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In-Situ Field Measurements and Numerical Model Identification of a Multi-Span Steel Railway Bridge

机译:多跨钢铁路桥梁的现场测量与数值模型辨识

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In this paper, in situ field measurements and analytical model verification studies of a railway bridge that spans Karakaya Dam Lake between the cities of Malatya and Elazig in Turkey are presented. The bridge consists of 29 simply-supported steel trusses, each having a 64 m span length, giving a total bridge length of 2029.60 m. To understand the actual behaviour of the bridge, static and dynamic tests on the bridge spans were performed. The bridge was instrumented with strain-gauges mounted on the surface of the bridge members, accelerometers placed on the piers, abutments, and truss members and an optical laser based displacement sensor located at mid-span. Then, a three-dimensional finite element model of the bridge was generated using commercially available finite element analysis software using frame elements, a thick shell, and spring and rigid bar elements. The initial numerical model was calibrated using an optimization procedure based on automatically adjusting the spring constants and rigid bar rigidities with the help of MATLAB. Finally, the validity of the calibrated FE model was examined by the vertical displacement measurements.
机译:本文介绍了横跨土耳其马拉蒂亚市和埃拉泽格市之间跨越卡拉卡亚水坝湖的铁路桥梁的现场测量和分析模型验证研究。桥梁由29个简单支撑的钢桁架组成,每个桁架的跨度为64 m,桥梁的总长度为2029.60 m。为了了解桥梁的实际行为,对桥梁跨度进行了静态和动态测试。桥梁安装有安装在桥梁构件表面的应变仪,放置在桥墩,桥台和桁架构件上的加速度计以及位于中跨的基于光学激光的位移传感器。然后,使用市售的有限元分析软件,使用框架元素,厚壳以及弹簧和刚性杆元素,生成桥梁的三维有限元模型。初始数值模型是使用优化程序进行校准的,该过程基于借助MATLAB自动调整弹簧常数和刚性杆的刚度。最后,通过垂直位移测量来检验校准后的有限元模型的有效性。

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