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Transverse thermal stresses in concrete box cross-sections due to climatic exposure

机译:由于气候暴露,混凝土箱形截面中的横向热应力

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Spatial and temporal temperature variations in a concrete structure due to variations in the surrounding climate will produce movements which, if restrained, may induce stresses in the structure. To get a better understanding of transverse thermal stresses due to climatic effects in concrete box cross-sections, the FE simulations in this study have been performed using extensive climatic input data directly or by using simplified methods to simulate the temperature and resulting stress fields in a section of the hollow concrete arch of the New Svinesund Bridge. Studies of other cross-sections with varying depth, width and wall thicknesses have also been performed to investigate the geometrical influence. The results reveal an overestimation of the maximum thermal tensile stress when using a linear temperature differential approach compared with the direct use of climate data that includes the non-linear part of the temperature distribution. The effect of depth, width and orientation is negligible compared with variations in thickness between slabs and walls. For box sections with slabs/walls having different thicknesses, the transverse thermal stresses will be significantly larger in the thinner members, irrespective of the actual orientation and position of the member.
机译:由于周围气候的变化,混凝土结构中的时空温度变化会产生运动,如果受到限制,则会在结构中产生应力。为了更好地理解混凝土箱形截面中由于气候影响而产生的横向热应力,本研究中的有限元模拟是使用大量的气候输入数据直接进行的,或者是使用简化的方法来模拟混凝土箱体中的温度和应力场。新Svinesund桥空心混凝土拱的截面。还研究了其他具有不同深度,宽度和壁厚的横截面,以研究几何影响。结果表明,与直接使用包括温度分布的非线性部分的气候数据相比,使用线性温度差方法时,最大热拉伸应力被高估了。与板和墙之间的厚度变化相比,深度,宽度和方向的影响可以忽略不计。对于厚板/壁厚不同的箱形截面,在较薄的构件中,横向热应力将显着增大,而与构件的实际方向和位置无关。

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