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Fatigue Assessment and Service Life Prediction of Existing Steel Bridges by Integrating SHM into a Probabilistic Bilinear S-N Approach

机译:将SHM集成到概率双线性S-N方法中的既有钢桥疲劳评估和使用寿命预测

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摘要

Fatigue assessment of several steel bridge details, having equivalent stress range below the constant amplitude fatigue threshold (CAFT), showed that many of these details are free of cracks, although the remaining life calculations predicted that they should have already been suffering from cracks. This shows that the current methods for predicting the fatigue remaining life of steel bridges can be conservative and may lead to unnecessary retrofit and rehabilitation actions. For a better fatigue life prediction, a bilinear S-N approach has been proposed. In this approach, the bilinear S-N lines have different slopes above and below the CAFT. This paper addresses fatigue assessment and service life prediction of existing fatigue-prone steel bridges by integrating structural health monitoring (SHM) data into a probabilistic bilinear S-N approach. The effect of changing the value of the slope of the AASHTO S-N lines below the CAFT on the fatigue life is investigated through a parametric study. In addition, an existing steel bridge is used to illustrate the proposed probabilistic approach.
机译:对等效应力范围低于恒定振幅疲劳阈值(CAFT)的钢桥几个细节进行疲劳评估表明,尽管剩余寿命计算表明它们应该已经遭受了裂纹,但是其中许多细节都没有裂纹。这表明,目前预测钢桥疲劳剩余寿命的方法可能是保守的,并可能导致不必要的改造和修复措施。为了更好地预测疲劳寿命,提出了一种双线性S-N方法。在这种方法中,双线性S-N线在CAFT上方和下方具有不同的斜率。本文通过将结构健康监测(SHM)数据集成到概率双线性S-N方法中,解决了现有易疲劳钢桥的疲劳评估和使用寿命预测。通过参数研究研究了改变CAFT以下的AASHTO S-N线的斜率值对疲劳寿命的影响。此外,现有的钢桥用于说明所提出的概率方法。

著录项

  • 来源
    《Journal of structural engineering》 |2013年第10期|1728-1740|共13页
  • 作者单位

    Dept. of Civil and Environmental Engi-neering, ATLSS Engineering Research Center, Lehigh Univ., 117 ATLSS Dr., Bethlehem, PA 18015-4729;

    Fazlur R. Khan Endowed Chair of Structural Engi-neering and Architecture, Dept. of Civil and Environmental Engineering,ATLSS Engineering Research Center, Lehigh Univ., 117 ATLSS Dr.,Bethlehem, PA 18015-4729 (corresponding author);

    Social Overhead Capital (SOC) Research Institute,Structural Engineering Research Division, Korea Institute of Construction Technology, 283, Goyangdae-Ro, Hsanseo-Gu, Goynag-Si, Gyeonggi-Do,Seoul 411-712, South Korea formerly, Graduate Research Assistant, Dept.of Civil and Environmental Engineering, ATLSS Engineering Research Center, Lehigh Univ., 117 ATLSS Dr., Bethlehem, PA 18015-4729;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Steel bridges; Fatigue life; Monitoring; Structural reliability;

    机译:钢桥;疲劳生活;监控;结构可靠性;

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