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Measured behavior of a curved composite I-girder bridge

机译:弯曲的组合工字梁桥的实测特性

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Current techniques for the rating of horizontally curved composite steel girder bridges often use approximate methods of linear elastic analysis based on the assessment of individual straight girders with altered properties to account for member curvature. This paper summarizes measured versus computed results from a field test with heavy live load conducted on a multi-span, horizontally curved composite steel I-girder bridge in Duluth, Minnesota. Eight 320 kN (72,000 lb) trucks were placed on the bridge in 43 static and 13 dynamic loading configurations, and the results were compared to those obtained from linear elastic grillage analyses. Stresses up to 75% of the girder yield stress were obtained in the bridge, whose design was controlled by strength, thus representing some of the largest stresses ever achieved in an instrumented curved steel girder bridge, and behavior is described in the girders, diaphragms, lateral wind bracing, deck, bearings, and fatigue details. Grillage analyses are developed and used to corroborate the results and assess the accuracy of these procedures for load rating of bridges.
机译:当前的水平弯曲复合钢梁桥等级评定技术通常基于评估具有变化特性的单个直梁的线性弹性分析的近似方法,以考虑构件曲率。本文总结了在明尼苏达州德卢斯的多跨水平弯曲复合工字钢大梁桥上进行的重载现场测试的实测结果与计算结果。将八辆320 kN(72,000 lb)的卡车以43种静态和13种动态载荷配置放在桥上,并将结果与​​通过线性弹性格栅分析获得的结果进行比较。在桥梁中获得的应力高达梁屈服应力的75%,其设计受强度控制,因此代表了在有工具的弯曲钢制梁桥中获得的一些最大应力,其性能在梁,隔板,横向风撑,甲板,轴承和疲劳细节。进行了格栅分析,并用于证实结果并评估这些程序对桥梁额定载荷的准确性。

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