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Monitoring system for execution control applied to a steel arch footbridge

机译:应用于钢拱人行桥的执行控制监控系统

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The construction of innovative structural systems and the use of unconventional erection procedures need refined tools to assess the phased behaviour and control the site operations. The combination of a specific monitoring system with a detailed numerical model constitutes an adequate tool to assist bridge construction. The application of this tool to the construction of a 275Â metre long footbridge, displaying innovative structural characteristics, is discussed in the paper. A dedicated monitoring system, including strain gauges and thermal sensors was implemented to monitor critical cross sections during both the construction process and in-service. A detailed numerical model was developed and applied for the prediction of the phased construction behaviour and to help in the interpretation of the experimental measurements. In this paper the focus is driven to the aspects related with the installation of the monitoring system, the implementation of the bridge model and the discussion of the results obtained during the construction stages, namely the removal of the propping system. The unusual but direct construction procedure used to build the footbridge greatly relied on the monitoring predictions and continuous assessment to control and reduce the inherent risks of the adopted construction process.
机译:创新性结构系统的构建和非常规安装程序的使用都需要完善的工具来评估阶段性行为并控制现场操作。特定的监控系统与详细的数值模型相结合,构成了协助桥梁建设的适当工具。本文讨论了该工具在275米长的人行天桥的建设中的应用,展现了创新的结构特征。实施了包括应变片和热传感器在内的专用监控系统,以监控施工过程和使用中的关键截面。开发了详细的数值模型,并将其用于分阶段施工行为的预测,并有助于解释实验结果。本文的关注点集中在与监控系统的安装,桥梁模型的实施以及在施工阶段获得的结果(即支撑系统的拆除)的讨论有关的方面。用于建造人行天桥的非同寻常但直接的施工程序在很大程度上取决于监控预测和持续评估,以控制和减少所采用施工过程的固有风险。

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