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Temperature Effects on Strains of a Continuous Box-Girder Bridge with a Long-Term Monitoring System

机译:具有长期监控系统的连续箱梁桥菌株的温度效应

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Daily and seasonal temperature-induced strains of a prestressed concrete (PSC) continuous box-girder bridge were presented. Strain measurement, using fiber Bragg grating sensors, constitutes a crucial component of the system in the monitoring of the bridge's key sections response in order to evaluate its structural behavior under environmental and traffic loads. This study was carried out to determine the effects of daily and seasonal temperature variations on the bridge deformation. Moreover, the insolation generates vertical temperature gradients in the box-girder cross sections, which are responsible for the strain differences in the plates and for its variation in the webs along their heights. In addition, in order to identify the qualitative and quantitative relation between the temperature and the strains on the cross sections, the monitoring temperature measurements of the bridge during the construction were applied. The results show that: (1) the seasonal temperature variation can significantly influence the strain of concrete bridges in cold regions; (2) in the high temperature periods the strain of the box-girder top plates experiences the largest variation, whereas for the bottom plates deformation the low temperature periods have a higher impact; (3) the daily and seasonal strain variations induced by uniform temperature reveal an inconsistent tendency for mid-span cross sections.
机译:提出了预应力混凝土(PSC)连续箱梁桥的日常和季节性温度诱导的菌株。使用光纤布拉格光栅传感器的应变测量构成系统的重要组成部分,在桥梁的关键部分的监测中,以便在环境和交通负荷下评估其结构行为。进行该研究以确定日常和季节温度变化对桥梁变形的影响。此外,缺失在箱梁横截面中产生垂直温度梯度,其负责板材的应变差和其高度的幅材的变化。另外,为了识别横截面上的温度和菌株之间的定性和定量关系,应用了施工期间桥梁的监测温度测量。结果表明:(1)季节性温度变化会显着影响冷区混凝土桥的菌株; (2)在高温时段中,箱梁顶板的应变经历了最大的变化,而对于底板变形,低温时期的影响更高; (3)由均匀温度诱导的日常和季节性应变变化揭示了中间跨度横截面的不一致趋势。

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