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Live-Load Testing of a Steel Cantilevered Deck Arched Pratt Truss Bridge

机译:钢悬臂式甲板普拉特桁架桥的活载试验

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The Kettle River Bridge is an arched, steel cantilevered deck, Pratt Truss Bridge. In order to quantify the live-load performance of the bridge superstructure and provide a baseline for future comparisons, it was instrumented with 151 strain gauges on various beam, stringer and truss members. In addition, eight vertical displacement gauges were attached along the truss. All gauges were simultaneously monitored as the bridge was subjected to a non-destructive, live-load test. The recorded bridge response was analyzed to quantify in-situ behavior. The measured behavior was then used to validate a finite-element model using solid and frame elements, which was subsequently used to obtain an inventory and operating load rating of 2.03, and 2.64, respectively. Based on the results of the test, it was concluded that the large gusset plates added partial fixity to the truss members demonstrated by the significant measured in-plane bending strains. However, the beam-and-stringer deck support system behaved nearly simply supported between consecutive panels. The actual bridge distribution factors were found to be conservative, in comparison to those calculated according the AASHTO LRFD Specifications, by 17 to 44%.
机译:水壶河桥是一座拱形的钢悬臂式甲板,普拉特桁架桥。为了量化桥梁上层结构的活载性能并提供未来比较的基线,它在各种梁,纵梁和桁架成员上用151个应变计进行了仪器。另外,沿着桁架附着八个垂直位移量。随着桥接桥接造成无损,活载试验,同时监测所有仪表。分析记录的桥梁响应以量化原位行为。然后使用测量的行为来使用固体和框架元件验证有限元模型,其随后用于分别获得2.03和2.64的库存和操作负荷等级。基于测试的结果,得出结论是,大型角撑板板向桁架构件添加了部分固定性,通过显着的平面弯曲菌株所示。然而,光束和磨床甲板支撑系统表现几乎简单地支持在连续的面板之间。与根据AASHTO LRFD规范计算的人相比,发现实际的桥接分布因子是保守的,达到17%至44%。

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