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Live-Load Behavior of a Twin I-Girder Bridge

机译:双梁桥的活载行为

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Very little data exists on the live-load behavior of twin-girder bridges despite their unique configuration and minimal redundancy. To investigate the live-load behavior of twin girder bridges, the State Highway 52 Bridge over the Snake River was instrumented and studied. The live-load response was monitored by attaching 62 strain gauges on girders, stringers, and intermediate diaphragms at nine cross-sectional locations. The live-load was applied with two trucks that were driven along three predetermined load paths. A finite-element model of the bridge was calibrated with the measured response from the live-load tests. The calibrated finite-element model was used to quantify moment distribution factors and load ratings for the bridge. The finite-element distribution factors were compared with those calculated according to methods provided in the AASHTO standard and LRFD specifications. The distribution factors from both specifications were found to be unconservative for the girders and overly conservative for the stringers. The model also was used to quantify the effect of the transverse diaphragm members on the live-load distribution. Distribution factors were calculated with and without the diaphragm members. The diaphragms were found to increase the distribution of moments by over 20% for both positive and negative moments.
机译:尽管其独特的配置和冗余最小,但是在双梁桥的活载行为上存在很少的数据。为了研究双梁桥的活载行为,蛇河上的52座桥52桥被仪表系和研究。通过在九个横截面位置附加62个应变计和中间隔膜,通过在九个横截面位置附加62个应变仪来监测活载响应。使用沿三个预定负载路径驱动的两辆卡车施加活载。通过从活载测试的测量响应校准桥的有限元模型。校准的有限元模型用于量化桥梁的力矩分布因子和负荷额定值。将有限元分布因子与根据AASHTO标准和LRFD规格中提供的方法计算的那些。发现来自两个规格的分布因子是针对桁架的难以置信,对桁条过度保守。该模型还用于量化横向隔膜成员对活载分布的影响。用膜片成员计算分布因子。发现膜片增加了正矩和负片的20%以上的瞬间。

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