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Remote Monitoring of Pitting Corrosion using a Next Generation Electric Field Mapping (EFM) System

机译:使用下一代电场映射(EFM)系统远程监控点蚀

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摘要

Pitting corrosion is one of the most serious problems in sour gas / oil pipelines and in crude oil refineries. Unlike generalized wall loss, pitting corrosion can grow at non-uniform rates and can rapidly proceed to full depth penetration. Such a loss of integrity can lead to leaks that cause production shutdowns, environmental damage, or in the worst case, loss of life. In practice, pitting corrosion is generally detected during pipeline inline inspection or during routine ultrasound scans undertaken as part of a maintenance program. Locations identified to exhibit pitting corrosion are then often risk ranked, and then either repaired or monitored depending on a variety of factors. Unfortunately, the sites where this type of corrosion frequently occurs are often inaccessible for frequent follow-up wall thickness inspections due to geographical remoteness or the need to the use of scaffolding to reach the site. This difficulty creates a need for an advanced internal corrosion monitoring system capable of remotely monitoring the progression of pitting corrosion. This paper describes a new pitting corrosion monitoring system based on the principal of Electric Field Mapping (EFM) and proceeds to describe recent results from an operational field installation of this technology.rnUsing this technique, remaining wall thickness is carefully mapped out within a pre-defined area of interest. The system indicates the presence of any generalized corrosion in addition to the location, width, and depth of individual pitting corrosion defects. Innovations of this new EFM system include the use of a robust pre-fabricated fiberglass shell that significantly reduces the installation time compared to earlier technologies; non-welded contacts that have minimal metallurgical impact; permanent, self-powered on-site data acquisition system equipped with cellular or satellite data communication. Design principles of this technique are discussed, and installation procedures are outlined.rnResults are presented from a field site where pitting corrosion is being monitored on an ongoing basis. Background information on the installation, in addition to project goals and observations are reported. Daily wall thickness data obtained remotely from the site is used to report individual corrosion rates for pitting defects within the pipeline. These corrosion rates are then plotted over time and correlated to events such as process upsets, chemical inhibitor application, cleaning pig runs, and other actions intended to mitigate for internal corrosion. This correlation provides data which is then subsequently used to improve the corrosion mitigation program in place, and better schedule maintenance activities.
机译:点蚀是酸性天然气/石油管道和原油精炼厂中最严重的问题之一。与一般的壁面损失不同,点蚀可能会以不均匀的速率增长,并且会迅速进行至整个深度渗透。这种完整性损失会导致泄漏,从而导致生产停工,环境破坏,甚至在最坏的情况下还会导致生命损失。实际上,通常在管道在线检查期间或在作为维护程序一部分进行的常规超声扫描过程中检测点蚀。然后,通常对确定为出现点蚀的位置进行风险排名,然后根据各种因素进行修复或监视。不幸的是,由于地理上的偏远或需要使用脚手架来到达现场,经常进行此类腐蚀的现场经常无法进行频繁的后续壁厚检查。该困难导致需要能够远程监测点蚀的进展的高级内部腐蚀监测系统。本文介绍了一种基于电场测绘(EFM)原理的新型点蚀监测系统,并继续描述了该技术在操作现场安装的最新结果。使用该技术,可以在预腐蚀过程中仔细绘制剩余壁厚确定的兴趣范围。该系统指示除了点蚀腐蚀缺陷的位置,宽度和深度以外,还存在任何普遍腐蚀。这种新的EFM系统的创新之处在于,它使用了坚固的预制玻璃纤维外壳,与早期的技术相比,可大大减少安装时间。具有最小冶金影响的非焊接触点;永久的,自供电的现场数据采集系统,配有蜂窝或卫星数据通信。讨论了该技术的设计原理,并概述了安装步骤。rn从现场监测点蚀的现场结果给出了结果。报告了有关安装的背景信息以及项目目标和观察结果。从现场远程获取的每日壁厚数据用于报告管道内点蚀缺陷的个别腐蚀速率。然后将这些腐蚀速率随时间绘制出来,并将其与事件相关,例如过程不正常,化学抑制剂的应用,清管器的清洁以及旨在减轻内部腐蚀的其他措施。这种相关性提供了数据,这些数据随后可用于改进适当的腐蚀缓解程序并更好地安排维护活动。

著录项

  • 来源
  • 会议地点 Calgary(CA);Calgary(CA);Calgary(CA)
  • 作者单位

    Fiber Optic System Technology Inc. (FOX-TEK) Calgary, AB;

    Fiber Optic System Technology Inc. (FOX-TEK) Toronto, ON;

    Fiber Optic System Technology Inc. (FOX-TEK) Calgary, AB;

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  • 原文格式 PDF
  • 正文语种 eng
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