• 제목/요약/키워드: Metro tunnel

검색결과 73건 처리시간 0.019초

대심도 도심지 터널시공에 의한 기존 지하철 터널 안전영향 평가 (Safety Effect Evaluation of Existing Metro Tunnel by Deep Urban Tunnelling)

  • 한상민;이동혁;이승호
    • 한국지반공학회논문집
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    • 제37권9호
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    • pp.37-50
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    • 2021
  • 최근 도심지구간에서 지하공간을 활용한 도시 기반시설 구축으로 인하여 시설물 상호 간의 인접한 근접 시공이 많이 이루어지고 있으며, 근접시공으로 인한 기존 시설물의 안정성과 관련된 민원이 상당한 이슈가 되고 있다. 본 연구에서는 대심도 도심지 구간에 신설되는 도시철도 터널의 근접시공으로 인한 기존 지하철의 터널구조물의 거동특성을 파악하기 위해 동북도시철도 터널이 계획된 노선 상부의 지하철 6호선 터널구조물을 대상으로 연구를 수행하였다. 기존 지하철 터널구조물의 안전영역 평가 및 굴착방법에 대한 개략적인 검토와 수치해석을 통한 상세검토를 수행하였으며, 건물 손상도 평가, 궤도틀림 및 구조물 안정성 검토결과 근접시공에 따른 지하철 터널 구조물 및 주변 건물의 안정성은 확보되는 것으로 평가되었다. 본 연구는 대심도 도심지 터널 건설에 따른 기존 터널 구조물 및 주변 건물의 안정성에 미치는 영향을 평가할 수 있는 실용적인 참고 자료뿐만 아니라 터널 지하안전영향평가에 대한 실무 적용사례로 활용될 수 있을 것으로 사료된다.

Channel modeling based on multilayer artificial neural network in metro tunnel environments

  • Jingyuan Qian;Asad Saleem;Guoxin Zheng
    • ETRI Journal
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    • 제45권4호
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    • pp.557-569
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    • 2023
  • Traditional deterministic channel modeling is accurate in prediction, but due to its complexity, improving computational efficiency remains a challenge. In an alternative approach, we investigated a multilayer artificial neural network (ANN) to predict large-scale and small-scale channel characteristics in metro tunnels. Simulated high-precision training datasets were obtained by combining measurement campaign with a ray tracing (RT) method in a metro tunnel. Performance on the training data was used to determine the number of hidden layers and neurons of the multilayer ANN. The proposed multilayer ANN performed efficiently (10 s for training; 0.19 ms for prediction), and accurately, with better approximation of the RT data than the single-layer ANN. The root mean square errors (RMSE) of path loss (2.82 dB), root mean square delay spread (0.61 ns), azimuth angle spread (3.06°), and elevation angle spread (1.22°) were impressive. These results demonstrate the superior computing efficiency and model complexity of ANNs.

Effects of parallel undercrossing shield tunnels on river embankment: Field monitoring and numerical analysis

  • Li'ang Chen;Lingwei Lu;Zhiyang Tang;Shixuan Yi;Qingkai Wang;Zhibo Chen
    • Geomechanics and Engineering
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    • 제35권1호
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    • pp.29-39
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    • 2023
  • As the intensity of urban underground space development increases, more and more tunnels are planned and constructed, and sometimes it is inevitable to encounter situations where tunnels have to underpass the river embankments. Most previous studies involved tunnels passing river embankments perpendicularly or with large intersection angle. In this study, a project case where two EPB shield tunnels with 8.82 m diameter run parallelly underneath a river embankment was reported. The parallel length is 380 m and tunnel were mainly buried in the moderate / slightly weathered clastic rock layer. The field monitoring result was presented and discussed. Three-dimensional back-analysis were then carried out to gain a better understanding the interaction mechanisms between shield tunnel and embankment and further to predict the ultimate settlement of embankment due to twin-tunnel excavation. Parametrical studies considering effect of tunnel face pressure, tail grouting pressure and volume loss were also conducted. The measured embankment settlement after the single tunnel excavation was 4.53 mm ~ 7.43 mm. Neither new crack on the pavement or cavity under the roadbed was observed. It is found that the more degree of weathering of the rock around the tunnel, the greater the embankment settlement and wider the settlement trough. Besides, the latter tunnel excavation might cause larger deformation than the former tunnel excavation if the mobilized plastic zone overlapped. With given geometry and stratigraphic condition in this study, the safety or serviceability of the river embankment would hardly be affected since the ultimate settlement of the embankment after the twin-tunnel excavation is within the allowable limit. Reasonable tunnel face pressure and tail grouting pressure can to some extent suppress the settlement of the embankment. The recommended tunnel face pressure and tail grouting pressure are 300 kPa and 550 kPa in this study, respectively. However, the volume loss plays the crucial role in the tunnel-embankment interaction. Controlling and compensating the tunneling induced volume loss is the most effective measure for river embankment protection. Additionally, reinforcing the embankment with cement mixing pile in advance is an alternative option in case the predicted settlement exceeds allowable limit.

