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Probabilistic numerical evaluation of dynamic load allowance factors in steel modular bridges using a vehicle-bridge interaction model

机译:用车桥交互模型钢模形桥动态负荷津贴因子的概率数值评价

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摘要

A reliable evaluation of dynamic amplification effects is crucial in bridge design in order to achieve safer and economical solutions. In engineering practice, these effects are commonly taken into account through dynamic load allowance factors (IM) specified by the codes. However, some codes allow the calculation of these IM factors through more advanced dynamic analysis in order to achieve more realistic results. Therefore, a methodology to numerically evaluate the IM in bridges is described. The methodology is based on a vehicle-bridge interaction model that can take into account any configuration of pavement irregularities. A case study consisting of two modular steel bridges is presented. In order to reach a comprehensive characterization of the IM factors, a probabilistic analysis is conducted, taking into consideration the stochastic generation of random irregularity profiles based on pavement roughness and experimentally measured manufacturing imperfections, as well as a wide range of vehicle speeds. The results obtained in this study demonstrate the advantages of performing a probabilistic numerical evaluation of the IM factor in comparison to the use of pre-defined factors proposed by design codes. The consideration of IM factors based on probabilistic assessments can lead to relevant material savings in the design of steel modular bridges.
机译:可靠的动态放大效果评估在桥梁设计中至关重要,以实现更安全和经济的解决方案。在工程实践中,通常通过代码指定的动态负载津贴因子(IM)来考虑这些效果。然而,一些代码通过更高级的动态分析来计算这些IM因素,以实现更现实的结果。因此,描述了以数字方式评估桥梁的方法。该方法基于车辆桥接交互模型,可以考虑路面不规则的任何配置。提出了由两个模块化钢结构组成的案例研究。为了达到IM因素的全面表征,考虑到基于路面粗糙度的随机不规则性型材的随机产生以及实验测量的制造缺陷以及广泛的车速进行了概率分析。本研究中获得的结果证明了与使用设计代码提出的预定义因子的使用相比,执行IM因子的概率数值评估的优点。基于概率评估的IM因素的考虑可能导致钢模形桥梁设计中的相关材料。

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