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Probability of Failure Analysis due to Internal Corrosion in Cast-Iron Pipes

机译:铸铁管内腐蚀引起的失效分析概率

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摘要

In cast-iron pipes, chlorine consumption due to internal corrosion is high compared with consumption caused by other water-quality factors in such systems and may be considered as an approximate indicator of the rate of internal corrosion. Herein, a relationship is developed that determines the rate of internal corrosion as a function of the chlorine concentration, the chlorine decay constant, and the velocity of the water in a pipe segment with a given length and diameter. These factors may be considered uncertain at any given time and the probability of mechanical failure due to the thinness of the pipe wall caused by internal corrosion throughout the pipe life is estimated using Monte Carlo simulation, the first-order reliability method, and the second-order reliability method to account for these uncertainties. The results indicate that the likelihood of failure is nearly 50% by the 80th year for a cast-iron pipe length of 6 m and a diameter of 203 mm, and that the affect of internal corrosion on the pipe wall thickness and thus mechanical failure is lower than, but on the same order of magnitude as, the effect of external corrosion.
机译:在铸铁管中,与此类系统中其他水质因素引起的消耗相比,内部腐蚀引起的氯消耗量高,可以视为内部腐蚀率的近似指标。在此,建立了一种关系,该关系确定了内部腐蚀的速率与氯浓度,氯衰减常数以及给定长度和直径的管段中水的速度的关系。可以在任何给定时间将这些因素视为不确定因素,并且可以使用蒙特卡洛模拟,一阶可靠性方法和二阶可靠性方法来估算由于整个管道寿命内的内部腐蚀而导致的由管壁薄造成的机械故障的可能性。阶可靠性方法来解决这些不确定性。结果表明,到80年代,铸铁管长度为6 m,直径为203 mm时,失效的可能性接近50%,内部腐蚀对管壁厚度的影响也因此是机械失效的原因。低于外部腐蚀的影响,但幅度相同。

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