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首页> 外文期刊>Journal of Pipeline Systems Engineering and Practice >Assessing the Fracture Risk of Corroded Cast-Iron Pipes in Expansive Soils
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Assessing the Fracture Risk of Corroded Cast-Iron Pipes in Expansive Soils

机译:评估膨胀土中腐蚀铸铁管的骨折风险

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It is estimated that 82% of the cast-iron pipe stock in North American water distribution systems have outlived their useful service life. Previous studies have shown that moisture-induced soil expansion is a dominant failure mechanism in pipe stock buried in expansive soils; however, this risk has not yet been quantified formally. The purpose of this paper is to quantify the risk of fracture of cast-iron pipes subjected to moisture-induced soil loading. A recently developed mechanics-based pipe-soil interaction model and fracture mechanics with corrosion degradation are used to set up the reliability analysis. Monte Carlo simulation is implemented to synthesize various uncertainties into a probabilistic estimate of the failure of a pipe segment defined by its configurational parameters and age. It is observed that smaller-diameter pit-cast pipes are most at risk, and factors other than age may have a significant impact on pipe failure. The most influential input parameters are identified through a sensitivity analysis, and it is found that the contributions of corrosion parameters and soil expansion parameters to the failure probability are most significant. Limitations of the proposed framework and the areas where more research is needed are discussed in the end.
机译:据估计,北美水分配系统中82%的铸铁管道库存已经超出了其使用寿命。以前的研究表明,水分诱导的土壤膨胀是在膨胀土中埋出的管道股票的主要失效机制;然而,这种风险尚未正式量化。本文的目的是量化经受水分诱导土壤负荷的铸铁管骨折的风险。最近开发的基于机械的管土相互作用模型和骨折力学,用于建立可靠性分析。 Monte Carlo仿真被实施以将各种不确定性合成概率估计由其配置参数和年龄限定的管道段失败。观察到较小直径的坑铸造管是风险最大的,并且年龄以外的因素可能对管道失效产生显着影响。通过灵敏度分析确定最有影响力的输入参数,发现腐蚀参数和土壤膨胀参数对失效概率的贡献最为显着。最后讨论了拟议框架的限制以及需要更多研究的区域。

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