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Performance Evaluation of Existing Bridges under Vehicle Dynamic Effects

机译:车辆动态效应下现有桥梁的性能评价

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This paper summarizes the recent work by the first author's research group related to the performance evaluation of existing bridges under vehicle dynamic effects. Based on the data from short-term monitoring of existing bridges, a framework to estimate the extreme structure responses from the live load in a mean recurrence interval is developed in the first part. The Gumbel distribution of the extreme values was derived from an extreme value theory and Monte Carlo Simulation. In the second part, a framework of fatigue damage and reliability assessment for existing bridges is presented to include the effects of the progressively deteriorated road conditions and random dynamic vehicle loads in bridge's life cycle. The random effects of vehicle speed and type, road profiles, and stress ranges are included. Studies have shown that the vehicle-induced dynamic allowance IM value prescribed by the AASHTO LRFD code may be underestimated under poor road surface conditions (RSCs) of some existing bridges. In addition, multiple dynamic stress ranges induced by vehicles cannot be included in the maximum displacement-based dynamic allowance IM values. In the third part of this paper, the reliability indices of a selected group of prestressed concrete girder bridges are calculated by modeling the IM explicitly as a random variable for different RSCs. Nevertheless, a reliability based dynamic amplification factor on stress ranges (DAFS) for fatigue design is proposed to include the fatigue damages from multiple stress range cycles due to each vehicle passage at varied vehicle speeds under various road conditions in the bridge's life cycle.
机译:本文总结了第一作者的研究组最近的工作与车辆动态效应下现有桥梁的性能评估相关的研究组。基于来自现有桥梁的短期监测的数据,在第一部分中开发了一种估计来自平均复发间隔的极端结构响应的框架。极值的Gumbel分布来自极值理论和蒙特卡罗模拟。在第二部分中,提出了一种疲劳损坏和现有桥梁可靠性评估的框架,包括逐步恶化的道路状况和桥梁生命周期中随机动态车辆负荷的影响。包括车速和类型,道路轮廓和应力范围的随机效应。研究表明,在一些现有桥的不良路面条件(RSC)下,由AASHTO LRFD码规定的车辆引起的动态允许IM值可能低估。此外,车辆引起的多个动态应力范围不能包含在基于最大位移的动态允许IM值中。在本文的第三部分中,通过将IM明确为不同RSC的随机变量将IM模拟来计算所选预应力混凝土梁桥的可靠性指数。然而,提出了基于对应力设计的可靠性的动态放大因子,用于疲劳设计的压力范围(DAF),包括由于在桥梁生命周期的各种道路条件下的各种路径上的每个车辆通道,从多个应力范围循环中疲劳损坏。

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