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Effect of Secondary Elements on Load Distribution in Prestressed Bridge Girders

机译:二次元素对预应力桥梁卷梁载荷分布的影响

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Secondary bridge elements, such as barriers, curbs, or diaphragms, are not accounted for when calculating the distribution of load effects to interior and exterior girders, using the American Association of State Highway and Transportation Officials (AASHTO) Load and Resistance Factor Design (LRFD) Bridge Design Specifications (AASHTO 2007). This paper shows that including the effect of barriers changes the distribution of loads and, therefore, bending moments in girders. The Florida Department of Transportation (FDOT) Structures Research Lab made field strain measurements on two bridges: a Florida Bulb-T girder bridge and an AASHTO Type IV girder bridge. The Florida Bulb-T bridge strain measurements were taken before and after barriers were placed, and the AASHTO girder bridge was tested only with the barriers. The bridge test results were used to calibrate finite element models, which showed that the barrier, the barrier joint, and the diaphragms affect both interior and exterior girder strains.
机译:诸如障碍物,路缘或隔膜的次级桥接元件不占用州立公路和运输官员(AASHTO)负载和电阻因子设计(LRFD)对内部和外部梁的分配对内部和外部梁的分配)桥梁设计规格(AASHTO 2007)。本文表明,包括屏障的效果改变了负荷的分布,因此,弯曲的梁弯曲。佛罗里达州运输部(电器)结构研究实验室在两座桥梁上进行了现场应变测量:佛罗里达灯泡-T梁桥和艾钟型IV梁桥。在放置屏障之前和之后采取佛罗里达灯泡-T桥梁应变测量,并且仅通过屏障进行乒乓梁桥。桥接测试结果用于校准有限元模型,这表明屏障,屏障接头和隔膜膜均影响内部和外部梁菌株。

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