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Analysis of Thermal Environmental Effects on Precast, Prestressed Concrete Bridge Girders: Temperature Differentials and Thermal Deformations

机译:预制,预应力混凝土桥梁梁的热环境影响分析:温差和热变形

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摘要

AASHTO specifications provide vertical thermal gradients for the thermal design of precast, prestressed concrete bridge girders. However, the thermal behavior of the girders pertains to not only vertical thermal movement but also lateral thermal movement. Thus, a one-year experimental and analytical study was conducted on a prestressed concrete BT-1600 girder segment to investigate both the vertical and lateral thermal gradients with variations in environmental conditions. The vertical thermal gradients were compared using current AASHTO recommendations. In addition, this study evaluated the lateral thermal gradients, which are not provided in the specifications, to propose a second-order curve. To determine the magnitudes of the thermal gradients in different environmental conditions, this study has developed equations that calculate the maximum vertical and lateral temperature differentials from daily climatic information. Results of the study showed that the predicted temperature differentials provided good agreement with the measured values. Finally, thermal deformations induced by the vertical and lateral thermal gradients were evaluated using an analytical method derived from one-dimensional beam theory.
机译:AASHTO规范为预制,预应力混凝土桥梁大梁的热设计提供了垂直热梯度。然而,大梁的热行为不仅涉及垂直热运动,还涉及横向热运动。因此,对预应力混凝土BT-1600梁段进行了为期一年的实验和分析研究,以研究垂直和横向热梯度随环境条件的变化。使用当前的AASHTO建议对垂直热梯度进行了比较。此外,这项研究评估了规范中未提供的横向热梯度,从而提出了二次曲线。为了确定不同环境条件下热梯度的大小,本研究开发了一些公式,这些公式可以根据每日气候信息计算最大的垂直和横向温度差。研究结果表明,预测的温差与测量值具有很好的一致性。最后,利用一维束理论推导的分析方法评估了垂直和横向热梯度引起的热变形。

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