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Frequency Spectrum Method-Based Stress Analysis for Oil Pipelines in Earthquake Disaster Areas

机译:基于频谱法的地震灾区输油管道应力分析

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摘要

When a long distance oil pipeline crosses an earthquake disaster area, inertial force and strong ground motion can cause the pipeline stress to exceed the failure limit, resulting in bending and deformation failure. To date, researchers have performed limited safety analyses of oil pipelines in earthquake disaster areas that include stress analysis. Therefore, using the spectrum method and theory of one-dimensional beam units, CAESAR II is used to perform a dynamic earthquake analysis for an oil pipeline in the XX earthquake disaster area. This software is used to determine if the displacement and stress of the pipeline meet the standards when subjected to a strong earthquake. After performing the numerical analysis, the primary seismic action axial, longitudinal and horizontal displacement directions and the critical section of the pipeline can be located. Feasible project enhancement suggestions based on the analysis results are proposed. The designer is able to utilize this stress analysis method to perform an ultimate design for an oil pipeline in earthquake disaster areas; therefore, improving the safe operation of the pipeline.
机译:当长距离输油管道穿越地震灾区时,惯性力和强烈的地面运动会导致管道应力超过破坏极限,从而导致弯曲和变形破坏。迄今为止,研究人员对地震灾区的输油管道进行了有限的安全分析,其中包括应力分析。因此,利用频谱方法和一维梁单元理论,利用CAESAR II对XX地震灾区的输油管道进行了动态地震分析。该软件用于确定发生强烈地震时管道的位移和应力是否符合标准。进行数值分析后,可以确定主要地震作用的轴向,纵向和水平位移方向以及管道的临界截面。根据分析结果,提出了可行的项目改进建议。设计人员能够利用这种应力分析方法对地震灾区的输油管道进行最终设计。因此,提高了管道的安全运行。

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