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Improved definition of dynamic load allowance factor for highway bridges

机译:改进公路桥梁动荷载允许系数的定义

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The main objective of this paper is to study the dynamic load allowance (DLA) calculation methods for bridges according to the dynamic response curve. A simply-supported concrete bridge with a smooth road surface was taken as an example. A half-vehicle model was employed to calculate the dynamic response of deflection and bending moment in the mid-span section under different vehicle speeds using the vehicle-bridge coupling method. Firstly, DLAs from the conventional methods and code provisions were analyzed and critically evaluated. Then, two improved computing approaches for DLA were proposed. In the first approach, the maximum dynamic response and its corresponding static response or its corresponding minimum response were selected to calculate DLA. The second approach utilized weighted average method to take account of multi-local DLAs. Finally, the DLAs from two approaches were compared with those from other methods. The results show that DLAs obtained from the proposed approaches are greater than those from the conventional methods, which indicate that the current conventional methods underestimate the dynamic response of the structure. The authors recommend that the weighted average method based on experiments be used to compute DLAs because it can reflect the vehicle's whole impact on the bridge.
机译:本文的主要目的是研究根据动态响应曲线计算桥梁的动载量(DLA)的方法。以具有光滑路面的简支混凝土桥为例。采用半车模型,采用车桥耦合方法,计算了不同车速下中跨段挠度和弯矩的动力响应。首先,对传统方法和规范中的DLA进行了分析和严格评估。然后,提出了两种改进的DLA计算方法。在第一种方法中,选择最大动态响应及其对应的静态响应或对应的最小响应来计算DLA。第二种方法利用加权平均法来考虑多本地DLA。最后,将两种方法的DLA与其他方法的DLA进行了比较。结果表明,从所提出的方法获得的DLA大于从常规方法获得的DLA,这表明当前的常规方法低估了结构的动力响应。作者建议将基于实验的加权平均方法用于计算DLA,因为它可以反映车辆对桥梁的整体影响。

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