4.7 Article

Rail-bridge coupling element of unequal lengths for analysing train-track-bridge interaction systems

Journal

APPLIED MATHEMATICAL MODELLING
Volume 36, Issue 4, Pages 1395-1414

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.apm.2011.08.041

Keywords

Finite element method; Rail-bridge coupling element; Railway bridge; Railway track; Train

Funding

  1. National Natural Science Foundation of China [51078360, 50938008]
  2. Hunan Provincial Natural Science Foundation of China [10JJ3059]

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This paper presents a rail-bridge coupling element of unequal lengths, in which the length of a bridge element is longer than that of a rail element, to investigate the dynamic problem of train-track-bridge interaction systems. The equation of motion in matrix form is given for a train-track-bridge interaction system with the proposed element. The first two numerical examples with two types of bridge models are chosen to illustrate the application of the proposed element. The results show that, for the same length of rail element, (1) the dynamic responses of train, track and bridge obtained by the proposed element are almost identical to those obtained by the rail-bridge coupling element of equal length, and (2) compared with the rail-bridge coupling element of equal length, the proposed element can help to save computer time. Furthermore, the influence of the length of rail element on the dynamic responses of rail is significant. However, the influence of the length of rail element on the dynamic responses of bridge is insignificant. Therefore, the proposed element with a shorter rail element and a longer bridge element may be adopted to study the dynamic responses of a train-track-bridge interaction system. The last numerical example is to investigate the effects of two types of track models on the dynamic responses of vehicle, rail and bridge. The results show that: (1) there are differences of the dynamic responses of vehicle, rail and bridge based on the single-layer and double-layer track models, (2) the maximum differences increase with the increase of the mass of sleeper, (3) the double-layer track model is more accurate. (C) 2011 Elsevier Inc. All rights reserved.

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