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AN ANALYSIS MODEL AND ITS PRACTICAL APPLICATIONS IN PGE GAS TRANSMISSION PIPELINE STRENGTH TEST PROJECTS

机译:PG&E燃气传输管道强度试验项目中的分析模型及其实际应用

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This article presents a complete set of calculations (referred to as Model) PG&E developed to monitor, assess and approve strength tests on insitu (pipelines currently in service) gas transmission pipelines. How the Model is used in the field, 2017 test results, and process improvements that resulted from the implementation of the model are also discussed. In compliance with CPUC directives, the Code of Federal Regulations and PG&E's internal standards, PGE has performed strength tests on approximately 1,100 miles of insitu pipelines from 2011 through 2017. The model was specifically designed to assess the strength test of a closed section of gas pipeline for both leaks and ruptures. The model was originally designed for strength tests using water as the test medium and updated to accommodate nitrogen as a test medium. A future enhancement will be to incorporate a blend of Nitrogen and Helium as the test medium. The model plots the pressure-temperature and pressure-volume curves over the test duration (field test measurements) and compares them to the theoretically calculated curves. The curves are used to determine if the change in pressure is due to temperature influence or leakage. When water is the test medium, the model calculates the net corrected medium volume change from start to end of the static test period. When nitrogen is the test medium, the model calculates and analyzes net mass change of the medium by considering nitrogen under both the real gas state and the ideal gas state. By calculating restrained (buried) pipeline section and unrestrained (exposed) pipeline section separately, the model gains more accuracy. Accurate temperature measurements play a critical role in the model. The model makes it possible for engineers to monitor, analyze and direct strength tests with real-time test data. The model is also used to evaluate the pipeline fill condition on the day prior to the actual test, which resulted in fewer test restarts due to incomplete fill or temperature stabilization issues. An additional benefit is the tests were typically completed earlier in the day. The model is utilized on all PG&E insitu pipeline strength projects today. Authors also provide improvement suggestions of this model in future application.
机译:本文介绍了一套完整的计算(称为型号)PG&E,用于监控,评估和批准Insitu(目前在服务中的管道)燃气传输管道的实力测试。还讨论了如何在现场使用该模型,2017年测试结果,并讨论了由模型实现产生的过程改进。符合CPUC指令,联邦法规和PG&E的内部标准,PGE从2011年到2017年的Insitu管道大约1,100英里的Insitu管道进行了实力测试。该模型专门设计用于评估煤气管道封闭部分的强度试验对于泄漏和破裂。该模型最初设计用于使用水作为测试介质的强度测试,并更新以适应氮作为测试介质。未来的增强将是将氮气和氦的混合物掺入作为测试介质。模型在测试持续时间(现场测试测量值)上绘制压力温度和压力体积曲线,并将其与理论计算的曲线进行比较。曲线用于确定压力变化是否是由于温度影响或泄漏的变化。当水是测试介质时,该模型计算从静态测试期的开始到结束的净校正的媒体体积。当氮是试验介质时,通过考虑在真实气体状态和理想气体状态下考虑氮来计算和分析培养基的净质量变化。通过计算受限制的(埋地)管道部分和不受限制的(曝光)管道部分,模型更准确。精确的温度测量在模型中发挥着关键作用。该模型使工程师可以通过实时测试数据监控,分析和直接强度测试。该模型还用于评估实际测试前一天的管道填充条件,导致由于不完全填充或温度稳定问题而导致的测试重启较少。额外的好处是测试通常在当天早些时候完成。本型号用于今天所有PG&E Insitu管道强度项目。作者还在将来的应用中提供了该模型的改进建议。

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