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首页> 外文期刊>Advances in civil engineering >Optimization of Post-Tensioned Box Girder Bridges with Special Reference to Use of High-Strength Concrete Using AASHTO LRFD Method
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Optimization of Post-Tensioned Box Girder Bridges with Special Reference to Use of High-Strength Concrete Using AASHTO LRFD Method

机译:通过AASHTO LRFD方法对高强度混凝土的使用特别优化后张式箱梁桥的优化

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With the Federal Highway Administration-mandated implementation of the LRFD specifications, many state departments of transportation (DOTs) have already started implementing LRFD specifications as developed by the AASHTO. Many aspects of the LRFD specifications are being investigated by DOTs and researchers in order for seamless implementation for design and analysis purposes. This paper presents the investigation on several design aspects of post-tensioned box girder bridges designed by LRFD Specifications using conventional or High-Strength Concrete (HSC). A computer spreadsheet application was specifically developed for this investigation. It is capable of analysis, design, and cost evaluation of the superstructure for a cast-in-place post-tensioned box girder bridge. Optimal design of a post-tensioned box girder is achievable by correct selection of design variables. Cost evaluation of superstructures with different geometrical and material configurations has led to the development of optimum design charts for these types of superstructures. Variables used to develop these charts include, among others, span length, section depth, web spacing, tendon profile, and concrete strength. It was observed that HSC enables the achievement of significantly longer span lengths and/or longer web spacing that is not achievable when using normal strength concrete.
机译:随着联邦公路管理局强制实施LRFD规范,许多州交通运输部(DOT)已经开始实施由AASHTO开发的LRFD规范。 DOT和研究人员正在研究LRFD规范的许多方面,以实现设计和分析目的的无缝实现。本文介绍了根据LRFD规范使用传统或高强度混凝土(HSC)设计的后张式箱梁桥的几个设计方面的研究。为此调查专门开发了一个计算机电子表格应用程序。它能够对现浇后张式箱梁桥的上部结构进行分析,设计和成本评估。通过正确选择设计变量可以实现后张拉箱梁的最佳设计。具有不同几何形状和材料配置的上层建筑的成本评估已导致针对这些类型的上层建筑开发最佳设计图。用于绘制这些图表的变量包括跨度长度,截面深度,腹板间距,钢筋轮廓和混凝土强度。据观察,HSC可以实现更长的跨距长度和/或更长的腹板间距,而使用普通强度混凝土则无法实现。

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