• 제목/요약/키워드: Long tunnel design

검색결과 177건 처리시간 0.021초

터널 진동현식 변형률 게이지의 신뢰성 시험 연구 (Investigation on the Credibility of the Vibrating Wire Strain Gauges used for the Tunnel Instrumentation)

  • 김학준;박찬
    • 지질공학
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    • 제18권2호
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    • pp.153-158
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    • 2008
  • 진동현식 변형률 게이지는 습기가 많은 터널에서의 장기적 안정성이 우수하여 국내외 터널 현장에서 널리 사용되고 있다. 국내 터널 현장의 진동현식 게이지는 외국 제품도 일부 사용 되고 있으나 국내 게이지에 비하여 고가이어서 주로 국내에서 제작된 게이지가 이용되고 있다. 국산 진동현식 변형률 게이지는 상당히 많은 업체에서 제작되고 있으나 게이지의 신뢰상에 대해서는 검증이 제대로 이루어지지 못하고 있는 실정이다. 본 연구에서는 실내시험을 통하여, 국내 터널계측에 널리 사용되고 있는 2.5인치 진동현식 변형률 게이지에 대한 신뢰성을 검증하였다.

Prediction of aerodynamic coefficients of streamlined bridge decks using artificial neural network based on CFD dataset

  • Severin Tinmitonde;Xuhui He;Lei Yan;Cunming Ma;Haizhu Xiao
    • Wind and Structures
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    • 제36권6호
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    • pp.423-434
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    • 2023
  • Aerodynamic force coefficients are generally obtained from traditional wind tunnel tests or computational fluid dynamics (CFD). Unfortunately, the techniques mentioned above can sometimes be cumbersome because of the cost involved, such as the computational cost and the use of heavy equipment, to name only two examples. This study proposed to build a deep neural network model to predict the aerodynamic force coefficients based on data collected from CFD simulations to overcome these drawbacks. Therefore, a series of CFD simulations were conducted using different geometric parameters to obtain the aerodynamic force coefficients, validated with wind tunnel tests. The results obtained from CFD simulations were used to create a dataset to train a multilayer perceptron artificial neural network (ANN) model. The models were obtained using three optimization algorithms: scaled conjugate gradient (SCG), Bayesian regularization (BR), and Levenberg-Marquardt algorithms (LM). Furthermore, the performance of each neural network was verified using two performance metrics, including the mean square error and the R-squared coefficient of determination. Finally, the ANN model proved to be highly accurate in predicting the force coefficients of similar bridge sections, thus circumventing the computational burden associated with CFD simulation and the cost of traditional wind tunnel tests.

Wind-induced dynamic response and its load estimation for structural frames of circular flat roofs with long spans

  • Uematsu, Yasushi;Yamada, Motohiko
    • Wind and Structures
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    • 제5권1호
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    • pp.49-60
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    • 2002
  • This paper describes a simple method for evaluating the design wind loads for the structural frames of circular flat roofs with long spans. The dynamic response of several roof models were numerically analyzed in the time domain as well as in the frequency domain by using wind pressure data obtained from a wind tunnel experiment. The instantaneous displacement and bending moment of the roof were computed, and the maximum load effects were evaluated. The results indicate that the wind-induced oscillation of the roof is generally dominated by the first mode and the gust effect factor approach can be applied to the evaluation of the maximum load effects. That is, the design wind load can be represented by the time-averaged wind pressure multiplied by the gust effect factor for the first mode. Based on the experimental results for the first modal force, an empirical formula for the gust effect factor is provided as a function of the geometric and structural parameters of the roof and the turbulence intensity of the approach flow. The equivalent design pressure coefficients, which reproduce the maximum load effects, are also discussed. A simplified model of the pressure coefficient distribution is presented.

광주월드컵 경기장 지붕면의 풍압특성에 관한 실험적 연구 (An Experimental Study on Characteristics of Wind Pressure on Long-Span Roof of the Kwangju World Cup Stadium)

  • 박연수;김윤석;박선준
    • 한국강구조학회 논문집
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    • 제12권5호통권48호
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    • pp.495-502
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    • 2000
  • 본 연구에서는 광주월드컵 경기장을 같은 형태의 지붕이 하나인 경우와 두 개인 경우로 구분하여 풍동실험을 수행하였으며 그 실험결과에 대해서 고찰하였다. 본 실험에서는 1/400의 축소모형을 이용하였다. 지붕이 1개가 설치되는 경우와 2개가 설치되는 경우에 대한 풍압측정결과 2개의 지붕면이 설치되면 단위면적당 풍하중이 1개의 지붕면의 경우에 비해 구조골조용 풍하중은 최대35%정도의 감소됨을 알 수 있었다. 이러한 결과는, 지붕면에 작용하는 풍하중은 높이에만 의존되어 결정되는 현행 풍하중 규준의 적용한계를 나타냄과 동시에 대형 구조물의 경우 풍동실험이 반드시 필요함을 나타내는 내는 일례라고 할 수 있다.

