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Critical Truck Loading Pattern to Maximize Live Load Effects in Skewed Integral Bridges

机译:关键的卡车装载模式,可最大化偏斜整体桥的活载效应

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摘要

An integral bridge (IB) is one in which the abutments are cast monolithically with the deck to form a rigid frame structure. When the geometry and conditions do not allow for designing straight IBs, skewed IBs (SIBs) are designed. Current bridge design specifications are mainly developed for regular jointed bridges. Thus, provisions for SIBs have not been included in these specifications yet. Consequently, to determine live load effects in SIB components, many practicing engineers built a three-dimensional (3D) finite element model (FEM). In this study, various multiple design truck loading patterns are investigated to determine the most critical loading pattern producing the maximum live load effects in SIB components. The results of the analyses reveal that in the case of SIBs, different truck loading patterns arise when compared to bridges with no skew. Trucks that are placed diagonally across the width of the bridge are observed to produce the most unfavorable live load effects in bridge components.
机译:一体式桥(IB)是其中桥台与桥板整体浇铸以形成刚性框架结构的桥。如果几何形状和条件不允许设计直型IB,则设计倾斜的IB(SIB)。当前的桥梁设计规范主要针对常规节理桥梁而制定。因此,SIB的规定尚未包括在这些规范中。因此,为了确定SIB组件中的活荷载效应,许多实践工程师构建了三维(3D)有限元模型(FEM)。在这项研究中,研究了多种设计卡车的装载模式,以确定最关键的装载模式,从而在SIB组件中产生最大的活载效果。分析结果表明,在SIB的情况下,与无偏斜的桥梁相比,卡车的装载方式会有所不同。观察到斜跨过桥宽度放置的卡车会在桥部件中产生最不利的活荷载效应。

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