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Effect of Shock Wave on Reliability of Buried Pipelines

机译:冲击波对埋地管道可靠性的影响

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The effects of varying distribution type of random variables and environmental, operational, and design random variables influenced by a shock wave caused from various origins on the failure probability are systematically investigated using the first order reliability method (FORM) for buried pipeline. It is found that the failure probability of the buried pipeline increases with faster P-wave velocity and slower S-wave velocity. The failure probability is estimated to be the largest for the Weibull distribution and the smallest for the lognormal distribution. A set of similar values of the failure probability for the normal distribution and lognormal distribution are noted. The normalized margin is defined and estimated. Furthermore, the normalized margin is used to predict the failure probability simply by using the fitting lines between the failure probability and the normalized margin.
机译:使用一阶可靠度方法(FORM)对埋藏管道进行了系统地研究,随机变量的分布类型以及环境,运行和设计随机变量的变化对破坏概率的影响均受到各种原因的影响。研究发现,随着P波速度的加快和S波速度的降低,埋地管道的破坏概率增大。估计故障概率对于威布尔分布最大,而对数正态分布最小。注意了一组正态分布和对数正态分布的故障概率相似值。定义并估计归一化余量。此外,归一化裕度仅通过使用故障概率和归一化裕度之间的拟合线即可用于预测故障概率。

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