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공항하부 토사 병설 쉴드터널에서 대구경 강관추진에 의한 횡갱 설계/시공사례 연구 (Case study on design and construction for cross-connection tunnel using large steel pipe thrust method in soil twin shield tunnels underneath airport)

  • 안창윤;박두희
    • 한국터널지하공간학회 논문집
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    • 제23권5호
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    • pp.325-337
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    • 2021
  • 도로와 철도터널에서는 비상시 대피를 위한 시설이 필수적이며, 제연 및 화재 진압을 위한 설비와 승객의 피난 통로가 그것이다. 장대 병설터널에서는 횡갱을 배치하여 화재 발생 반대편 터널로 대피하도록 계획된다. 병설 쉴드터널에서는 횡갱의 시공을 위해 기 시공된 본선터널의 영구 구조물인 세그먼트 라이닝을 철거하여 원지반을 노출하여야 한다. 현대의 대부분의 쉴드TBM이 막장을 격벽으로 차단한 폐쇄형 쉴드TBM임을 감안할 때, 원지반이 노출되는 횡갱의 시공은 쉴드터널의 시공단계에서 위험도가 높은 과정 중 하나이다. 특히, 지하수위 아래의 토사 쉴드터널의 횡갱 시공에서는 세그먼트 철거 및 굴착 중 토사지반의 안정성 확보를 위한 차수 및 굴착공법에 대한 면밀한 검토가 요구된다. 본 사례 연구에서는 토사지반에서 대구경 강관추진을 활용한 횡갱 굴착 공법의 시공 중 유의사항을 소개하고 시공 후 계측결과를 분석하였다. 본 사례 연구에서 소개되는 횡갱 굴착공법은 그라우팅으로 보강된 토사지반에 대구경 강관 추진 후 내부 굴착하는 공법으로써, 두 가지 메커니즘에 의해 토사지반에서 굴착 중 막장의 안정성을 확보한다. 첫 번째는 대구경 강관을 추진하여 막장 전방 토사지반의 전주면을 강관에 의해 선 지보 한다. 두 번째는 대구경 강관 추진으로 내부로 압입된 토사의 Plugging 효과에 의해 막장 전면의 지지효과를 얻을 수 있다. 추진력에 의한 강관의 변형 및 강관의 관통 완료 후 응력발생 계측결과로부터 대구경 강관 추진에 의한 횡갱 굴착공법이 토사지반에서 충분한 시공성과 안정성을 확보함을 확인하였다. 본 사례 연구의 토사 쉴드터널의 횡갱 시공공법은 유사한 현장조건에서 널리 활용될 수 있을 것으로 판단된다.

고인성내화모르터(FR-ECC)를 사용한 장대터널 내화안전대책에 관한 연구 (A study on the fire resistance method using FR-ECC in long tunnel)

  • 김세종;김동준;권영진
    • 한국터널지하공간학회 논문집
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    • 제13권1호
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    • pp.9-18
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    • 2011
  • 최근 이동거리와 물류수송의 급격한 증가로 인해 거리의 단축과 지형의 한계를 극복하기위해 장대터널의 수요가 급격히 증대되고 있으며 이에 따라 터널내화재사고에 대한 우려가 함께 증가하고 있다. 특히 터널 화재 온도는 일반 화재 온도와 달리 초기에 급격히 증가하는 현상을 보이고 있다. 하지만 국내에서는 이에 대한 대책마련이 미흡하고 실제시공한 사례가 없으므로 일본의 히다터널에 사용된 고인성 내화모르터의 사용과 국내에서 개발한 신기술의 현장적용을 통해 시공한 사례와 함께 그에 따른 앞으로의 터널구조물의 내화 및 내구성에 대한 방안을 제시해 보았다.

