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首页> 外文期刊>The Open Civil Engineering Journal >Optimization and Stress Analysis of Underground Oil Pipelines in High and Steep Slope Areas
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Optimization and Stress Analysis of Underground Oil Pipelines in High and Steep Slope Areas

机译:高陡坡区地下输油管道的优化与应力分析

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Underground oil pipelines are made of pressurized pipes, and when damage occurs, the consequences can be disastrous. Pipeline accidents caused by stress can be attributed to material corrosion, impractical design, manufacturing defect, environmental damage, and man-made destruction. In this study, by utilizing the stress analysis software CAESAR II, the stress of pipelines in high and steep slope areas was analyzed under the same operating conditions and different piping technologies. Comparing the different simulation consequences of each pipeline technology, an optimized laying process was proposed to reduce the stress of underground oil pipelines in high and steep slope areas; this process was named Sectional Pipe Laying Process. According to the results of CAESAR II, the stress and movement of underground oil pipelines in high and steep slope areas were drastically reduced and the safety greatly enhanced.
机译:地下输油管道是由压力管道制成的,当发生损坏时,后果可能是灾难性的。应力引起的管道事故可归因于材料腐蚀,不切实际的设计,制造缺陷,环境破坏和人为破坏。在这项研究中,通过使用应力分析软件CAESAR II,在相同的工作条件和不同的管道技术下,分析了高陡坡度地区的管道应力。比较每种管道技术的不同模拟结果,提出了一种优化的铺设工艺,以减少高陡坡度地区地下石油管道的应力。该过程称为分段管道铺设过程。根据CAESAR II的结果,高陡坡度地区的地下输油管道的应力和运动得到了大大降低,安全性大大提高。

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