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The Effect of Traffic Growth on Characteristic Bridge Load Effects

机译:流量增长对特征桥梁荷载效应的影响

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摘要

Freight traffic in the European Union is increasing with time. This paper describes a method for considering this growth when assessing traffic loading on bridges and examines the effect of this growth on characteristic load effects. The Eurocode Load Model 1 is used for the design of new bridges. As this model can be overly conservative for the assessment of existing bridges, a scaled down version can be used by applying a–factors to the load model. This is usually done by modelling the traffic loading on the bridge using site-specific weigh-in-motion data and calculating the a–factors in accordance with the results. In this paper, weigh-in-motion data from a site in the Netherlands is used to demonstrate the proposed approach. 40-year simulations of traffic loading are performed on various bridges. The simulations consider year-on-year growth in both the volume and weight of trucks. Time-varying generalized extreme value distributions are then fitted to the simulated data and used to calculate the characteristic load effects. The results are then compared with the load effects generated by Load Model 1 in order to calculate the associated factors. It is found that an increase in truck weights has the most significant influence on the factors but that increased flow also has a significant effect.
机译:欧盟的货运量随着时间而增加。本文介绍了一种在评估桥梁上的交通负载时考虑这种增长的方法,并研究了这种增长对特征性负载效应的影响。 Eurocode负载模型1用于设计新桥。由于此模型对于评估现有桥梁可能过于保守,因此可以通过将a-因子应用于荷载模型来使用缩小版本。通常,这可以通过使用特定于站点的运动中权重数据对桥上的交通负荷进行建模,并根据结果计算a因子来完成。在本文中,使用了来自荷兰某工厂的动态称重数据来演示所提出的方法。在各种桥梁上进行了40年的交通负荷模拟。模拟考虑了卡车体积和重量的逐年增长。然后将时变的广义极值分布拟合到模拟数据中,并用于计算特征载荷效应。然后将结果与负载模型1生成的负载效果进行比较,以计算相关因素。发现卡车重量的增加对这些因素影响最大,但是流量的增加也具有重要的影响。

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