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首页> 外文期刊>Journal of bridge engineering >Investigation of Temperature Effects on Steel-Truss Bridge Based on Long-Term Monitoring Data: Case Study
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Investigation of Temperature Effects on Steel-Truss Bridge Based on Long-Term Monitoring Data: Case Study

机译:基于长期监测数据的钢桁架桥梁温度效应调查 - 案例研究

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The time-varying average and differential temperatures may significantly change the performance of steel truss bridges, which may increase the difficulties for bridge design, construction, and maintenance. Because hundreds of steel members usually have different geometric dimensions, the temperature effect on the steel truss bridge is extremely complicated, and no general formula is available for predicting temperature-induced responses. In this study, the 2-year field monitoring data collected from a 108-m-long steel truss bridge are utilized to investigate the temperature effects on strain responses. In particular, the relationships between temperature-induced stress and standard temperature actions are investigated using correlation analysis and numerical simulation. Accordingly, the simple general formula is provided to capture the relationships between temperature distributions and temperature-induced strains. The accuracy of the proposed formula is verified using the field monitoring data of the box-shaped members and the H-shaped members. The notable vertical temperature gradients are usually observed in box-shaped members, which can generate larger thermal strain responses than H-shaped members. The results of this study could provide a simple and relatively general solution to predict the temperature-induced strain of steel truss bridges. Meanwhile, this conclusion drawn may provide references for the design and maintenance of steel truss bridges.
机译:时变平均和差速器温度可能会显着改变钢桁架桥的性能,这可能会增加桥梁设计,施工和维护的困难。由于数百个钢构件通常具有不同的几何尺寸,因此对钢桁架桥的温度效应极其复杂,并且没有通式可用于预测温度诱导的响应。在这项研究中,从108米长的钢桁架桥收集的2年的现场监测数据用于研究对应变反应的温度效应。特别地,使用相关性分析和数值模拟研究了温度诱导的应力和标准温度效果之间的关系。因此,提供简单的通式以捕获温度分布和温度诱导的菌株之间的关系。使用箱形构件和H形构件的现场监测数据来验证所提出的公式的准确性。通常在盒形构件中观察到显着的垂直温度梯度,这可以产生比H形构件的较大的热应变响应。该研究的结果可以提供简单且相对通用的解决方案,以预测钢桁架桥的温度诱导的钢筋。同时,该结论可以为钢桁架桥梁的设计和维护提供参考。

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