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首页> 外文期刊>Engineering Structures >E. Torroja's bridge: Tailored experimental setup for SHM of a historical bridge with a reduced number of sensors
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E. Torroja's bridge: Tailored experimental setup for SHM of a historical bridge with a reduced number of sensors

机译:E. Torroja的桥梁:针对减少传感器数量的历史桥梁的SHM量身定制的实验装置

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This paper presents the design of an experimental setup with a reduced number of sensors for the structural health monitoring of the historical bridge of Posadas (Cordoba, Spain), designed by the eminent engineer Eduardo Torroja in 1957. The motivation of this study stems from the need for safeguarding this piece of cultural heritage. In particular, the singularity of this historical construction, a steel-concrete composite typology consisting of a concrete deck slab and inverted bowstring steel trusses, makes continuous in-service condition assessment essential for its maintenance. Nevertheless, the application of existing continuous monitoring systems to such large-scale structures entails considerable investments as well as complex signal processing algorithms. Whereby the optimization of the number of sensors and their location is of the utmost interest. In this line, this work presents the application of an Optimal Sensor Placement (OSP) methodology to tailor an experimental setup for a cost-efficient continuous monitoring of the E. Torroja's bridge. Due to the fact that most OSP approaches are model-based, it is essential to count on a sufficiently accurate numerical model. To this aim, an extensive vibration-based operational modal analysis is first conducted with a large number of accelerometers. Afterward, a three-dimensional finite element model of the E. Torroja's bridge is updated on the basis of the experimentally identified dynamic properties with a genetic optimization algorithm. Finally, an optimal sensor placement methodology is utilized to design an experimental setup with a limited number of sensors for longterm monitoring purposes. The results demonstrate that few sensors are needed to accurately assess the main resonant frequencies and mode shapes.
机译:本文介绍了一种实验装置的设计,该装置的数量减少了,由著名工程师Eduardo Torroja于1957年设计,用于对Posadas(西班牙科多巴)的历史桥梁进行结构健康监测。该研究的动机源自于需要保护这一文化遗产。尤其是这种历史性建筑的奇异之处,即由混凝土面板和倒置弓弦式钢桁架组成的钢-混凝土复合类型,对于其维护而言,持续的运行状态评估至关重要。然而,将现有的连续监视系统应用于这种大型结构需要大量投资以及复杂的信号处理算法。因此,最重要的是优化传感器的数量及其位置。在这一方面,这项工作介绍了最佳传感器放置(OSP)方法的应用,以量身定制实验装置,以进行经济高效的E. Torroja桥连续监测。由于大多数OSP方法都是基于模型的事实,因此必须依靠足够准确的数值模型。为此,首先使用大量的加速度计进行了广泛的基于振动的运行模态分析。然后,根据实验确定的动态特性,使用遗传优化算法更新E. Torroja桥的三维有限元模型。最后,为了长期监测的目的,采用了最佳的传感器放置方法来设计具有有限数量传感器的实验装置。结果表明,几乎不需要传感器来准确评估主要谐振频率和模式形状。

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