• 제목/요약/키워드: main span of bridge

검색결과 219건 처리시간 0.027초

목포 연육교 건설에 따른 선박 통항 안전성 평가 (Vessel Traffic Safety Assessment for the Construction of the Mokpo Bridge)

  • 양찬수;공인영;이창민
    • 한국항해항만학회지
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    • 제28권8호
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    • pp.735-743
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    • 2004
  • 현재 목포 북항과 고하도를 연결하는 목포 연육교의 건설이 추진 중에 있으며, 이 교량은 2009년 말에 완공될 예정이다. 항행수역에 건설되는 교량에 대해서는 선박 운항 측면에서의 안전성 평가가 필수적이지만, 아직 이에 대한 구체적인 지침이 마련되어 있지 않은 실정이다. 본 연구에서는, 목포 연육교 평면 배치 계획에 대한 선박 운항 측면에서의 평가 절차를 소개하고, 교량의 계획 단계에서부터 고려되어야 하는 사항들에 대해 검토하였다. 교량의 주경간 등 전반적인 배치 계획에 대한 평가를 위해, 대상 해역에 교량이 건설된 상황을 설정하여 실시간 시뮬레이션(real time simulation) 및 배속 시뮬레이션(fast time simulation) 등의 운항 시뮬레이션을 실시하였다. 이로부터, 선박과 교각과의 충돌위험도를 추정하기 위해, 항로상에서의 선박의 항행 궤적 분포는 정규분포를 따른다는 가정 하에 통계적 분석을 수행하였다.

응답스펙트럼에 의한 트러스 구조물의 내진해석 (Seismic Analysis of 3D-Truss by Response Spectrum)

  • 안주옥;이승재
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1999년도 봄 학술발표회 논문집
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    • pp.159-168
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    • 1999
  • In seismic analysis, there are two main ways - uniform load method and dynamic analysis, dynamic analysis can be divided into response spectrum analysis and time history analysis. In case of which get the complexion of the vibration with 3-axis of coordinate direction in each mode of free vibration mode happened owing to complication of the shape, 3-dimensional dynamic analysis is recommended to perform as multi-mode spectral analysis in standard specification for highway bridge. The purpose of this study is to understand the dynamic behavior by performing multi-mode seismic analysis according to responses analysis and time history anal)'sis in using record of earthquake. In accordance with the criterion of seismic design as defined in standard specification for highway bridge by using modified records of the El Centre and Coyote Lake earthquake, response spectrum was constructed by using the tripartite logarithmic plot. The 3-span continuous space truss bridge was selected as model of numerical analysis. As the result performed time history analysis and analysis of response spectrum for the model of numerical analysis, the result of time history analysis was slightly larger than that of response spectrum analysis. This coincide with the tendency of the result came from the analysis when using a jagged response spectrum analysis, This coincide with the tendency of the result came from the analysis when using a jagged response spectrum for a single excitation. In the Process of performing these two analysis. response spectrum analysis is more effective than time history analysis in saving times in analyzing data.

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Structural health monitoring of a cable-stayed bridge using smart sensor technology: deployment and evaluation

  • Jang, Shinae;Jo, Hongki;Cho, Soojin;Mechitov, Kirill;Rice, Jennifer A.;Sim, Sung-Han;Jung, Hyung-Jo;Yun, Chung-Bangm;Spencer, Billie F. Jr.;Agha, Gul
    • Smart Structures and Systems
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    • 제6권5_6호
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    • pp.439-459
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    • 2010
  • Structural health monitoring (SHM) of civil infrastructure using wireless smart sensor networks (WSSNs) has received significant public attention in recent years. The benefits of WSSNs are that they are low-cost, easy to install, and provide effective data management via on-board computation. This paper reports on the deployment and evaluation of a state-of-the-art WSSN on the new Jindo Bridge, a cable-stayed bridge in South Korea with a 344-m main span and two 70-m side spans. The central components of the WSSN deployment are the Imote2 smart sensor platforms, a custom-designed multimetric sensor boards, base stations, and software provided by the Illinois Structural Health Monitoring Project (ISHMP) Services Toolsuite. In total, 70 sensor nodes and two base stations have been deployed to monitor the bridge using an autonomous SHM application with excessive wind and vibration triggering the system to initiate monitoring. Additionally, the performance of the system is evaluated in terms of hardware durability, software stability, power consumption and energy harvesting capabilities. The Jindo Bridge SHM system constitutes the largest deployment of wireless smart sensors for civil infrastructure monitoring to date. This deployment demonstrates the strong potential of WSSNs for monitoring of large scale civil infrastructure.

