• 제목/요약/키워드: Large cross section tunnel

검색결과 29건 처리시간 0.031초

지하환기소 대단면 터널 시공 사례 연구 (A Case Study on the Construction of Large Cross Section Tunnel for Underground Ventilation System)

  • 노승환;최성욱;노상림
    • 터널과지하공간
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    • 제27권4호
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    • pp.195-204
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    • 2017
  • 본 사례연구에서는 신림~봉천터널 지하환기소 대단면 터널의 시공 사례를 소개하였다. 환기갱(폭 7.8 m, 높이 6.6 m)에서 환기소(축류팬실, 폭 20.8 m, 높이 12.3 m)로 터널 단면이 확대되는 구간에 대해 안전성 및 시공성 등을 고려하여 점진적인 확대 굴착 방안 및 Q 시스템을 이용한 확폭 구간의 임시 보강 방안이 검토되었다. 확폭이 완료된 이후 대단면 터널은 현장의 암반조건을 확인하고, 전산해석을 이용한 터널의 안정성 검토 등을 통해 암반등급에 따라 굴진장을 일부 조정하고, 터널 상부 굴착을 분할 없이 전단면 굴착으로 변경하여 시공성을 향상시켰다. 본 사례연구에서 소개한 시공 사례가 향후 유사한 조건의 지하환기소 또는 4차로 도로 등의 대단면 터널의 설계 및 시공에 유용한 참고 자료가 될 수 있기를 기대한다.

Assessment of time-dependent behaviour of rocks on concrete lining in a large cross-section tunnel

  • Mirzaeiabdolyousefi, Majid;Nikkhah, Majid;Zare, Shokrollah
    • Geomechanics and Engineering
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    • 제29권1호
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    • pp.41-51
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    • 2022
  • Tunneling in rocks having the time-dependent behavior, causes some difficulties like tunnel convergence and, as a result, pressure on concrete lining; and so instability on this structure. In this paper the time-dependent behaviour of squeezing phenomenon in a large cross section tunnel was investigated as a case study: Alborz tunnel. Then, time-dependent behaviour of Alborz tunnel was evaluated using FLAC2D based on the finite difference numerical method. A Burger-creep viscoelastic model was used in numerical analysis. Using numerical analysis, the long-time effect of squeezing on lining stability was simulated.This study is done for primary lining (for 2 years) and permanent lining (for 100 years), under squeezing situations. The response of lining is discussed base on Thrust Force-Bending Moment and Thrust Force-Shear Force diagrams analysing. The results determined the importance of consideration of time-dependent behaviour of tunnel that structural forces in concrete lining will grow in consider with time pass and after 70 years can cause instability in creepy rock masses section of tunnel. To show the importance of time-dependent behavior consideration of rocks, elastic and Mohr-Coulomb models are evaluated at the end.

터널의 신 정보화 설계시공법과 극대단면 터널에의 적용 (New Observational Design and Construction Method in Tunnels and Its Application to Very Large Cross Section Tunnel)

  • 황재윤
    • 한국지반공학회논문집
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    • 제20권7호
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    • pp.5-14
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    • 2004
  • 최근 터널의 정보화 설계시공이 중요시 되어지고 있다. 암반구조의 복잡성으로 인해 사전에 예측 할 수 없었던 암반의 붕락이 발생하여, 붕락대책에 막대한 비용과 시간을 낭비하는 사례가 많다. 암반 불연속면의 복잡성을 사전 조사 단계에서 충분히 파악하거나 대책을 수립하는 것은 어렵다. 본 논문에서는 터널의 신 정보화 설계시공법을 제안하고, 현장에서 관찰한 불연속면 정보를 근거로 하여 극대단면 터널에 적용했다. 터널의 신 정보화 설계시공법을 위한 수치해석 프로그램은 범용성, 정밀성, 신속성, 편리한 사용성을 검토하여 새롭게 개발되었다. 극대단면 터널에서는 표준지보에 의해 지지할 수 없는 불안정 키블럭이 7개 존재하는 것이 판명되었다. 7개의 키블럭에 대해서는 굴착전에 추가 지보를 실시했다. 극대단면 터널에 있어서, 터널의 신 정보화 설계시공법을 위해서 새롭게 개발한 수치해석 프로그램을 사용하여 정확한 키블럭 추출이 가능한 것을 검증하였다. 사용하기 쉬운 사용자 인터페이스를 가지고 있는 본 컴퓨터 시뮬레이션 기법은 키블럭의 안정성 계산뿐만 아니라 추가보강대책공의 설계도 가능하다.

