• 제목/요약/키워드: Railway wheel

검색결과 702건 처리시간 0.032초

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
    • /
    • 제48권2호
    • /
    • pp.207-233
    • /
    • 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.

공용중인 경전철 직결 궤도 콘크리트 도상블록의 보강 방안 연구 (A Study on Reinforcement Method of Concrete Block for Direct Fixation Tracks on Serviced Light Rail Transit)

  • 최정열;강유송;안대희;한재민;정지승
    • 문화기술의 융합
    • /
    • 제9권3호
    • /
    • pp.633-640
    • /
    • 2023
  • 본 연구는 운행선 경전철 직결식 궤도 부설구간에서 발생한 도상블록의 변위거동 특성을 분석하여 적정 보강 방안을 도출하고자 현장조사를 바탕으로 한 수치해석을 수행하였다. 본 연구의 대상선로는 교량상 급곡선 직결식 콘크리트 궤도로서 교량바닥판에 부설된 도상블록이 종방향 및 횡방향으로 이동하는 문제가 발생하여 이에 대한 메커니즘을 분석하였다. 본 연구에서는 3D Solid요소를 이용한 궤도구조 모델링을 바탕으로 운행하중 조건에서 발생가능한 직결식 궤도의 거동을 분석하고 다양한 보강방안에 대한 보강효과를 해석적으로 분석하였다. 도상블럭의 보강 전, 후 횡변위 분석결과, 극한 횡압 작용 시 보강 후 최대 횡변위는 보강 전 대비 약 3% 수준(약 0.1mm)으로 크게 감소하는 것으로 분석되었다. 또한 채움 모르타르, 교량 바닥판, 보강철근의 발생응력 검토결과, 모두 2.6 이상의 충분한 안전율을 확보하는 것으로 분석되어 보강방안에 대한 최적 조건을 도출하였다. 따라서 본 연구에서 검토한 앵커링 보강 수량 및 대칭형 앵커배치는 도상블록 횡방향 변위 발생 제어 및 교량, 도상블록의 구조적 건전성 확보에 효과적일것으로 판단된다.