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Study on the Girder-End Displacement of a Suspension Bridge Based on Field Measurements

机译:基于现场测量的悬架桥梁升温位移研究

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The load - response correlation is a great concern for the management and maintenance agency of bridges. Based on both the load test data and the long-term structural health monitoring data, this study aims to characterize the variation in the girder-end longitudinal displacement of a long-span suspension bridge, i.e. , the Zhaoyun Bridge in Guangdong Province of China. The load test provides a valuable chance to investigate the structural deformation in high loading levels, while the structural health monitoring system records the real-time, in-site, and long-term measurements in the normal operational stage of bridges. During the load test, the movement direction of the main girder is found to depend on the relative position of the center of gravity of the girder and the loading vehicles. However, over the period of normal operation, the quasi-static displacement at the ends of the main girder along the bridge axis is dominated by the temperature variations, rather than the traffic loading. The temperature-induced deformation is considerable so it should be filtered out from the structural total responses to highlight the live load effects or the anomalies of the bridge. As a case study, the temperature-displacement baseline model of the Zhaoyun Bridge is established and then utilized to identify the erroneous measurements in the structural health monitoring system. This paper serves as a reference for the structural behavior interpretation and performance evaluation of similar bridges.
机译:负载 - 响应相关是桥梁管理和维护机构的极大关注。基于负载测试数据和所述长期结构健康监测数据两者,本研究旨在表征在长跨度悬索桥的梁端纵向位移,即,朝云桥广东省的变化中国的。负载测试提供了研究高负载水平的结构变形的有价值的机会,而结构健康监测系统记录了桥正常运行阶段的实时,现场和长期测量。在负载测试期间,发现主梁的移动方向取决于梁和装载车辆的重心的相对位置。然而,在正常操作期间,沿桥轴的主梁的端部处的准静态位移由温度变化,而不是交通负载。温度诱导的变形是相当大的,因此应该从结构总响应中过滤出来,以突出现场负荷效应或桥的异常。作为一个案例研究,建立了Zhaoyun桥的温度 - 位移基线模型,然后利用来识别结构健康监测系统中的错误测量。本文作为类似桥梁的结构行为解释和性能评估的参考。

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