산악지형에서 효율적인 2-Arch 터널의 설계사례 (Practical 2-Arch Road Tunnel Design in Mountainous area)

  • 정경한;이주공;한성수;황용섭;김지성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 지반공학 공동 학술발표회
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    • pp.601-612
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    • 2005
  • In mountainous area, Two parallel tunnels have been usually recognized as a road tunnel which has benefits in aspects of cost and stability. However, Design and construction of 2-Arch road tunnel are growing recently due to environmental destruction, compensation of land and difficulty of route separation. As studies are mainly undergoing on only guaranteeing stability and developing a waterproofing-drainage system to avoid water leakage through comprehension for characteristics of 2-arch tunnel behaviors, there is a tendency to evaluate quantity of support by empirical method with a tunnel which has a complicated cross-section and lack of construction ability. In this study, therefore, we made a plan of tunnel cross-section which had shown good construction ability and developed the waterproofing-drainage system which is able to solve the water leakage problem fundamentally by analyzing precedented 2-arch tunnels and investigating their sites in and out of nation. We also determined fixed quantity of support by a large-scale model test and numerical analysis. We want to contribute to 2-arch tunnel design hereafter introducing design procedure and method applied here.

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복층터널 분기구 확폭구간 굴착에 따른 안정성 영향 (Effect of widening excavation in divergence section of a double-deck tunnel on its stability)

  • 나유성;김윤희;이강일;김용성;김범주
    • 한국터널지하공간학회 논문집
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    • 제22권4호
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    • pp.435-450
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    • 2020
  • 복층터널의 분기구간은 터널 형상이 모자 모양의 대단면 구간인 '분기 전 확폭구간'과 본선과 분기터널 간 이격이 생기는 '분기 후 구간'으로 나눌 수 있으며, 분기 전 확폭구간의 터널 단면이 분기 후 구간의 단면에 비해 매우 크기 때문에 이러한 차이에 따른 굴착 영향이 분기구의 전체적인 굴착 안정성 검토 시 고려되어야 한다. 본 연구에서는 암반에서 시공되는 NATM 방식의 2차로 대심도(40 m) 본선 복층터널에서 1차로 단층터널로 분기가 되는 조건을 대상으로 3차원 유한요소해석을 통해 분기 전 확폭구간 굴착(선행굴착) 시 굴착공법과 벤치길이 변화에 따라 선행굴착이 분기 후 구간의 굴착 안정성에 미치는 영향을 검토하였다. 그 결과, 굴착공법과 벤치길이 변화에 따른 차이는 상대적으로 작은 편이었으나, 2차원 수치해석에 의한 선행굴착을 고려하지 않은 경우와 강도응력비 비교를 통해 선행굴착이 분기 후 구간의 굴착 안정성에 영향을 미칠 정도로 큰 응력의 변화를 유발함을 확인하였다.

3차원 시추공 레이다 모델링 (Three-Dimensional Borehole Radar Modeling)

  • 예병주
    • 자원환경지질
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    • 제33권1호
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    • pp.41-50
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    • 2000
  • Geo-radar survey which has the advantage of high-resolution and relatively fast survey has been widely used for engineering and environmental problems. Three-dimensional effects have to be considered in the interpretation of geo-radar for high-resolution. However, there exists a trouble on the analysis of the three dimensional effects. To solve this problem an efficient three dimension numerical modeling algorithm is needed. Numerical radar modeling in three dimensional case requires large memory and long calculating time. In this paper, a finite difference method time domain solution to Maxwell's equations for simulating electromagnetic wave propagation in three dimensional media was developed to make economic algorithm which requires smaller memory and shorter calculating time. And in using boundary condition Liao absorption boundary. The numerical result of cross-hole radar survey for tunnel is compared with real data. The two results are well matched. To prove application to three dimensional analysis, the results with variation of tunnel's incident angle to survey cross-section and the result when the tunnel is parallel to the cross-section were examined. This algorithm is useful in various geo-radar survey and can give basic data to develop dat processing and inversion program.

