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Bridge Decks with Precast UHPC Waffle Panels: A Field Evaluation and Design Optimization

机译:预制UHPC华夫格面板的桥面板:现场评估和设计优化

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The first full-depth precast ultrahigh-performance concrete (UHPC) waffle panels have been designed and implemented in a bridge replacement project to use accelerated bridge construction and increase bridge deck longevity. This paper first evaluates the structural performance of this bridge using a combination of field live-load testing and analytical modeling. The collected data for vertical deflections and strains at discrete critical locations on the bridge deck, subjected to static and dynamic truck loads, demonstrated satisfactory performance of the bridge deck and correlated well with the results obtained from the analytical model. Thereupon, options to optimize the bridge deck are examined to minimize the UHPC volume and associated labor costs. Using the analytical model, an optimization of the waffle panels was undertaken by varying the number of ribs as well as spacing between the ribs. An optimized panel was achieved by reducing the interior ribs per panel from four to two, or zero, in the longitudinal direction and six to two in the transverse direction, without compromising the panel's structural performance. (c) 2015 American Society of Civil Engineers.
机译:已在桥梁更换项目中设计并实施了首个全深度预制超高性能混凝土(UHPC)华夫格面板,以使用加速的桥梁建设并增加桥梁甲板的使用寿命。本文首先结合现场活荷载测试和分析建模来评估该桥梁的结构性能。在静载和动载荷载作用下,桥面离散关键位置处的竖向挠度和应变的采集数据显示了桥面的令人满意的性能,并且与分析模型获得的结果很好地相关。随后,研究了优化桥面板的选项,以最大程度地减少UHPC量和相关的人工成本。使用分析模型,通过改变肋的数量以及肋之间的间距来对华夫饼干面板进行优化。通过在不损害面板的结构性能的情况下,将每个面板的内部肋在纵向上从四个减少到两个或零个,在横向上从六个减少到两个,来获得优化的面板。 (c)2015年美国土木工程师学会。

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