, 지표면지형의 변화, 두터운 풍화대의 존재가 예상된다. 본 연구에서는 부지 특성과 터널의 경사 및 터별의 크기에 따른 영향 분석과 함께 수백 m의 터널을 단계적으로 굴착하는데 따른 영향을 FLAC3D를 이용한 3차원 구조해석을 통해 분석하였다. 해석결과 굴착을 단계적으로 실시하는데 따르는 응력이나 변위분포에는 차이가 없는 것으로 나타났으며 이는 지하연구시설의 부근에서는 응력재분포에 의한 소성영역의 발생은 없기 때문이다. 최대 응력으은 5 ㎫로 압축응력이 작용할 것으로 예상된다. 최대응력은 터별의 끝 부분에서 20 m 전방으로 터별의 벽면에서 발생할 것으로 예상되며 터널 경사각이나 풍화대의 크기, 터널의 크기변화에 따른 터널에서의 응력과 변위분포 변화는 거의 없는 것으로 나타났다. 진입터널과 연구모듈의 교차지점에 대한 모델링 결과 응력비 K가 3인 경우 구조적으로 가장 취약한 지점에서의 안전계수가 3이상으로 나타난다. 본 연구를 통해 원자력연구소 내 예상 부지에 소규모 지하연구시설을 구조적으로 안전하게 건설하는 것이 가능함을 보일 수 있었다.

Study on bearing characteristic of rock mass with different structures: Physical modeling

  • Zhao, Zhenlong;Jing, Hongwen;Shi, Xinshuai;Yang, Lijun;Yin, Qian;Gao, Yuan
    • Geomechanics and Engineering
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    • 제25권3호
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    • pp.179-194
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    • 2021
  • In this paper, to study the stability of surrounding rock during roadway excavation in different rock mass structures, the physical model test for roadway excavation process in three types of intact rock mass, layered rock mass and massive rock mass were carried out by using the self-developed two-dimensional simulation testing system of complex underground engineering. Firstly, based on the engineering background of a deep mine in eastern China, the similar materials of the most appropriate ratio in line with the similarity theory were tested, compared and determined. Then, the physical models of four different schemes with 1000 mm (height) × 1000 mm (length) × 250 mm (width) were constructed. Finally, the roadway excavation was carried out after applying boundary conditions to the physical model by the simulation testing system. The results indicate that the supporting effect of rockbolts has a great influence on the shallow surrounding rock, and the rock mass structure can affect the overall stability of the surrounding rock. Furthermore, the failure mechanism and bearing capacity of surrounding rock were further discussed from the comparison of stress evolution characteristics, distribution of stress arch, and failure modes in different schemes.

Analysis of stability control and the adapted ways for building tunnel anchors and a down-passing tunnel

  • Xiaohan Zhou;Xinrong Liu;Yu Xiao;Ninghui Liang;Yangyang Yang;Yafeng Han;Zhongping Yang
    • Geomechanics and Engineering
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    • 제35권4호
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    • pp.395-409
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    • 2023
  • Long-span suspension bridges have tunnel anchor systems to maintain stable cables. More investigations are required to determine how closely tunnel excavation beneath the tunnel anchor impacts the stability of the tunnel anchor. In order to investigate the impact of the adjacent tunnel's excavation on the stability of the tunnel anchor, a large-span suspension bridge tunnel anchor is utilised as an example in a three-dimensional numerical simulation approach. In order to explore the deformation control mechanism, orthogonal tests are employed to pinpoint the major impacting elements. The construction of an advanced pipe shed, strengthening the primary support. Moreover, according to the findings the grouting reinforcement of the surrounding rock, have a significant control effect on the settlement of the tunnel vault and plug body. However, reducing the lag distance of the secondary lining does not have such big influence. The greatest way to control tunnel vault settling is to use the grout reinforcement, which increases the bearing capacity and strength of the surrounding rock. This greatly minimizes the size of the tunnel excavation disturbance area. Advanced pipe shed can not only increase the surrounding rock's bearing capacity at the pipe shed, but can also prevent the tunnel vault from connecting with the disturbance area at the bottom of the anchorage tunnel, reduce the range of shear failure area outside the anchorage tunnel, and have the best impact on the plug body's settlement control.

c-$\phi$ 지반에서의 아칭현상을 고려한 원형수직터널 토압 : II. 실내 모형실험 (Earth pressures acting on vertical circular shafts considering arching effects in c-$\phi$ soils : II. Lab. Model Tests)

