POLYETHYLENE GAS PIPELINES: PRACTICAL POSSIBILITIES TECHNICAL DIAGNOSTICS

IF 0.3 Q4 ENGINEERING, CHEMICAL Chemical and Petroleum Engineering Pub Date : 2023-05-15 DOI:10.17122/ngdelo-2023-1-125-137
S. N. Martynenko, G. I. Zubailov
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Abstract

Technical diagnostics of in-service polyethylene-exhaust gas pipelines face a number of difficulties, since the existing methods of destructive control are not applicable for determining the mechanical and physical characteristics-stick of polyethylene pipes. The search for effective control methods that can most fully characterize the quality of pipe material and the interpretation of the results obtained are of scientific and practical interest. The article on the example of technical diagnostics of the polyethylene gas pipeline built in 1985 considers possible criteria for assessing the condition of pipes and their ranking by significance. It was found that polyethylene pipes produced during the development of their production did not always meet mandatory quality requirements and could have hidden defects in the form of inhomogeneities, cavities and cracks throughout the volume of pipe material. Based on the experimental studies carried out, it was shown that the pipe material during underground operation does not undergo significant changes in its initial characteristics. At the same time, it was noted that the pipe grades of polyethylene raw materials of the first generation had low resistance to slow crack growth, therefore, the presence of internal defects in the pipe material in owning value with the effect of concentrated loads can lead to premature loss of containment. The work carried out confirmed the possibility of a quantitative design assessment of the technical condition of the gas pipeline based on the results of destructive tests of pipes for long-term hydrostatic strength. The experimental data presented in the article are of interest to specialists who are faced with the need for expert assessment of the state of the pipes of the operated polyethylene gas wires and forecasting their service life.
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聚乙烯燃气管道:实用可能性技术诊断
在役聚乙烯排气管道的技术诊断面临许多困难,因为现有的破坏控制方法不适用于确定聚乙烯管道的机械和物理特性。寻找能够最充分地表征管道材料质量的有效控制方法并解释所获得的结果具有科学和实际意义。本文以1985年建成的聚乙烯输气管道的技术诊断为例,探讨了评价管道状况的可能标准及其重要性排序。调查发现,在生产过程中生产的聚乙烯管并不总是符合强制性的质量要求,并且可能在管道材料的整个体积中以不均匀、空洞和裂缝的形式存在隐藏缺陷。通过试验研究表明,在地下运行过程中,管道材料的初始特性没有发生明显变化。同时指出,第一代聚乙烯原料的管材等级对缓慢裂纹扩展的抵抗能力较低,因此,在集中荷载的作用下,管材内部缺陷在拥有值中的存在可能导致容器过早丧失。所进行的工作证实了根据管道长期静水强度破坏性试验结果对天然气管道技术状况进行定量设计评估的可能性。文章中提供的实验数据对需要对运行的聚乙烯气体导线的管道状态进行专家评估和预测其使用寿命的专家很有兴趣。
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来源期刊
Chemical and Petroleum Engineering
Chemical and Petroleum Engineering ENGINEERING, CHEMICAL-
CiteScore
0.60
自引率
33.30%
发文量
129
期刊介绍: Chemical and Petroleum Engineering publishes the latest research on Russian innovations in the field. Articles discuss developments in machinery and equipment, construction and design, processes, materials and corrosion control, and equipment-manufacturing technology. Chemical and Petroleum Engineering is a translation of the Russian journal Khimicheskoe i Neftegazovoe Mashinostroenie. The Russian Volume Year is published in English from April. All articles are peer-reviewed.
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