首页> 外文期刊>Latin American Journal of Solids and Structures >Three-Dimensional Rail-Bridge Coupling Element of Unequal Lengths for Analyzing Train-Track-Bridge Interaction System
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Three-Dimensional Rail-Bridge Coupling Element of Unequal Lengths for Analyzing Train-Track-Bridge Interaction System

机译:长度不等的三维铁路桥梁耦合单元,用于分析列车-轨道-桥梁相互作用系统

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A three-dimensional rail-bridge coupling element of unequal lengths in which the length of the rail element is shorter than that of the bridge element is presented in this paper to investigate the spatial dynamic responses of a train-track-bridge interaction system. Formulation of stiffness and damping matrices for the fastener, ballast, and bearing, as well as the three-dimensional equations of motion in matrix form for a train-track-bridge interaction system using the proposed element are derived in detail using the energy principle. The accuracy of the proposed three-dimensional rail-bridge coupling element is verified using the existing two-dimensional element. Three examples of a seven-span continuous beam bridge are shown: the first investigates the influence of the efficiency and accuracy of the lengths of the rail and bridge elements on the spatial dynamic responses of the train-track-bridge interaction system, and the other two illustrate the influence of two types of track models and two types of wheel-rail interaction models on the dynamic responses of the system. Results show that (1) the proposed rail-bridge coupling element is not only able to help conserve calculation time, but it also gives satisfactory results when investigating the spatial dynamic responses of a train-track-bridge interaction system; (2) the double-layer track model is more accurate in comparison with the single-layer track model, particularly in relation to vibrations of bridge and rail; and (3) the no-jump wheel-rail interaction model is generally reliable and efficient in predicting the dynamic responses of a train-track-bridge interaction system.
机译:为了研究列车-轨道-桥梁相互作用系统的空间动力响应,提出了一种不等长的三维轨道-桥梁耦合单元,其中轨道单元的长度小于桥梁单元的长度。利用能量原理,详细推导了紧固件,压载物和轴承的刚度和阻尼矩阵的公式,以及使用所提出的元件的列车-轨道-桥梁相互作用系统的矩阵形式的三维运动方程。使用现有的二维元件可以验证所提出的三维铁路桥梁耦合元件的精度。给出了七个跨度连续梁桥的三个示例:第一个研究轨道和桥梁元素的长度的效率和准确性对列车-轨道-桥梁相互作用系统的空间动力响应的影响;另一个第二部分说明了两种类型的轨道模型和两种类型的轮轨相互作用模型对系统动态响应的影响。结果表明:(1)提出的轨桥耦合单元不仅可以节省计算时间,而且在研究列车-轨道-桥梁相互作用系统的空间动力响应时,也能给出令人满意的结果。 (2)双层轨道模型比单层轨道模型更准确,特别是在桥梁和轨道振动方面; (3)无跳动轮轨相互作用模型在预测列车-轨道-桥梁相互作用系统的动力响应方面通常是可靠和有效的。

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