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Fatigue reliability-based analysis methods for the evaluation of steel bridge structures.

机译:基于疲劳可靠性的钢桥结构评估分析方法。

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摘要

The objective of this research study is three-fold: to evaluate the accuracy of current available fatigue load models for estimating the fatigue damage accumulation, to investigate alternative procedures in determining bridge responses under truck traffic loadings, and to develop a convenient fatigue evaluation procedure for steel bridge structures.; Truck traffic data collected from three different weigh-in-motion sites were simulated and used as input loadings for various analytical bridge models. Fatigue damage accumulations were computed based on Miner's hypothesis and compared with the damage predicted by current available fatigue truck models. The results indicate that fatigue damage can be notably overestimated in short span girders. Accordingly, new 3-axle and 4-axle fatigue trucks were developed. These new fatigue trucks have been shown to more accurately estimate the fatigue damage over a wide range of span lengths.; The potential of using traffic count data to estimate the gross weight of a fatigue truck was investigated from an analysis of the vehicle database. The developed statistics for use of traffic count data were compiled with the fatigue reliability concept to predict the fatigue life of two steel bridge structures. The use of traffic count data has been shown to predict cyclic lives relatively close to that predicted using WIM data and a 54-kip gross weight of the AASHTO fatigue truck. Therefore, this concept may be employed as another alternative in the evaluation. Additionally, strain gage data collected at the two structures were decomposed by two cycle counting procedures, one with and one without the racetrack method. The counting results reveal that effective stress ranges produced by the two procedures are not significantly different. This indicates that the racetrack method may be a useful tool to facilitate the counting procedure and significantly reduce the computational time required to predict the fatigue life.; Based upon the results obtained from the analysis of a given vehicle database and a parametric study of the fatigue limit state function, an evaluation procedure for the fatigue reliability-based analysis of steel bridge structures was developed. The procedure can be utilized to provide a remaining fatigue life with a prescribed confidence level.
机译:这项研究的目的是三方面的:评估当前可用的疲劳载荷模型来估计疲劳损伤累积的准确性,研究确定卡车交通载荷下桥梁响应的替代程序,以及开发一种方便的疲劳评估程序来评估疲劳载荷。钢桥结构。模拟了从三个不同的动态称重站点收集的卡车交通数据,并将其用作各种分析桥梁模型的输入载荷。基于Miner的假设计算疲劳损伤累积量,并将其与当前可用疲劳卡车模型预测的损伤相比较。结果表明,在短跨梁中,疲劳损伤可能会被高估。因此,开发了新的3轴和4轴疲劳卡车。这些新型的疲劳卡车已被证明可以更准确地估计跨度范围内的疲劳损伤。通过对车辆数据库的分析,研究了使用交通计数数据估算疲劳卡车总重的潜力。利用疲劳可靠性概念对使用的交通量数据的使用统计数据进行了编译,以预测两个钢桥结构的疲劳寿命。业已证明,交通量数据的使用可以预测周期寿命,与WIM数据和AASHTO疲劳卡车的总重54千磅的预测值相近。因此,该概念可以用作评估中的另一种选择。另外,在两个结构处收集的应变计数据通过两种循环计数程序进行分解,一种采用和不采用跑道方法。计数结果表明,两种方法产生的有效应力范围没有显着差异。这表明跑道方法可能是有助于计数程序并显着减少预测疲劳寿命所需的计算时间的有用工具。基于对给定车辆数据库的分析结果以及疲劳极限状态函数的参数研究得出的结果,开发了基于疲劳可靠性的钢桥结构分析评估程序。该程序可用于提供规定的置信度的剩余疲劳寿命。

著录项

  • 作者

    Chotickai, Piya.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 232 p.
  • 总页数 232
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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