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Deflection of in-span hinges in prestressed concrete box girder bridges during construction

机译:施工期间预应力混凝土箱梁桥跨跨铰链的挠度

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Multi-span cast-in-place (CIP) post-tensioned concrete (PS) box girder bridges undergo upward deflection (curl) at hinges due to post-tensioning forces. Adjustments in falsework height are often necessary in the field to address the curl and avoid bumps, which cause traffic safety concerns and present a road hazard. A current method to estimate hinge curl has often led to results that are significantly different than those measured in the field thus causing construction delays and costly change orders. The main purpose of the study presented in this article was to measure bridge deflections at and near in-span hinges in ten hinges within five bridges during construction over a period of several months and compare the results with the current theory. Based on the analysis of data, the correlation between the measured and calculated data was studied. Both short-term and time-dependent hinge curls were evaluated. Substantial differences between the field and theoretical data were observed and quantified. The data was used to identify the causes for the differences and directions for development of a new method to more accurately estimate hinge curl. A new method was developed as part of this study to address the sources of differences. Description of the new method, however, is beyond the scope and page limits of the current article. (C) 2016 Elsevier Ltd. All rights reserved.
机译:多跨现浇(CIP)后张预应力混凝土(PS)箱梁桥由于后张力而在铰链处经历向上挠曲(弯曲)。在现场,经常需要调整靠背高度,以解决卷曲并避免颠簸,颠簸引起交通安全隐患并造成道路危险。当前估计铰链弯曲的方法通常导致结果与现场测量的结果明显不同,从而导致施工延迟和昂贵的变更单。本文提出的研究的主要目的是在几个月的建设过程中测量五座桥梁中十个铰链中跨度铰链及其附近的桥梁挠度,并将结果与​​当前理论进行比较。基于数据分析,研究了测量数据与计算数据之间的相关性。评估了短期和时间相关的铰链卷曲。现场和理论数据之间的重大差异被观察和量化。该数据用于确定差异的原因和开发新方法以更准确地估计铰链卷曲的方向。作为本研究的一部分,开发了一种新方法来解决差异的来源。但是,对新方法的描述超出了当前文章的范围和页数限制。 (C)2016 Elsevier Ltd.保留所有权利。

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