  • 김도훈;차민혁;이대수;김경렬;이인모
    • 한국터널지하공간학회 논문집
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    • 제12권2호
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    • pp.129-144
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    • 2010
  • 원형수직터널에 작용하는 토압은 아칭효과로 인해 2차원 일반 흙막이벽에 작용하는 토압보다 작으므로 원형수직터널 설계 시 벽체에 작용하는 실질적인 토압의 예측이 필요하다. 본 논문은 두 개의 연속된 논문(Companion papers)의 두번째로서 원형수직터널 설계 시 건조한 사질토뿐만 아니라 c-$\phi$ 지반과 다층지반에서 적용 가능하도록 새롭게 제안된 토압식(김도훈 등, 2009)을 증명하기 위해 대형 모형실험을 수행하였다. 고안된 모형실험 장비는 단계별 굴착이 가능하도록 제작 벽체의 반경을 변화시켜가며 실험을 수행하였다. 또한 강사 방법으로 지반을 조성하기 전 건조한 시료에 물을 첨가하고 불포화사질토를 형성시켜 겉보기 점착력을 발현시킴으로써 c-$\phi$ 지반과 다층지반에서 실험을 진행하였다. 실험 결과로서, 단계별 굴착을 모사하였을 때, 아칭효과에 의해 굴착된 지반에서 굴착되지 않은 지반으로 하중이 전이가 일어나는 확인할 수 있었다. 또한, 동시에 굴착했을 때의 토압은 예측한 값에 비해 상당히 작게 나타났지만, 단계별로 굴착했을 때의 최종 토압은 동시 굴착 시의 토압에 비해 크게 나타나며 새롭게 제안된 토압식과 잘 일치하였고 c-$\phi$ 지반과 다층지반에서 수행한 실험의 결과도 겉보기 점착력의 효과로 인해 토압의 감소를 보이며 이론적인 값과 잘 일치하는 것으로 나타났다.

The responses of battered pile to tunnelling at different depths relative to the pile length

  • Mukhtiar Ali Soomro;Naeem Mangi;Dildar Ali Mangnejo;Zongyu Zhang
    • Geomechanics and Engineering
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    • 제35권6호
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    • pp.603-615
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    • 2023
  • Population growth and urbanization prompted engineers to propose more sophisticated and efficient transportation methods, such as underground transit systems. However, due to limited urban space, it is necessary to construct these tunnels in close proximity to existing infrastructure like high-rise buildings and bridges. Battered piles have been widely used for their higher stiffness and bearing capacity compared to vertical piles, making them effective in resisting lateral loads from winds, soil pressures, and impacts. Considerable prior research has been concerned with understanding the vertical pile response to tunnel excavation. However, the three-dimensional effects of tunnelling on adjacent battered piled foundations are still not investigated. This study investigates the response of a single battered pile to tunnelling at three critical depths along the pile: near the pile shaft (S), next to the pile (T), and below the pile toe (B). An advanced hypoplastic model capable of capturing small strain stiffness is used to simulate clay behaviour. The computed results reveal that settlement and load transfer mechanisms along the battered pile, resulting from tunnelling, depend significantly on the tunnel's location relative the length of the pile. The largest settlement of the battered pile occurs in the case of T. Conversely, the greatest pile head deflection is caused by tunnelling near the pile shaft. The battered pile experiences "dragload" due to negative skin friction mobilization resulting from tunnel excavation in the case of S. The battered pile is susceptible to induced bending moments when tunnelling occurs near the pile shaft S whereas the magnitude of induced bending moment is minimal in the case of B.

원심모형실험에 의한 수직구 아칭토압 모사 (A Simulation of Arching Earth Pressure Exerted on Vertical Shafts through Centrifuge Tests)

  • 이대수;김경열;홍성연;김유석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.1073-1080
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    • 2010
  • In this paper, the centrifuge model tests were conducted for the sake of measuring three dimensional arching earth pressure while two step excavation of the vertical shaft. The results of the centrifuge model tests were compared to newly suggested arching earth pressure equation proposed by Kim et al(2009) and two dimension earth pressure(Rankine). As the results, Measured arching earth pressure revealed about 35 percentages of two dimension earth pressure(Rankine) and almost same as that of newly suggested arching earth pressure equation.