The appropriate shape of the boundary transition section for a mountain-gorge terrain model in a wind tunnel test

  • Hu, Peng;Li, Yongle;Huang, Guoqing;Kang, Rui;Liao, Haili
    • Wind and Structures
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    • 제20권1호
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    • pp.15-36
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    • 2015
  • Characterization of wind flows over a complex terrain, especially mountain-gorge terrain (referred to as the very complex terrain with rolling mountains and deep narrow gorges), is an important issue for design and operation of long-span bridges constructed in this area. In both wind tunnel testing and numerical simulation, a transition section is often used to connect the wind tunnel floor or computational domain bottom and the boundary top of the terrain model in order to generate a smooth flow transition over the edge of the terrain model. Although the transition section plays an important role in simulation of wind field over complex terrain, an appropriate shape needs investigation. In this study, two principles for selecting an appropriate shape of boundary transition section were proposed, and a theoretical curve serving for the mountain-gorge terrain model was derived based on potential flow theory around a circular cylinder. Then a two-dimensional (2-D) simulation was used to compare the flow transition performance between the proposed curved transition section and the traditional ramp transition section in a wind tunnel. Furthermore, the wind velocity field induced by the curved transition section with an equivalent slope of $30^{\circ}$ was investigated in detail, and a parameter called the 'velocity stability factor' was defined; an analytical model for predicting the velocity stability factor was also proposed. The results show that the proposed curved transition section has a better flow transition performance compared with the traditional ramp transition section. The proposed analytical model can also adequately predict the velocity stability factor of the wind field.

Wind load parameters and performance of an integral steel platform scaffold system

  • Zhenyu Yang;Qiang Xie;Yue Li;Chang He
    • Wind and Structures
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    • 제36권4호
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    • pp.263-275
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    • 2023
  • As a new kind of construction facility for high rise buildings, the integral steel platform scaffold system (ISPS) consisting of the steel skeleton and suspended scaffold faces high wind during the construction procedure. The lattice structure type and existence of core tubes both make it difficult to estimate the wind load and calculate the wind-induced responses. In this study, an aeroelastic model with a geometry scale ratio of 1:25 based on the ISPS for Shanghai Tower, with the representative square profile, is manufactured and then tested in a wind tunnel. The first mode of the prototype ISPS is a torsional one with a frequency of only 0.68 Hz, and the model survives under extreme wind speed up to 50 m/s. The static wind load and wind vibration factors are derived based on the test result and supplementary finite element analysis, offering a reference for the following ISPS design. The spacer at the bottom of the suspended scaffold is suggested to be long enough to touch the core tube in the initial status to prevent the collision. Besides, aerodynamic wind loads and cross-wind loads are suggested to be included in the structural design of the ISPS.

철도차량별 표준 설계화재곡선 연구 (Study of Standard Design Fire Curve of Various Railcar)

  • 이덕희;박원희;정우성;김치훈
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 정기총회 및 추계학술대회 논문집
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    • pp.1426-1431
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    • 2011
  • A study on the standardization of design fire HRR(heat release rate) curve was conducted for various railcar from the fire simulation or the fire tests. These standard curves are listed on the tunnel fire safety manual which will be used for the QRA(quantitative risk analysis) process of the long railway tunnels. The design fire curve is based with four simple factor representing the key of fire curve characteristics. Flashover time, maximum HRR and burn out time are the key factors of the design fire curve. Specially total heat release is decided by the burnable material amount in the car.

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Wind-induced mechanical energy analyses for a super high-rise and long-span transmission tower-line system

  • Zhao, Shuang;Yan, Zhitao;Savory, Eric;Zhang, Bin
    • Wind and Structures
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    • 제34권2호
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    • pp.185-197
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    • 2022
  • This study aimed to analyze the wind-induced mechanical energy (WME) of a proposed super high-rise and long-span transmission tower-line system (SHLTTS), which, in 2021, is the tallest tower-line system with the longest span. Anew index - the WME, accounting for the wind-induced vibration behavior of the whole system rather than the local part, was first proposed. The occurrence of the maximum WME for a transmission tower, with or without conductors, under synoptic winds, was analyzed, and the corresponding formulae were derived based on stochastic vibration theory. Some calculation data, such as the drag coefficient, dynamic parameters, windshielding areas, mass, calculation point coordinates, mode shape and influence function, derived from wind tunnel testing on reducedscale models and finite element software were used in calculating the maximum WME of the transmission tower under three cases. Then, the influence of conductors, wind speed, gradient wind height and wind yaw angle on WME components and the energy transfer relationship between substructures (transmission tower and conductor) were analyzed. The study showed that the presence of conductors increases the WME of transmission towers and changes the proportion of the mean component (MC), background component (BC) and resonant component (RC) for WME; The RC of WME is more susceptible to the wind speed change. Affected by the gradient wind height, the WME components decrease. With the RC decreasing the fastest and the MC decreasing the slowest; The WME reaches the its maximum value at the wind yaw angle of 30°. Due to the influence of three factors, namely: the long span of the conductors, the gradient wind height and the complex geometrical profile, it is important that the tower-line coupling effect, the potential for fatigue damage and the most unfavorable wind yaw angle should be given particular attention in the wind-resistant design of SHLTTSs