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Integration of in-situ load experiments and numerical modeling in a long-term bridge monitoring system on a newly-constructed widened section of freeway in Taiwan

机译:台湾新建高速公路加宽段长期桥梁监控系统中的现场荷载试验与数值模拟的集成

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摘要

The widening project on Freeway No.1 in Taiwan has a total length of roughly 14 kilometers, and includes three special bridges, namely a 216 m long-span bridge crossing the original freeway, an F-bent double decked bridge in a co-constructed section, and a steel and prestressed concrete composite bridge. This study employed in-situ monitoring in conjunction with numerical modeling to establish a real-time monitoring system for the three bridges. In order to determine the initial static and dynamic behavior of the real bridges, forced vibration experiments, in-situ static load experiments, and dynamic load experiments were first carried out on the newly-constructed bridges before they went into use. Structural models of the bridges were then established using the fmite element method, and in-situ vehicle load weight, arrangement, and speed were taken into consideration when performing comparisons employing data obtained from experimental measurements. The results showed consistency between the analytical simulations and experimental data. After determining a bridge's initial state, the proposed in-situ monitoring system, which is employed in conjunction with the established fmite element model, can be utilized to assess the safety of a bridge's members, providing useful reference information to bridge management agencies.
机译:台湾第一高速公路的拓宽工程全长约14公里,包括三座特殊的桥梁,即穿越原高速公路的216 m长跨度桥梁,共同建造的F型双层桥截面,以及钢和预应力混凝土复合桥。这项研究采用了现场监测与数值建模相结合的方法,为三座桥梁建立了实时监测系统。为了确定实际桥梁的初始静动力特性,在新建桥梁投入使用之前,首先对其进行了强迫振动实验,现场静载荷实验和动载荷实验。然后,使用有限元法建立桥梁的结构模型,并在使用从实验测量获得的数据进行比较时,考虑到原位车辆的重量,布置和速度。结果表明分析模拟和实验数据之间的一致性。在确定桥梁的初始状态之后,可以结合所建立的有限元模型来使用拟议的现场监测系统,以评估桥梁成员的安全性,为桥梁管理机构提供有用的参考信息。

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