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Permeation Damage of Polymer Liner in Oil and Gas Pipelines: A Review

机译:油气管道中聚合物衬垫的渗透损伤:综述

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摘要

Non-metallic pipe (NMP) materials are used as an internal lining and standalone pipes in the oil and gas industry, constituting an emerging corrosion strategy. The NMP materials are inherently susceptible to gradual damage due to creep, fatigue, permeation, processing defects, and installation blunder. In the presence of acid gases (CO2, H2S), and hydrocarbons under high pressure and temperature, the main damage is due to permeation. The monitoring of possible damage due to permeation is not well defined, which leads to uncertainty in asset integrity management. Assessment of permeation damage is currently performed through mechanical, thermal, chemical, and structural properties, employing Tensile Test, Differential Scanning Calorimetry (DSC), Fourier-transform Infrared Spectroscopy (FTIR), and Scanning Electron Microscopy (SEM)/Transmission Electron Microscopy (TEM), to evaluate the change in tensile strength, elongation, weight loss or gain, crystallinity, chemical properties, and molecular structure. Coupons are commonly used to analyze the degradation of polymers. They are point sensors and did not give real-time information. Polymers are dielectric materials, and this dielectric property can be studied using Impedance Analyzer and Dielectric Spectroscopy. This review presents a brief status report on the failure of polymer liners in pipelines due to the exposure of acid gases, hydrocarbons, and other contaminants. Permeation, liner failures, the importance of monitoring, and new exclusive (dielectric) property are briefly discussed. An inclusive perspective is provided, showing the challenges associated with the monitoring of the polymer liner material in the pipeline as it relates to the life-time prediction requirement.
机译:非金属管(NMP)材料用作石油和天然气工业中的内衬和独立管道,构成出现的腐蚀策略。由于蠕变,疲劳,渗透,加工缺陷和安装脱落,NMP材料本质上易于逐渐损坏。在高压和温度下存在酸性气体(CO 2,H 2 S)和烃基,主要损坏是由于渗透性的。对渗透引起的可能损坏的监测没有很好地定义,这导致资产完整性管理中的不确定性导致不确定性。目前通过机械,热,化学和结构性能进行渗透损坏的评估,采用拉伸试验,差示扫描量热法(DSC),傅立叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)/透射电子显微镜( TEM),评估拉伸强度,伸长,减肥或增益,结晶度,化学性质和分子结构的变化。优惠券通常用于分析聚合物的劣化。它们是点传感器,没有提供实时信息。聚合物是介电材料,并且可以使用阻抗分析仪和介电光谱来研究该电介质性能。本综述提出了由于酸性气体,碳氢化合物和其他污染物的暴露而导致管道中聚合物衬里失效的简要状态报告。简要讨论了渗透,衬垫故障,监测的重要性和新的独家(电介质)财产。提供了一种包容性观点,显示出与管道中的聚合物衬里材料的监测相关的挑战,因为它涉及寿命预测要求。

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