Investigation on the effect of vibration frequency on vortex-induced vibrations by section model tests

  • Hua, X.G.;Chen, Z.Q.;Chen, W.;Niu, H.W.;Huang, Z.W.
    • Wind and Structures
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    • 제20권2호
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    • pp.349-361
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    • 2015
  • Higher-mode vertical vortex-induced vibrations (VIV) have been observed on several steel box-girder suspension bridges where different vertical modes are selectively excited in turn with wind velocity in accordance with the Strouhal law. Understanding the relationship of VIV amplitudes for different modes of vibration is very important for wind-resistant design of long-span box-girder suspension bridges. In this study, the basic rectangular cross-section with side ratio of B/D=6 is used to investigate the effect of different modes on VIV amplitudes by section model tests. The section model is flexibly mounted in wind tunnel with a variety of spring constants for simulating different modes of vibration and the non-dimensional vertical amplitudes are determined as a function of reduced velocity U/fD. Two 'lock-in' ranges are observed at the same onset reduced velocities of approximately 4.8 and 9.4 for all cases. The second 'lock-in' range, which is induced by the conventional vortex shedding, consistently gives larger responses than the first one and the Sc-normalized maximum non-dimensional responses are almost the same for different spring constants. The first 'lock-in' range where the vibration frequency is approximately two times the vortex shedding frequency is probably a result of super-harmonic resonance or the "frequency demultiplication". The main conclusion drawn from the section model study, central to the higher-mode VIV of suspension bridges, is that the VIV amplitude for different modes is the same provided that the Sc number for these modes is identical.

강합성 하로 철도교의 동적거동에 대한 해석적 연구 (Analytical Research on Dynamic Behavior of Steel Composite Lower Railway Bridge)

  • 정영도;고효인;강윤석;엄기하;이성태
    • 한국구조물진단유지관리공학회 논문집
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    • 제23권1호
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    • pp.27-35
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    • 2019
  • 기존의 중-장경간 철도교량에는 주로 강박스 거더교가 적용되어 왔다. 하지만 강박스 거더교는 교량 아래의 공간확보가 불리하고, 주거더가 얇은 박판의 박스형상으로 이루어져 진동에 의한 울림소음이 발생하여 소음에 대한 많은 민원이 제기 되고 있다. 이와 같은 이유로 강박스 거더교를 대체할 수 있는 장지간 철도교량의 개발에 대한 필요성이 대두되었다. 본 논문에서는 이러한 이유로 최근에 개발된 강합성 하로 철도교에 대한 특징을 소개하고, 이 철도교의 주요 적용 지간인 40m와 50m 교량을 대상으로 실제 운행열차인 KTX 하중의 운행속도를 반영하여 상용유한요소프로그램인 MIDAS Civil을 이용하여 시간이력해석을 수행하였다. 또한 해석결과를 분석하여 대상교량의 동적거동 특성을 확인하고 철도설계기준에서 제시하고 있는 동적성능 기준을 만족하는지에 대해 검토하였다. 그 결과, 검토 대상 교량 모두 동적안전성 기준을 만족하였으나 지간 40m의 경우 연직가속도 값이 상당히 크게 나와 이에 대한 개선 방안을 제시하고, 단면을 수정하여 연직가속도의 감소를 확인하였다.

Decision-making of alternative pylon shapes of a benchmark cable-stayed bridge using seismic risk assessment

  • Akhoondzade-Noghabi, Vahid;Bargi, Khosrow
    • Earthquakes and Structures
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    • 제11권4호
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    • pp.583-607
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    • 2016
  • One of the main applications of seismic risk assessment is that an specific design could be selected for a bridge from different alternatives by considering damage losses alongside primary construction costs. Therefore, in this paper, the focus is on selecting the shape of pylon, which is a changeable component in the design of a cable-stayed bridge, as a double criterion decision-making problem. Different shapes of pylons include H, A, Y, and diamond shape, and the two criterion are construction costs and probable earthquake losses. In this research, decision-making is performed by using developed seismic risk assessment process as a powerful method. Considering the existing uncertainties in seismic risk assessment process, the combined incremental dynamic analysis (IDA) and uniform design (UD) based fragility assessment method is proposed, in which the UD method is utilized to provide the logical capacity models of the structure, and the IDA method is employed to give the probabilistic seismic demand model of structure. Using the aforementioned models and by defining damage states, the fragility curves of the bridge system are obtained for the different pylon shapes usage. Finally, by combining the fragility curves with damage losses and implementing the proposed cost-loss-benefit (CLB) method, the seismic risk assessment process is developed with financial-comparative approach. Thus, the optimal shape of the pylon can be determined using double criterion decision-making. The final results of decision-making study indicate that the optimal pylon shapes for the studied span of cable-stayed bridge are, respectively, H shape, diamond shape, Y shape, and A shape.

신뢰도 기반 플레이트 거더교의 여유도 평가 기법 (Reliability-based Redundancy Evaluation Method for Steel Plate Girder Bridges)

  • 조움돋이;박용명;진승훈;황민오;정흥진
    • 한국강구조학회 논문집
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    • 제21권5호
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    • pp.493-503
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    • 2009
  • 교량의 여유도는 주부재의 손상시 하중을 지탱할 수 있는 능력으로서 거더 개수, 지간, 형고, 내부지점, 부부재 등의 다양한 인자가 영향을 미치게 된다. 그러나, AASHTO 및 국내 도로교설계기준과 같은 현행 규정에서는 교량의 여유도를 단지 주거더의 개수로만 정의하고 있고, 그 평가 방법 및 요구 수준은 아직 제시되지 않고 있다. 이에 본 연구에서는 플레이트거더교를 대상으로 심각한 피로손상이 발생한 경우 주요 인자들을 고려하고 신뢰도 기법에 기반하여 교량의 여유도 평가 기법을 제안하였다. 또한, LRFD법 기반의 기준 교량에 대해 손상 시 내하력 해석과 신뢰성 해석을 수행하여 여유도의 요구 수준을 목표 시스템 신뢰도 지수 형태로 제안하였다. 마지막으로 현행 ASD법으로 설계된 단순 및 연속 플레이트거더교의 거더 수에 따른 여유도 수준을 평가 제시하였다.

