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Dynamic structural control of the 'Caffaro Viaduct' by means of vibrational measurements

机译:通过振动测量动态结构控制“Caffaro高架桥”

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This paper deals with the dynamic tests carried out with the purpose of controlling the behavior of the recently built Caffaro Viaduct. This test was required to integrate the final load test in view of the importance of the viaduct and because of its structural typology that implies a particular and quite complex dynamic behavior. The structural control is performed by comparing modal parameters obtained experimentally with those predicted by the design structural model, and represents the first step of a future structural health monitoring program that foresees tests performed every two years. The Caffaro Viaduct is a part of the project for modernization and retrofit of the A3 highway (Salerno-Reggio Calabria), near Lauria in south Italy. The longitudinal development of the viaduct is about 400 m; it is formed by two separate steel-concrete composite decks, 12.7 m wide, supported each one by two steel trestles that are connected nearly the top by transverse steel truss beams. The overall dynamic response of the structure is checked by means of three different sensor placements with the aim to highlight three different behaviors: i) the global behavior of both carriageways, ii) the flexural-torsional behavior and iii) the transverse one of the southbound carriageway. The data collected during ambient vibration tests are processed with Stochastic Subspace Identification Covariance Driven in order to estimate the modal parameters. Natural frequencies and mode shapes experimentally determined are compared with the numerical ones obtained with the predictive finite element model developed for design purposes and then with the model slightly modified to account for the real operating conditions of the viaduct, in terms of both stiffness and masses. A refined model updating is in progress to fix a benchmark, necessary for the scheduled structural health monitoring program.
机译:本文涉及动态测试,以控制最近建造的Caffaro高架桥的行为。考虑到高架桥的重要性,所需的测试是必需的,鉴于高架桥的重要性,并且由于其结构类型化,这些结构类型暗示了特定且非常复杂的动态行为。通过将通过设计结构模型预测的那些进行了比较通过比较实验获得的模态参数来执行结构控制,并且代表了未来结构健康监测计划的第一步,这些计划预计每两年进行一次测试。 Caffaro高架桥是A3高速公路(Salerno-Reggio Calabria)的现代化和改造的一部分,南意大利劳里亚附近。高架桥的纵向开发约为400米;它由两个独立的钢混凝土复合甲板,12.7米宽,每个钢支架支撑,两个钢支架通过横向钢桁架梁接近顶部。通过三种不同的传感器放置来检查结构的整体动态响应,旨在突出三种不同的行为:i)行车道,ii)弯曲行为的全球行为和III)横向中的横向之一行车道。在环境振动测试期间收集的数据通过随机子空间识别协方差处理,以便估计模态参数。将实验确定的自然频率和模式形状与用具有用于设计目的的预测有限元模型而获得的数值确定,然后用模型略微修改,以考虑高架桥的实际操作条件,就刚度和质量而言。精致的模型更新正在进行以修复计划的结构健康监控程序所需的基准。

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