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Long-Term Monitoring of Temperature Differences in a Steel Truss Bridge with Two-Layer Decks Compared with Bridge Codes: Case Study

机译:与桥接码相比,用双层甲板的钢桁架桥温差的长期监测:案例研究

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摘要

Bridge structures are subjected to environmental thermal actions, which cause a complex temperature field in bridge structures. This research carried out long-term monitoring of temperature differences in a steel truss bridge with two-layer decks. Big temperature differences existing in the steel truss were revealed and explained using the influence factors of solar motion and two-layer deck shading. The monitoring results show that some temperature differences were notably higher than the specified values in current bridge codes, so appropriate temperature differences for thermal action design were evaluated through probability statistics analysis. The research results show that deck coverage plays an important role in the variation of temperature differences, and there is a big difference between the temperature differences with or without deck shading. Our suggestion is that various types of deck shading should be categorized for more accurate thermal action design in current bridge codes. The steel truss member designed with enough deck coverage can effectively decrease thermal actions. The results of this research will provide meaningful information for thermal action design of steel truss bridges with two-layer deck coverage.
机译:桥梁结构受到环境热动作,导致桥梁结构中的复络场。该研究对两层甲板进行了钢桁架桥温度差的长期监测。利用太阳能运动和两层甲板遮阳的影响因素,揭示和解释了钢桁架中存在的巨大温度差异。监测结果表明,一些温度差异显着高于当前桥接码中的指定值,因此通过概率统计分析评估了热动作设计的适当温度差异。研究结果表明,甲板覆盖在温度差异的变化中起着重要作用,并且有或没有甲板遮阳的温度差之间存在很大差异。我们的建议是,应分类各种类型的甲板遮蔽,以便在当前桥接码中更准确的热动作设计进行分类。具有足够甲板覆盖范围的钢桁架构件可以有效地降低热动作。该研究的结果将为钢桁架桥的热动作设计提供有意义的信息,具有双层甲板覆盖。

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