지하철 터널 유지관리 계측센서의 총 손망실율 산정 연구 (A study on estimation of the total loss and damage ratio of maintenance monitoring sensor of subway tunnel)

  • 우종태
    • 한국터널지하공간학회 논문집
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    • 제15권1호
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    • pp.25-31
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    • 2013
  • 본 논문은 지하철 터널 유지관리 계측센서의 총 손망실율을 산정하기 위해 국내와 국외의 지하철 터널구조물에 설치되어 운영 중에 있는 유지관리 계측센서의 손망실 현황을 조사하고 분석을 실시하였다. 지하철 터널 유지관리 계측센서 설치 후 5~6년 경과된 시점을 기준하여 총 손망실율은 서울지하철5,6,7호선에서 14.2%, 서울지하철9호선1단계구간에서 14.8%, 영국의 Channel tunnel에서 13.9%로 모두 15%에 근접하게 나타났다. 따라서 지하철 터널 유지관리 계측센서의 총 손망실율은 잠정적으로 15%로 설정하여 설계에 반영하는 것이 타당한 것으로 판단되며, 향후 장기간의 경과년수에 따른 계측항목별 손망실율 연구가 필요할 것으로 판단된다.

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.

Dynamic response and waterproof property of tunnel segmental lining subjected to earthquake action

  • Yan, Qixiang;Bao, Rui;Chen, Hang;Li, Binjia;Chen, Wenyu;Dai, Yongwen;Zhou, Hongyuan
    • Earthquakes and Structures
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    • 제17권4호
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    • pp.411-424
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    • 2019
  • In this study, a numerical model of a shield tunnel with an assembled segmental lining was built. The seismic response of the segmental lining of the section of the shield tunnel in Line 1 of the Chengdu Metro is analyzed as it passes through the interface of sand-cobble and mudstone layers. To do so, the node-stress seismic-motion input method was used to input the seismic motion measured during the 2008 Wenchuan earthquake, and the joint openings and dislocations associated with the earthquake action were obtained. With reference to the Ethylene-Propylene-Diene Monomer (EPDM) sealing gaskets used in the shield tunnels in the Chengdu Metro, numerical simulation was applied to analyze the contact pressure along the seepage paths and the waterproof property under different joint openings and dislocations. A laboratory test on the elastic sealing gasket was also conducted to study its waterproof property. The test results accord well with the numerical results and the occurrence of water seepage in the section of the shield tunnel in Line 1 of the Chengdu Metro during the 2008 Wenchuan earthquake was verified. These research results demonstrate the deformation of segmental joint under earthquake, also demonstrate the relationship between segmental joint deformation and waterproof property.

