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首页> 外文期刊>KSCE journal of civil engineering >A comparative study between structural properties of pre-tensioned inverted T-girder and actual post-tensioned box girder in bridge construction
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A comparative study between structural properties of pre-tensioned inverted T-girder and actual post-tensioned box girder in bridge construction

机译:桥梁施工中预张倒T梁与实际后张箱梁结构性能的比较研究。

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In this study a full scale 3D analysis of post-tensioned box section and pre-tensioned inverted T-girder section is carried out by considering only vertical loadings. The aim of this research is to investigate long span box Girder Bridge with pre-tensioned inverted T-girder using splicing technique. 4 lanes of 150m long (3 spans @ 50 m) post-tensioned box girder bridge with 12 cells and 13.54 m wide deck is considered as the bridge model and that the equivalent box section consists of 13 numbers of inverted pre-tensioned girder having two different lengths spliced at the points of inflection of continuous length of the bridge. The inverted T-girders are used to support the deck panel with superimposed load on it. The structural analysis of the bridge is done using CSi Bridge employing Integrated 3D Bridge Design Software based on finite element method for both longitudinal and transverse direction. In the analysis, AASHTO LRFD-2006 is used by subjecting Uniformly Distributed Load (UDL), edge loads, knife edge loads, and heavy vehicles load on the bridge deck. Moving vehicles load is placed at different locations to determine the maximum and minimum moments, stresses and flexural effects. Actual post-tensioned box section flexure, shear, torsion and stress in both longitudinal and transverse analyses showed lower values when compared to pre-tensioned inverted T-girder section. Assuming monolithic behaviour, the actual box section provided better stiffness rather than equivalent one. Nevertheless composite behaviour of the equivalent section can be accepted as an alternative solution for long span continuous box Girder Bridge where cost is a major factor in particular.
机译:在这项研究中,仅考虑垂直荷载即可对后张拉箱形截面和预张拉倒T梁进行全尺寸3D分析。这项研究的目的是利用拼接技术研究带有预应力倒T形梁的大跨度箱梁桥。 4条车道长150m(3跨距,跨度50m,3跨),具有12个单元和13.54m宽甲板的后张拉箱梁桥被认为是桥梁模型,等效箱形截面由13个倒置的预张梁组成,其中两个在桥的连续长度的拐点处拼接不同的长度。倒置的T型梁用于支撑甲板面板,使其承受叠加的载荷。桥梁的结构分析是使用CSi桥梁进行的,该桥梁采用基于有限元方法的纵向和横向双向集成3D桥梁设计软件。在分析中,使用AASHTO LRFD-2006是通过在桥面板上承受均匀分布的载荷(UDL),边缘载荷,刀刃载荷和重型车辆载荷来实现的。行驶中的车辆负载放置在不同的位置,以确定最大和最小力矩,应力和挠曲效应。在纵向和横向分析中,实际的预拉伸箱形截面挠曲,剪切,扭转和应力与预拉伸倒T型梁截面相比显示出较低的值。假设整体性能,实际的箱形截面提供了更好的刚度,而不是同等的刚度。然而,等效截面的复合特性可以作为大跨度连续箱形箱梁桥的替代解决方案,其中成本是一个特别重要的因素。

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