• 제목/요약/키워드: moving train loads

검색결과 55건 처리시간 0.019초

강철도교의 실응답해석에 관한 연구 (A Study on Analysis of Real Response of Steel Railway Bridges)

  • 장동일;최강희;이희현
    • 대한토목학회논문집
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    • 제9권2호
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    • pp.43-54
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    • 1989
  • 본 논문에서는 열차하중에 의해 강철도교에 일어나는 정 동적응답을 보다 정확하게 예측하기 위한 방법을 제시하기 위하여, 강철도교의 정 동적응답 측정치를 해석에 의한 것과 비교해 보았으며, 이를 토대로 열차의 속도가 설계속도보다 높은 고속(100km/h이상)으로 될때 철도교의 충격 계수가 어떻게 변하는지 살펴보았다. 실측은 철도교의 주설계대상이 되는 부분에 변형게이지와 처짐측정기에 의해 실시하여, 이로부터 교량의 정 동적응답, 기본진동수, 감쇄비 및 충격계수를 구하였다. 정적해석은 3차원 매트릭스 구조해석법에 따라 프로그램을 작성하여 실시하였으며 동적해석은 주행하중문제와 주행질량문제로 나누어 주행하중문제의 경우 동적응답은 모드중첩법에 의해, 주행질량문제의 경우는 직접적분법에 의해 구했다. 연구결과 철도교의 정적응답을 구하는 경우 도로교와 같이 교량을 1차원 또는 2차원으로 모델링하면 응답비(측정치/계산치)는 도로교에 비해 높고, 동적응답은 열차의 질량을 포함하는 주행질량문제로 해석해야 된다는 것을 알 수 있었다. 그리고 실측결과들을 현재의 철도교 시방서 규정과 비교해 본 결과 충격에 관한 규정은 현재의 공용속도(100km/h이하)하에서는 상당히 안전하나, 열차가 고속(100km/h이상)으로 되면 특히 단순 플레이트거어더교의 경우 충격계수가 상당히 커지므로 시방서의 충격에 관한 규정을 충분히 검토할 것을 제시하였다.

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Dynamic analysis of a coupled steel-concrete composite box girder bridge-train system considering shear lag, constrained torsion, distortion and biaxial slip

  • Li Zhu;Ray Kai-Leung Su;Wei Liu;Tian-Nan Han;Chao Chen
    • Steel and Composite Structures
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    • 제48권2호
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    • pp.207-233
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    • 2023
  • Steel-concrete composite box girder bridges are widely used in the construction of highway and railway bridges both domestically and abroad due to their advantages of being light weight and having a large spanning ability and very large torsional rigidity. Composite box girder bridges exhibit the effects of shear lag, restrained torsion, distortion and interface bidirectional slip under various loads during operation. As one of the most commonly used calculation tools in bridge engineering analysis, one-dimensional models offer the advantages of high calculation efficiency and strong stability. Currently, research on the one-dimensional model of composite beams mainly focuses on simulating interface longitudinal slip and the shear lag effect. There are relatively few studies on the one-dimensional model which can consider the effects of restrained torsion, distortion and interface transverse slip. Additionally, there are few studies on vehicle-bridge integrated systems where a one-dimensional model is used as a tool that only considers the calculations of natural frequency, mode and moving load conditions to study the dynamic response of composite beams. Some scholars have established a dynamic analysis model of a coupled composite beam bridge-train system, but where the composite beam is only simulated using a Euler beam or Timoshenko beam. As a result, it is impossible to comprehensively consider multiple complex force effects, such as shear lag, restrained torsion, distortion and interface bidirectional slip of composite beams. In this paper, a 27 DOF vehicle rigid body model is used to simulate train operation. A two-node 26 DOF finite beam element with composed box beams considering the effects of shear lag, restrained torsion, distortion and interface bidirectional slip is proposed. The dynamic analysis model of the coupled composite box girder bridge-train system is constructed based on the wheel-rail contact relationship of vertical close-fitting and lateral linear creeping slip. Furthermore, the accuracy of the dynamic analysis model is verified via the measured dynamic response data of a practical composite box girder bridge. Finally, the dynamic analysis model is applied in order to study the influence of various mechanical effects on the dynamic performance of the vehicle-bridge system.