A long-term tunnel settlement prediction model based on BO-GPBE with SHM data

  • Yang Ding;Yu-Jun Wei;Pei-Sen Xi;Peng-Peng Ang;Zhen Han
    • Smart Structures and Systems
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    • 제33권1호
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    • pp.17-26
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    • 2024
  • The new metro crossing the existing metro will cause the settlement or floating of the existing structures, which will have safety problems for the operation of the existing metro and the construction of the new metro. Therefore, it is necessary to monitor and predict the settlement of the existing metro caused by the construction of the new metro in real time. Considering the complexity and uncertainty of metro settlement, a Gaussian Prior Bayesian Emulator (GPBE) probability prediction model based on Bayesian optimization (BO) is proposed, that is, BO-GPBE. Firstly, the settlement monitoring data are analyzed to get the influence of the new metro on the settlement of the existing metro. Then, five different acquisition functions, that is, expected improvement (EI), expected improvement per second (EIPS), expected improvement per second plus (EIPSP), lower confidence bound (LCB), probability of improvement (PI) are selected to construct BO model, and then BO-GPBE model is established. Finally, three years settlement monitoring data were collected by structural health monitoring (SHM) system installed on Nanjing Metro Line 10 are employed to demonstrate the effectiveness of BO-GPBE for forecasting the settlement.

Seismic responses of a metro tunnel in a ground fissure site

  • Liu, Nina;Huang, Qiang-Bing;Fan, Wen;Ma, Yu-Jie;Peng, Jian-Bing
    • Geomechanics and Engineering
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    • 제15권2호
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    • pp.775-781
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    • 2018
  • Shake table tests were conducted on scaled tunnel model to investigate the mechanism and effect of seismic loadings on horseshoe scaled tunnel model in ground fissure site. Key technical details of the experimental test were set up, including similarity relations, boundary conditions, sensor layout, modelling methods were presented. Synthetic waves and El Centro waves were adopted as the input earthquake waves. Results measured from hanging wall and foot wall were compared and analyzed. It is found that the seismic loadings increased the subsidence of hanging wall and lead to the appearance and propagation of cracks. The values of acceleration, earth pressure and strain were greater in the hanging wall than those in the foot wall. The tunnel exhibited the greatest earth pressure on right and left arches, however, the earth pressure on the crown of arch is the second largest and the inverted arch has the least earth pressure in the same tunnel section. Therefore, the effect of the hanging wall on the seismic performance of metro tunnel in earth fissure ground should be considered in the seismic design.

지하역사 축소모델을 이용한 연기확산에 대한 실험적 연구 (An Experimental Study on Smoke Spread Using a Reduced-scale Subway Building Model)

  • 김명배;최병일
    • 한국화재소방학회논문지
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    • 제22권2호
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    • pp.49-56
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    • 2008
  • 대구 지하철 화재가 발생한 중앙로 역사를 1/20 축소모델로 제작하여 연기확산 실험을 수행하였다. 지하역사의 양쪽으로 연결된 터널을 모델 실험에서도 구현해야 하지만 실험실 공간의 제약으로 인해 짧은 길이의 덕트에 유동저항을 줄 수 있는 메쉬를 부착하여 터널을 대신하였다. 방화로 인해 좌석에서 화재가 발생하였기 때문에 화재 시나리오는 좌석의 가연물 특성을 고려하여 선정하였고 가시화 장치와 온도 측정으로 역사로의 연기 전파 시간을 측정하였다. 현재 지하역사 화재시 보편적 개념으로 확립되어있는 급기형태의 제연 방식이 연기확산을 촉진하는 것을 실험적으로 확인하였다. 화재 환기가 없을 때 지하 3층 승강장에서의 화재발생으로부터 지하역사 전체에 연기가 확산되는 데에는 약 10분의 시간이 필요하였다.

광역급행철도 터널에 고속 R-bar 적용에 관한 연구 (Study for Application of High Speed R-bar System in Metro Express Railway Tunnel)

  • 안영훈;송진호;김시구
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.409-412
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    • 2011
  • Maximum speed of the train could not exceed over 160km/h with R-bar system in the underground type tunnel structure. By the research to overcome this speed limit, maximum speed has reached up to 200~250km/h recently by new R-bar system. It is under discussion to construct Metro Express Line between Gyonggido and Seoul which requires maximum speed 180km/h~230km/h. New R-bar is an optimal system to achieve the speed improvement in this line. This study shows application of the high speed R-bar system in the underground tunnel section.

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