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首页> 外文期刊>Journal of surveying engineering >Structural Monitoring of Cable-Stayed Bridge: Analysis of GPS versus Modeled Deflections
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Structural Monitoring of Cable-Stayed Bridge: Analysis of GPS versus Modeled Deflections

机译:斜拉桥的结构监测:GPS与模型挠度的分析

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摘要

In this study global positioning system (GPS) technology is used to monitor the structural movement of a cable-stayed bridge over the River Tamar in northern Tasmania, Australia. Observed displacements are compared with predicted deflections derived from modeling undertaken with the Space Gass structural analysis software suite. Results show that GPS is successful in quantifying both thermally induced bridge displacements and high frequency transient motion caused by vehicle loading. GPS-derived estimates of the bridge's short-term dynamic motion correlate well with the predicted model response, providing the ability to verify the model and pose potential improvements to the model configuration. Deflection signatures from GPS show typical displacements on the main span of 54±3.5 mm in height, with corresponding longitudinal displacements on the tower structure of 17±2 mm. Displacement of the bridge caused by thermal variations is also clearly evident in the data and correlates well with additional external measurements. GPS is a valuable observational tool for monitoring structures and provides a powerful analysis tool for verification and/or improvement of structural design and modeling.
机译:在这项研究中,全球定位系统(GPS)技术用于监测澳大利亚塔斯马尼亚州北部塔玛河上的斜拉桥的结构运动。将观测到的位移与由使用Space Gass结构分析软件套件进行的建模得出的预测位移进行比较。结果表明,GPS成功地量化了由车辆载荷引起的热致桥梁位移和高频瞬态运动。 GPS得出的桥梁短期动态运动的估计值与预测的模型响应密切相关,从而提供了验证模型并为模型配置带来潜在改进的能力。 GPS的偏转信号显示出主跨段的典型位移为54±3.5 mm,塔架结构的相应纵向位移为17±2 mm。由热变化引起的电桥位移在数据中也很明显,并且与其他外部测量结果很好地相关。 GPS是用于监视结构的宝贵观察工具,并提供了功能强大的分析工具,用于验证和/或改进结构设计和建模。

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