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Climatic Thermal Stresses in the Vatosund Box-Girder Concrete Bridge

机译:Vatosund箱梁混凝土桥的气候热应力

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摘要

Severe cracks have been found in several box-girder bridges in Sweden, with the cracks being more frequent on the south side than the north. This indicates that solar radiation has a large impact on the stress field of these bridges, as this is the only factor that is significantly different between the two walls. In this study, the Vatosund Bridge has been studied with a three-dimensional (3D) finite element (FE) model to analyse the thermal stresses that occur following climatic exposure. Meteorological data have been used to simulate the time variation of the temperature field, which is in turn used to simulate the resulting thermal stresses. The results show that the largest tensile stresses appear on the inside of the south wall, with a clear difference compared to the north. Large stresses appear both in the top and in the bottom parts of the south wall. This indicates that the cracks that mainly appeared in the lower parts, at least, partly originate from thermal effects. The boundary conditions at mid-span have a large impact on the location and magnitude of the thermal tensile stresses. The results show that it is possible to predict where thermal stresses appear in a box-girder bridge using 3D FE analysis.
机译:在瑞典的几座箱梁桥中发现了严重的裂缝,与南端相比,南端的裂缝更为频繁。这表明太阳辐射对这些桥梁的应力场有很大的影响,因为这是两个墙之间明显不同的唯一因素。在这项研究中,已经使用三维(3D)有限元(FE)模型研究了Vatosund桥,以分析气候暴露后发生的热应力。气象数据已用于模拟温度场的时间变化,进而用于模拟产生的热应力。结果表明,最大的拉应力出现在南壁的内部,与北部相比有明显的差异。大应力出现在南墙的顶部和底部。这表明主要出现在下部的裂纹至少部分是由于热效应引起的。中跨的边界条件对热拉伸应力的位置和大小有很大影响。结果表明,可以使用3D FE分析预测箱梁桥中的热应力。

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