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首页> 外文期刊>Journal of bridge engineering >Thermal Effects on Skewed Steel Highway Bridges and Bearing Orientation
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Thermal Effects on Skewed Steel Highway Bridges and Bearing Orientation

机译:斜钢公路桥梁的热效应及支座方向

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摘要

An investigation is conducted to characterize and quantify external effects in composite steel highway bridges under thermal loading. Based on the results of a literature review, including thermal and thermoelastic analyses as well as current design code provisions, a simple but realistic thermal loading is developed for winter and summer conditions for AASHTO load and resistance factor design (LRFD) Zone 3. Three cases of bearing orientation, representative of current design practice, are examined. Parametric studies are then conducted. Hypothetical bridges are designed for a range of different span lengths, section depths, widths, and skews. Each bridge model is tested under all three constraint cases and both winter and summer thermal loading. Variations in structural response with each parameter are plotted, and the relative influence of each parameter is discussed. Design equations to predict the observed displacements and restraint forces at the bearings are then developed by a systematic regression procedure. The applicability of these proposed design equations is demonstrated by examples.
机译:进行了一项研究,以表征和量化热荷载作用下复合钢公路桥梁的外部影响。基于文献综述的结果,包括热和热弹性分析以及当前的设计规范规定,针对AASHTO载荷和阻力因子设计(LRFD)3区,针对冬季和夏季条件开发了一种简单而切合实际的热载荷。三种情况研究了代表当前设计实践的轴承方位。然后进行参数研究。假设桥设计用于一系列不同的跨度长度,截面深度,宽度和偏斜。每个桥模型都在所有三种约束情况下以及冬季和夏季热负荷下进行了测试。绘制了每个参数的结构响应变化,并讨论了每个参数的相对影响。然后,通过系统的回归程序来开发设计方程,以预测观察到的轴承位移和约束力。实例证明了这些建议的设计方程式的适用性。

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