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암반의 불연속면 배열을 측량하는 원격 영상측량기 (A Survey Tool for the Measurements of the Rock Parting Surfaces)

  • 황상기;임유진
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 가을 학술발표회 논문집
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    • pp.697-704
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    • 2000
  • This study presents methodology and tools for remote measurement of the orientation of the rock parting surfaces. Two close circuit video camera capture the pictures of a rock excavation surface while a laser beam scans the surface. Positions of the laser beams in the two digital images are recognized by image processing. Using the stereoscopic concept, three dimensional coordinations of the rock surface and the orientation of the rock parting planes are calculated. Point, cross and line type laser beams are tested for better image processing results and measurement accuracy of the coordinates. According to a simple accuracy test, cross beam show better results than the point beam. However, line beam show more promising results for the measurement of the rock parting surfaces.

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3차원 유한요소해석에 의한 Umbrella Arch 공법으로 보강된 터널의 거동 해석 (Three-Dimensional Finite Element Analysis on Tunnel Behaivor Reinforced by Umbrella Arch Method)

  • 유충식;신승우
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1995년도 가을 학술발표회 논문집
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    • pp.211-216
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    • 1995
  • In recent years, Natm has been successfully applied to difficult ground conditions with the use of soil-perservention methods which promote face stability and restrict excessive ground movement. When the tunnle excavation od made through difficult ground like highly weathered rock, the umbrella arch method is often adopted which pre-reinforceas tunnel crown periphery using a stiff shell-shaped structure. The umbrella arch method was originally developed in Itali, and has recently been confirmed its effectiveness in Korea as well. However, no in depth study on the umbrella arch method has been conducted ans as a result no rational analysis/design method is available at present. Therefore this study was undertaken with the aim of identifying the basic reinforcing mechanism and satablishing both qualitative and quantiative relationships between various design parameters and ground movements.

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가압식 쏘일네일링의 지반 굴착면 보강효과 (Effects of Multi-Pressurised Soil Nails in the Underground Excavation)

  • 조재연;이철주;정상섬
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.1614-1622
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    • 2008
  • A series of three-dimensional numerical modelling have been conducted to clarify the behaviour of multi-pressurised soil nails with high strength steel pipes. In this study, the soil non-linearity, the soil-nail interaction and staged construction are considered. It has been found that pressurised soil nails can reduce lateral ground movement by 14-21% compared to general soil nails with very low pressure. In addition, ground settlement was reduced when using multi-pressurised soil nails. The pressurised soil nail may result in an increase in the surcharge loading on the ground surface.

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터널 현장 계측결과를 통한 강관보강 그라우팅의 거동 메커니즘 (Mechanism of steel pipe reinforcement grouting based on tunnel field measurement results)

  • 신현강;정혁상;이용주;김낙영;고성일
    • 한국터널지하공간학회 논문집
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    • 제23권3호
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    • pp.133-149
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    • 2021
  • 본 논문은 터널 굴착 시 굴착면의 안정성 확보를 위해 매우 활발히 적용되고 있는 강관보강 그라우팅의 거동 메커니즘을 실제 현장의 계측결과를 이용하여 연구한 결과를 수록하였다. 계측방법은 12 m의 강관에 형상변위계와 변형률계를 부착하여 실제 터널면에 보강을 시행한 다음 강관의 변형과 응력의 계측값을 분석하여 거동 특성을 파악하였으며, 6 m마다 강관이 중첩되는 것을 고려하여 7 m 굴착 시까지의 계측결과를 활용하였다. 또한, 허용응력이 다른 강관(SGT275와 SGT550)을 적용하여 강도차이에 따른 강관 보강재의 거동 특성도 확인하였다. 굴착면에 강관을 설치하고 최초 1 m 굴착 후 다음 굴착이 진행되기 전까지 7시간 동안의 강관 거동을 분석한 결과 굴착 이완하중에 따른 아칭효과로 응력이 재분배되는 거동 특성을 확인할 수 있었다. 1 m씩 굴착됨에 따라 3차원적인 이완하중의 응력분배로 인해 굴착된 구간은 4~6 m 굴착 시 가장 큰 변형을 나타내었다. 이러한 계측을 통해 굴착 전방지반의 설치된 강관에도 변형과 응력이 발생되는 것을 확인할 수 있었다. 또한, SGT275강관(항복강도 275 MPa)과 SGT550강관(항복강도 550 MPa)의 거동을 비교한 결과 변형량의 차이는 최대 18배, 응력은 최대 12배 정도 차이가 발생되어 강도가 큰 강관일수록 이완하중에 대응이 유리한 것으로 나타났다. 본 논문에서는 실제 터널 굴착에 따른 강관의 계측결과를 이용하여 이완하중의 아칭효과에 대응하는 강관 보강 그라우팅의 거동 메커니즘을 확인할 수 있었고, 그 결과를 본 논문에 수록하였다.