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首页> 外文期刊>Journal of structural engineering >Effects of Cyclic Temperature on the Time-Dependent Behavior of Posttensioned Concrete Bridges
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Effects of Cyclic Temperature on the Time-Dependent Behavior of Posttensioned Concrete Bridges

机译:循环温度对后张混凝土桥梁时变行为的影响

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Typically, measurement and analysis of concrete time-dependent behaviors such as creep and shrinkage are performed under the assumption of constant temperature conditions. However, many structures in the field are subject to variable seasonal and daily temperatures. This paper explores how changes in temperature affect the time-dependent behavior of concrete structures, with a particular focus on posttensioned concrete bridges. Temperature-dependent creep, shrinkage, aging, and relaxation models were incorporated into structural finite-element analyses examining a posttensioned concrete beam under variable thermal loading. The impacts of uniform temperature changes on the time-dependent deflections, strains, and stresses were accounted for using an Arrhenius-adjusted age based on the structure temperature. However, nonuniform temperature changes, such as thermal gradients through the depth of the cross-section, caused time-dependent behavior that could not be accounted for using the Arrhenius-adjusted age based on the average structure temperature. Time-dependent vertical deflections and especially longitudinal stresses throughout the structure were altered by the repeated application of thermal gradients. The different creep and shrinkage strain rates through the depth of the section, driven by the temperature and stress differences from the applied thermal gradients, induced residual stresses. The presence of these residual stresses implies that time-dependent stress changes from a creep and shrinkage analysis at a constant temperature cannot be linearly superimposed with the stresses caused by thermal gradients computed using an independent elastic analysis.
机译:通常,对混凝土随时间变化的行为(例如蠕变和收缩)的测量和分析是在恒定温度条件下进行的。但是,该领域中的许多建筑物都受到季节和每日温度变化的影响。本文探讨温度变化如何影响混凝土结构随时间变化的行为,特别关注后张拉混凝土桥梁。将温度相关的蠕变,收缩,老化和松弛模型纳入结构有限元分析中,以研究在可变热负荷下的后张混凝土梁。温度的均匀变化对随时间变化的挠度,应变和应力的影响,是根据结构温度使用Arrhenius调整的年龄来解释的。但是,不均匀的温度变化(例如贯穿横截面深度的热梯度)会导致时间相关的行为,这无法使用基于平均结构温度的Arrhenius调整年龄来解释。重复施加热梯度可以改变随时间变化的垂直挠度,尤其是整个结构的纵向应力。在截面深度上不同的蠕变和收缩应变率是由施加的热梯度产生的温度和应力差驱动的,从而引起残余应力。这些残余应力的存在意味着,在恒定温度下因蠕变和收缩分析而产生的随时间变化的应力变化不能与使用独立弹性分析计算出的热梯度引起的应力线性叠加。

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