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A Failure Risk-Based Culvert Renewal Prioritization Framework

机译:基于风险风险的涵洞续订优先级框架

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Transportation agencies are currently challenged to keep up with culvert infrastructure that is rapidly deteriorating due to lack of adequate maintenance and capital improvement. It is imperative for the transportation agencies to identify and rehabilitate deteriorated culverts prior to their failures. Among several concerns, lack of rational rehabilitation prioritization tools is foremost. Complicating this need further, current practices vary widely across the state departments of transportation (DOTs) which makes it difficult to develop a universal approach for prioritizing failing culverts. This paper presents and demonstrates a failure risk-based culvert prioritization approach that is compliant with the inspection procedures of the South Carolina DOT. The approach presented in this paper is specifically developed for reinforced concrete pipe (RCP) and corrugated metal pipe (CMP) materials because of their wide popularity. Outcomes from a survey of state DOTs informed the development of parametric weightings using the principles of analytical hierarchy process (AHP). Weightings developed for several critical inspection parameters are combined with the corresponding condition assessment scores to determine the failure criticality of culverts, which are subsequently combined with estimated failure consequences to determine failure risk estimates. The prioritization approach is demonstrated using the condition assessment scores of over 5200 culvert structures in South Carolina.
机译:运输机构目前挑战,以跟上涵洞基础设施,由于缺乏足够的维护和资本改善,这是迅速恶化的。运输机构必须在失败之前识别和恢复恶化的涵洞是必不可少的。在几个问题中,缺乏合理的康复优先级排序工具是最重要的。这种需要复杂化,目前的实践在国家运输部门(DOTS)中差异很大,这使得难以开发一个普遍的方法,以优先考虑失败的涵洞。本文提出并展示了基于风险的失败风险的涵洞优先级方法,符合南卡罗来纳州点的检查程序。本文提出的方法是针对钢筋混凝土管(RCP)和波纹金属管(CMP)材料而专门开发的方法,因为它们很广泛。使用分析层次处理(AHP)的原理,来自州点调查的结果从分析层次过程(AHP)的原理通知了参数加权的发展。为几个关键检查参数开发的重量与相应的条件评估分数相结合,以确定涵洞的故障临界性,随后与确定失败风险估算的估计失败后果相结合。利用南卡罗来纳州5200多个涵洞结构的条件评估分数证明了优先级方法。

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