Dynamic performance of girder bridges with explosion-proof and aseismic system

  • Wang, Jingyu;Yuan, Wancheng;Wu, Xun;Wei, Kai
    • Structural Engineering and Mechanics
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    • 제61권3호
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    • pp.419-426
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    • 2017
  • Recently, the transportation of dangerous explosive goods is increasing, which makes vehicle blasting accidents a potential threat for the safety of bridge structures. In addition, blasting accidents happen more easily when earthquake occurs. Excessive dynamic response of bridges under extreme loads may cause local member damage, serviceability issues, or even failure of the whole structure. In this paper, a new explosion-proof and aseismic system is proposed including cable support damping bearing and steel-fiber reinforced concrete based on the existing researches. Then, considering one 40m-span simply supported concrete T-bridge as the prototype, through scale model test and numerical simulation, the dynamic response of the bridge under three conditions including only earthquake, only blast load and the combination of the two extreme loads is obtained and the applicability of this explosion-proof and aseismic system is explored. Results of the study show that this explosion-proof and aseismic system has good adaptability to seism and blast load at different level. The reducing vibration isolation efficiency of cable support damping bearing is pretty high. Increasing cables does not affect the good shock-absorption performance of the original bearing. The new system is good at shock absorption and displacement limitation. It works well in reducing the vertical dynamic response of beam body, and could limit the relative displacement between main girder and capping beam in different orientation so as to solve the problem of beam falling. The study also shows that the enhancement of steel fibers in concrete could significantly improve the blast resistance of main beam. Results of this paper can be used in the process of antiknock design, and provide strong theoretical basis for comprehensive protection and support of girder bridges.

A deformable section model for the dynamics of suspension bridges -Part I : Model and linear response

  • Sepe, Vincenzo;Augusti, Giuliano
    • Wind and Structures
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    • 제4권1호
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    • pp.1-18
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    • 2001
  • The classical two-degree-of-freedom (2-d-o-f) "sectional model" is currently used to study the dynamics of suspension bridges. Taking into account the first pair of vertical and torsional modes of the bridge, it describes well global oscillations caused by wind actions on the deck and yields very useful information on the overall behaviour and the aerodynamic and aeroelastic response, but does not consider relative oscillation between main cables and deck. The possibility of taking into account these relative oscillations, that can become significant for very long span bridges, is the main purpose of the 4-d-o-f model, proposed by the Authors in previous papers and fully developed here. Longitudinal deformability of the hangers (assumed linear elastic in tension and unable to react in compression) and external loading on the cables are taken into account: thus not only global oscillations, but also relative oscillations between cables and deck can be described. When the hangers go slack, large nonlinear oscillations are possible; if the hangers remain taut, the oscillations are small and essentially linear. This paper describes the model proposed for small and large oscillations, and investigates in detail the limit condition for linear response under harmonic actions on the cables (e.g., like those that could be generated by vortex shedding). These results are sufficient to state that, with geometric and mechanical parameters in a range corresponding to realistic cases of large span suspension bridges, large relative oscillations between main cables and deck cannot be excluded, and therefore should not be neglected in the design. Forthcoming papers will investigate more general cases of loading and dynamic response of the model.

집중 이동하중을 받는 사장교의 휨 및 비틈 거동에 관한 연구 (A Study on the Bending and Torsional Behaviors of Cable-Stayed Bridges under a Concentrated Moving Load)

  • 장승필;임성순;주석범
    • 대한토목학회논문집
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    • 제9권3호
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    • pp.1-12
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    • 1989
  • 사장교는 경간이 크기 때문에 발생하는 대변형 효과, 케이블의 현수 작용, 그리고 축력으로 인한 휨 강성 변화 등으로 비선형 거동이 나타난다. 사장교의 동적 거동은 구조물 안정성 검사를 위한 중요한 요소가 된다. 특히, 편재 이동하중이 작용하는 경우, 연직 변위와 비틂 변위는 복합될 뿐만 아니라 단면 좌우의 케이블 축력 변화도 중요한 동적 특성을 나타낸다. 본 연구에서는 편재 이동하중이 작용하는 사장교의 해석을 위한 이론적 연구와 유한 요소법을 제시하였고 이동 하중의 속도변화와 편심량의 크기에 따라 케이블의 장력과 절점 변위에 대한 동적 거동을 규명하였다. 본 연구에서 수행한 해석 결과에 따르면, 편재 이동 하중을 받는 사장교의 해석에서는 주형의 비틂과 이로 인한 케이블 축력 증가도 고려해야 할 것으로 사료된다.

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