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Stress analysis method for the large excavation of a river-crossing oil pipeline--A case study of Baiyang river oil pipeline

机译:跨江输油管道大开挖应力分析方法-以白洋河输油管道为例

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The primary cause of pipeline failure for the crossing oil pipeline is the accumulation of stress. However, there are very few research worked on the stress analysis of large excavation river-crossing oil pipelines. Nevertheless, in order to ensure that the pipeline is safe and sustainable, a stress analysis under operating conditions is necessary. In this study, we perform a numerical simulation of the Baiyang river oil pipeline with a large excavation using the finite element stress analysis software CAESAR II in which the pipeline’s stress distribution is analyzed. Through the engineering case study, we determined that under operating conditions the maximum stress is generated at the saddle weight, which indicates that this section of the river-crossing pipeline is the most dangerous. Through analysis and comparison of the Primary Stress, Secondary Stress and Equivalent Combined Stress, it was determined that the temperature difference is the primary factor for generating stress in an oil pipeline, whereas the internal pressure plays a lesser role in stress generation. After the factors affecting pipeline stress are analyzed, the results are translated into feasible solutions for engineering application, which will promote the sustainability and safety of oil transportation pipelines.
机译:穿越石油管道的管道故障的主要原因是应力的累积。但是,关于大型开挖跨江输油管道应力分析的研究很少。然而,为了确保管道安全和可持续,必须对运行条件下的应力进行分析。在这项研究中,我们使用有限元应力分析软件CAESAR II对大型开挖的白洋河输油管道进行了数值模拟,分析了管道的应力分布。通过工程案例研究,我们确定在操作条件下,鞍形重量会产生最大应力,这表明跨河管道的这一段是最危险的。通过对一次应力,二次应力和等效组合应力的分析比较,可以确定温度差是在输油管道中产生应力的主要因素,而内部压力在应力产生中的作用较小。在分析了影响管道应力的因素后,将结果转化为可行的工程应用解决方案,将促进输油管道的可持续性和安全性。

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