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Bridge-Rail Interaction for Continuous Welded Rail on Cable-Stayed Bridge due to Temperature Change

机译:温度变化引起的斜拉桥上连续焊轨桥轨相互作用

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Continuous welded rail (CWR) has been used in high-speed railways in China. The bridge-rail interaction caused by temperature change when CWR is paved on cable-stayed bridges is studied in this paper. A bridge-rail interaction model is first established using the finite element method. Based on the formulated model, the variation pattern of the force and displacement of rail and bridge-rail relative displacement due to temperature change is studied. The additional temperature forces experienced by stay cables and main towers are obtained, and the influence of the stiffness and temperature change of stay cables and main towers on the additional temperature force of rail is studied. Two simplified algorithms are proposed to facilitate the analysis of bridge-rail interaction. Results show that the distribution patterns of the additional temperature force and displacement of rail on the cable-stayed bridge are the same as those on a common bridge, and the forces experienced by stay cables and main towers are within the safety limit of bridge components. The stiffness variation of stay cables has more influence on the bridge-rail interaction than that of main towers. The distribution patterns of the forces and displacements obtained by the simplified algorithms are similar with those obtained by the FEM. The simplified algorithms can be used for the design of CWR laid on cable-stayed bridges.
机译:连续焊接钢轨(CWR)已在中国的高速铁路中使用。本文研究了斜拉桥上铺设CWR时温度变化引起的桥轨相互作用。首先使用有限元方法建立桥梁-铁路相互作用模型。在此模型的基础上,研究了温度变化引起的钢轨和桥轨相对位移的力和位移的变化规律。得到了斜拉索和主塔承受的附加温度力,研究了斜拉索和主塔的刚度和温度变化对轨道附加温度力的影响。提出了两种简化的算法来促进桥梁-铁路相互作用的分析。结果表明,斜拉桥上附加温度力和钢轨位移的分布规律与普通桥上的分布规律相同,斜拉索和主塔承受的力在桥梁构件的安全范围内。与主塔相比,斜拉索的刚度变化对桥轨相互作用的影响更大。通过简化算法获得的力和位移的分布模式与通过有限元法获得的力和位移的分布模式相似。简化的算法可用于斜拉桥上的CWR设计。

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