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首页> 外文期刊>Steel & Composite Structures: An International Journal >Analysis of the variability of deflection of a prestressed composite bridge deck
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Analysis of the variability of deflection of a prestressed composite bridge deck

机译:预应力复合桥面板挠度变化分析

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Nearly 400 composite railway bridge decks of a new kind belonging to the trough type with U-shaped cross section have been constructed in Belgium over the last fifteen years. The construction of these bridge decks is rather complex with the preflexion of precambered steel girders, the prestressing of a concrete slab and the addition of a 2~(nd) phase concrete. Until now, they have been designed with a classical computation method using a pseudo-elastic analysis with modular ratios. Globally, they perform according to the expectations but variability has been observed between the measured and the computed camber of these bridge decks just after the transfer of prestressing and also at long-term. A statistical analysis of the variability of the relative difference between the measured camber and the computed camber is made for a sample of 36 bridge decks using no less than 10 variables. The most significant variables to explain this variability at prestressing are the ratio between the maximum tensile stress reached in the steel girders during the preflexion and the yield strength and the type of steel girder. For the same sample, the long-term camber under permanent loading is computed by two methods and compared with measurements taken one or two years after the construction. The camber computed by the step-by-step method shows a better agreement with the measured camber than the camber computed by the classical method. The puipose of the paper is to report on the statistical analysis which was used to determine the most significant parameters to consider in the modeling in order to improve the prediction of the behaviour of these composite railway bridge decks.
机译:在过去的十五年中,比利时已经建造了近400种新型的槽形U型复合铁路桥面。这些桥面板的结构相当复杂,包括预拱形钢梁的预弯,混凝土板的预应力和第二相(nd)相混凝土的添加。到目前为止,它们是使用经典的计算方法进行设计的,该方法使用具有模数比的拟弹性分析。从总体上看,它们的性能符合预期,但是在预应力转移之后以及长期来看,这些桥面板的实测弯度和计算弯度之间都存在差异。对于不小于10个变量的36个桥面板的样本,对测量的弯度和计算的弯度之间的相对差异的变异性进行统计分析。解释这种预应力变化的最重要变量是预弯时钢梁中达到的最大拉应力与屈服强度和钢梁类型之间的比值。对于相同的样品,采用两种方法计算永久荷载下的长期弯度,并将其与施工后一两年进行的测量进行比较。与经典方法计算的外倾角相比,逐步方法计算出的外倾角与实测外倾角的一致性更好。本文的目的是报告统计分析,该统计分析用于确定建模中要考虑的最重要参数,以改善对这些复合铁路桥面板的性能的预测。

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