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Utilizing Circumferential MFL for the Detection of Linear and Axially Oriented Metal Loss Anomalies in Pipelines

机译:利用周向MFL检测管道中线性和轴向的金属损失异常

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摘要

In-line inspection (ILI) technologies have advanced quite significantly since their first usage over 30 years ago. This has been even more evident over the last 5-10 years. Technological developments in electronics, computing power, combined with an increased and better understanding of complex physical applications have lead to the latest generation of in-line inspection technologies which have been commercially available over this same time period.rnThe owner / operators of the liquid and gas pipeline systems are faced with an increased awareness of their aging infrastructures and they are looking to the experts and providers of the latest technological developments to assist them in their efforts to manage and maintain pipeline integrity. ILI has proven time-and time again to be the most useful and cost effective tool that pipeline operators have to ensure safe, reliable and economic operation of their pipeline system(s).rnOne of the main challenges that the industry is currently facing is the early detection of long narrow, axially oriented defects in pipelines. There have been various efforts within the industry to accomplish the goal of producing an efficient system that is economically feasible as well as reliable.rnIn an effort to meet the demand for an in-line inspection tool that can meet the challenge, ILI companies have developed different applications. Ultra-sonic tools have been researched, developed, and used commercially in an effort to detect axially oriented anomalies affecting both pipe body and longitudinal weld seam. However, a tool utilizing UT technology is highly dependant upon the pipe's functionality and medium (gas / liquid), and thus, is prone to incomplete and/or unacceptable survey data. Taking this into account, the utilization of UT technologyrnfor these purposes can be very costly with limited results. Because of the limitations and issues that UT tools experiences, ILI providers also researched the feasibility of utilizing proven MFL technology in this application. After proper development and testing, Circumferential Magnetic Flux Leakage technology was released for the inspection of pipelines - specifically, pipeline systems that were in need of longitudinal seam weld inspection.rnROSEN's solution to this challenge is the Axial Flaw Detection (AFD) tool. The AFD tool utilizes Magnetic Flux Leakage (MFL) technology by applying a circumferential magnetic field (CMFL), as opposed to the traditional axial oriented application of the field, to the pipe wall in order to detect and characterize anomalies which are linear and/or axially oriented that a typical MFL tool would under grade or not even detect.rnThis article is meant to give the reader a better understanding of the technology as well as the development process of complex in-line inspection in today's comprehensive and demanding pipeline industry. It will also provide historical findings within controlled environments and statistics from dig verifications from actual surveys.
机译:自30年前首次使用以来,在线检查(ILI)技术已取得了显着进步。在过去的5-10年中,这一点更加明显。电子技术,计算能力的技术发展,以及对复杂物理应用的增强和更好的理解,共同导致了最新一代的在线检测技术,这些技术已在同一时期商业化。天然气管道系统面临着日益老化的基础设施的意识,他们正在寻求专家和供应商提供最新的技术发展信息,以帮助他们管理和维护管道完整性。 ILI一次又一次地被证明是管道运营商确保其管道系统安全,可靠和经济运行的最有用和最具成本效益的工具。rnn该行业当前面临的主要挑战之一是尽早发现管道中狭窄的轴向缺陷。为了满足对可满足挑战的在线检测工具的需求,行业内为实现生产经济上可行且可靠的高效系统的目标而进行了各种努力。不同的应用程序。超声波工具已经被研究,开发和商业使用,以试图检测影响管体和纵向焊缝的轴向异常。但是,利用UT技术的工具高度依赖于管道的功能和介质(气体/液体),因此容易产生不完整和/或不可接受的测量数据。考虑到这一点,出于这些目的利用UT技术可能是非常昂贵的,结果有限。由于UT工具遇到的局限性和问题,ILI提供者还研究了在此应用中使用经过验证的MFL技术的可行性。经过适当的开发和测试后,周向磁通泄漏技术被发布用于管道的检查,特别是需要纵向缝焊缝检查的管道系统。RNROSEN针对这一挑战的解决方案是轴向缺陷检测(AFD)工具。 AFD工具利用磁通量泄漏(MFL)技术,通过向管道壁施加与传统的轴向磁场相反的圆周磁场(CMFL),以检测和表征线性和/或线性异常轴向定向,这样一个典型的MFL工具就可能被检测不到甚至无法检测。rn本文旨在使读者更好地理解该技术以及当今全面而苛刻的管道行业中复杂在线检测的开发过程。它还将在受控环境中提供历史发现,并从实际调查的挖掘验证中提供统计数据。

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