측량과 현방식 궤도틀림 측정 비교 (Comparison of Chord method with Surveying in Track irregularity Measurement)

  • 이지하;이상진
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 춘계학술대회 논문집
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    • pp.1647-1652
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    • 2008
  • Track geometry consists of tangent and curved lines, which caused undesirable changes in initial track geometry by traffic loads. The bigger the changes are, the worse the riding comfort and running stability of train. This is so-called track irregularity and is the most important quality parameters of ballasted track. To be able to objectively assess track irregularity, track geometry should be able to be measured. Practically, railway companies use moving chord method, this method determine versine values via a chord. The versine is the vertical distance to curve measured in the middle of the chord. This type of method measures only versine of track irregularity curve by transfer function from specific property of measuring tool. In this report, review the characteristics of two types of measuring tools by comparing the measurements. The one is GRP-1000 system, optical surveying system with Total station and lazar prism trolly. This calculates track geometry by surveying absolute coordinates of two points each on both rail heads. The other is Trackmaster, measures versine with 2m of chord length.

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주행차량에 의한 궤도 동적?성의 매개변수 분석 (Parametric Analysis in Dynamic Characteristics of Railway Track due to Travelling Vehicle)

  • 김상효;이용선;조광일
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2003년도 춘계학술대회 논문집
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    • pp.337-342
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    • 2003
  • The dynamic load effects are conveyed to the railway bridges through tracks which are generated by moving trains The dynamic load effects may vary due to the dynamic characteristics of the applied vehicle loads and the railway bridges containing the track system. However, the track effects have been neglected or simplified by spring elements in the most studies since it is quite complex to consider the track systems in the dynamic analysis models of railway bridges. In this study, track system on railway bridges is modeled using a three-dimensional discrete-support model that can simulate the load carrying behavior of tracks. In addition, this program is developed with the precise 20-car model and a continuous PSC(prestressed concrete) box girder bridge, which is the main bridge type of Korea Train express(KTX). Three-dimensional elements are used for both. The dynamic response of railway bridges is found to be affected depending on whether the track model is considered or not. The influencing rate depends on the traveling speed and different wheel-axle distance. The dynamic bridge response is decreased remarkably by the track systems around the resonant frequency. Therefore, the resonance effect can be reduced by modifying the track properties in the railway bridge.

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궤도모형에 따른 철도교량의 동적응답분석 (The Dynamics Responses of Railway Bridges Considering the Track Model)

  • 김상효;이용선;정준;이준석
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2002년도 추계학술대회 논문집(I)
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    • pp.715-720
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    • 2002
  • The dynamic load effects, generated by moving trains, are transferred to the railway bridges through tracks. The dynamic load effects may vary due to the dynamic characteristics of the applied vehicle loads and the railway bridges including the track system. However, the track models have been neglected or simplified by spring elements in the most studies since it is quite complicated to consider the track systems in the dynamic analysis models of railway bridges. In this study track system on railway bridges are modeled using a three-dimensional discrete-support model that can simulate the load carrying behavior of tracks. A 40m simply supported prestressed concrete box-girder system adopted for high-speed railway bridges are modeled for simulation works. The train models are composed of 20 cars for KTX. The dynamic response of railway bridges are found to be affected depending on whether the track model is considered for not. The influencing rate depends on the traveling speed and different wheel-axle distance. The dynamic bridge response decreases remarkably by the track systems around the resonant frequency. Therefore, the resonance effect can be reduced by modifying the track properties in the railway bridge, especially for KTX trains.

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