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Investigation of Empirical Deck Design in Bridge Widening

机译:桥梁拓宽经验甲板设计研究

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This paper presents the results from an investigation into the performance of concrete bridge decks designed with the empirical design method. Compressive membrane/arching action (CMAA) behavior in bridge decks has been known for many years and has been adopted in design codes by some countries. AASHTO LRFD Bridge Design Specifications have provisions that allow the use of the empirical deck design method, which is based on CMAA. Despite the savings in deck reinforcement that the empirical method offers compared with the traditional method, the majority of state departments of transportation (DOTs) do not allow the use of the empirical method. In part, this is due to the fact that some of the current method limitations (e.g., lack of sufficient overhang length) are impossible to satisfy in phased construction and future widening scenarios. In this study, the performance of concrete bridge decks designed with the empirical design method was investigated through extensive experimental testing of a full-size specimen. The fabricated deck specimen mimicked a widening scenario, where the deck was supported on two prestressed concrete Florida I-Beams. Nine tests were conducted at different locations along the bridge deck under service and failure load levels. The results show that deck slabs designed according to the empirical design method are capable of meeting AASHTO LRFD serviceability and strength requirements. The outcome of this research study provides information to DOT officials regarding the feasibility of using the empirical method for the design of bridge decks under conditions not currently covered by AASHTO LRFD provisions.
机译:本文介绍了采用经验设计方法设计的混凝土桥甲板的性能的调查结果。桥式甲板中的压缩膜/拱形动作(CMAA)行为多年来已知,并已在某些国家设计代码中采用。 AASHTO LRFD桥梁设计规范具有允许使用基于CMAA的经验甲板设计方法的规定。尽管甲板增强率储蓄,但经验方法提供与传统方法相比,大多数国家运输部门(点)不允许使用经验方法。部分地,这是由于某些当前方法限制(例如,缺乏足够的悬垂长度)是不可能满足相位建设和未来的扩大情景。在这项研究中,通过对全尺寸样本进行了广泛的实验测试,研究了用经验设计方法设计的混凝土桥甲板的性能。制造的甲板标本模仿了一个扩大的情景,其中甲板被支持在两个预应力混凝土佛罗里达i-梁上。在沿桥甲板的不同位置进行九个测试,在使用的服务和失败负载水平。结果表明,根据经验设计方法设计的甲板平板能够满足AASHTO LRFD可维护性和强度要求。本研究研究的结果为DOT官员提供了有关使用桥甲板设计的实证方法的可行性的信息,根据AASHTO LRFD规定的条件下的桥甲板设计。

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