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대단면 터널굴착에 있어서 굴착순서에 따른 수치해석적 안정성 검토 (A Numerical Study on Safety According to the Excavation Step for Large Cross Section Tunnel)

  • 정희선;윤지선
    • 한국터널지하공간학회 논문집
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    • 제7권4호
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    • pp.335-341
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    • 2005
  • 대단변 NATM터널에서 지반자체로 막장의 안정을 유지하기 위해 분할굴착공법을 사용한다. 분할굴착을 해야 한다면 더 나은 응력 상태를 유지할 수 있는 분할굴착공법을 강구해야할 것이다. 따라서 본 연구에서는 터널의 단면분할 굴착공법 중 CD굴착 (중벽분할굴착)공법에서 굴착순서에 따른 응력분포를 수치해석적인 방법을 이용하여 검토하고, 막장주변의 응력집중을 최소로 하는 최적의 막장 이격거리와 굴착순서를 도출하였다. 해석에 사용한 프로그램은 국내에서 상용화되고 있는 3차원 연속체 해석 프로그램인 FLAC-3D Ver 2.1을 사용하였고, 암반등급 3과 5에 대해 막장거리 2m, 4m, 6m, ${\cdots}$, 20m, 40m를 적용하여 안정성 검토를 행하였다.

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Ray-Launching 기법을 이용한 2.6 GHz 대역의 터널 내 경로손실 특성 분석 (Path Loss Characterization in Tunnel Using Ray Launching Method at 2.6 GHz)

  • 김도윤;조한신;육종관;박한규
    • 한국전자파학회:학술대회논문집
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    • 한국전자파학회 2003년도 종합학술발표회 논문집 Vol.13 No.1
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    • pp.33-37
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    • 2003
  • This paper presents the characteristics of large-scale fading in a tunnel environment. The Ray-Launching Method has been used to analyze the characteristics of the tunnel. For a curved tunnel, The concept of RDN (Ray Density Normalization) is introduced in order to obtain more accurate results. For our purposes, the structure of tunnel is assumed to be either a straight or curved tunnel having rectangular cross-section. A large scale fading has been presented shown in several tunnel cases.

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Effects of frequency ratio on bridge aerodynamics determined by free-decay sectional model tests

  • Qin, X.R.;Kwok, K.C.S.;Fok, C.H.;Hitchcock, P.A.
    • Wind and Structures
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    • 제12권5호
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    • pp.413-424
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    • 2009
  • A series of wind tunnel free-decay sectional model dynamic tests were conducted to examine the effects of torsional-to-vertical natural frequency ratio of 2DOF bridge dynamic systems on the aerodynamic and dynamic properties of bridge decks. The natural frequency ratios tested were around 2.2:1 and 1.2:1 respectively, with the fundamental vertical natural frequency of the system held constant for all the tests. Three 2.9 m long twin-deck bridge sectional models, with a zero, 16% (intermediate gap) and 35% (large gap) gap-to-width ratio, respectively, were tested to determine whether the effects of frequency ratio are dependent on bridge deck cross-section shapes. The results of wind tunnel tests suggest that for the model with a zero gap-width, a model to approximate a thin flat plate, the flutter derivatives, and consequently the aerodynamic forces, are relatively independent of the torsional-to-vertical frequency ratio for a relatively large range of reduced wind velocities, while for the models with an intermediate gap-width (around 16%) and a large gap-width (around 35%), some of the flutter derivatives, and therefore the aerodynamic forces, are evidently dependent on the frequency ratio for most of the tested reduced velocities. A comparison of the modal damping ratios also suggests that the torsional damping ratio is much more sensitive to the frequency ratio, especially for the two models with nonzero gap (16% and 35% gap-width). The test results clearly show that the effects of the frequency ratio on the flutter derivatives and the aerodynamic forces were dependent on the aerodynamic cross-section shape of the bridge deck.

전산유체역학 해석에 의한 교량 단면의 공력 특성값 추정 (Prediction of Aerodynamic Coefficients of Bridges Using Computational Fluid Dynamics)

  • 홍영길
    • 한국안전학회지
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    • 제28권1호
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    • pp.57-62
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    • 2013
  • Aerodynamic characteristics of cross section shape is an important parameter for the wind response and structural stability of long span bridges. Numerical simulation methods have been introduced to estimate the aerodynamic characteristics for more detailed flow analysis and cost saving in place of existing wind tunnel experiment. In this study, the computational fluid dynamics(CFD) simulation and large eddy simulation( LES) technique were used to estimate lift, drag and moment coefficients of four cross sections. The Strouhal numbers were also determined by the fast Fourier transform of time series of the lift coefficient. The values from simulations and references were in a good agreement with average difference of 16.7% in coefficients and 8.5% in the Strouhal numbers. The success of the simulations is expected to attribute to the practical use of numerical estimation in construction engineering and wind load analysis.