Exceeding Limitations: Ultrasonic Crack Inspections Become Feasible for Liquid Natural Gases

T. Hennig, Rogelio Guajardo, E. Suarez, Victor Haro, P. Haberl
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Abstract

Ultrasonic crack inspection services have become a standard solution for pipeline integrity programs, especially for liquid pipelines. ILI tools provide reliable and accurate data for assessment of axial and circumferential cracking defects to derive educated decisions on the integrity and maintenance of the asset. This technology inspects common media such as crude and light oils, water, diesel, benzene, or similar. Running tools in mediums used for commercial operations does not affect the throughput of the line. Crude and light oils, water, diesel, benzene etc. have relatively constant ultrasonic characteristics with varying pressures and temperatures and are very suitable for ultrasonic inspections, therefore called common media within the context of this paper. If the medium in the pipeline does not fall within the common media, the situation changes. These media are called challenges media. Especially for liquefied natural gases (LNG) or liquefied petroleum gases (LPG) where temperature and pressure have a significant impact on the ultrasonic characteristics of speed of sound, density, and attenuation. LNGs and LPGs typically contain high amounts of propane, butane, and some other higher order alkanes. Due to the high variability of these components to external boundary conditions, inline inspections in these type of pipelines are usually performed by replacing the medium with a more feasible one, e.g. water or diesel. This causes significant impact to productivity and throughput and increases costs and efforts. The authors will present the work performed to overcome and solve this workaround and run an ultrasonic crack inspection tool in LNG. This paper highlights the challenging aspects considered to successfully perform inline inspections in LNGs. We will present a standardized and systematic approach to overcome limitations of the technology in such media. Starting with the challenges and ideas for enhancement of the service, the paper will discuss the design of the experiment, the experiment itself, the results, and present the conclusions that resulted in the tool development and the analysis procedure. Finally, the authors will present the application of the enhanced service in a customer pipeline, including ILI preparation, execution, analysis, and in-the-ditch verifications. The structured and systematic approach allows the inspection company to perform successful and reliable crack detection inspections in LNG lines. This includes axial and circumferential cracking threats.
超越限制:超声波裂纹检测在液化天然气中变得可行
超声波裂纹检测服务已经成为管道完整性方案的标准解决方案,特别是对于液体管道。ILI工具为评估轴向和周向裂缝缺陷提供了可靠和准确的数据,从而对资产的完整性和维护做出有根据的决策。该技术可检测原油、轻质油、水、柴油、苯等常见介质。在用于商业作业的介质中运行工具不会影响生产线的吞吐量。原油和轻质油、水、柴油、苯等在不同的压力和温度下具有相对恒定的超声特性,非常适合超声检测,因此在本文中被称为普通介质。如果管道中的介质不属于普通介质,则情况会发生变化。这些媒体被称为挑战媒体。特别是对于液化天然气(LNG)或液化石油气(LPG),温度和压力对声速、密度和衰减等超声波特性有显著影响。lng和lpg通常含有大量的丙烷、丁烷和其他一些高阶烷烃。由于这些组件对外部边界条件的高度可变性,在这些类型的管道中进行在线检查通常通过用更可行的介质(例如水或柴油)替换介质来执行。这会对生产力和吞吐量造成重大影响,并增加成本和工作量。作者将介绍为克服和解决这一问题所做的工作,并在LNG中运行超声波裂纹检测工具。本文重点介绍了在lng中成功进行在线检测的挑战性方面。我们将提出一种标准化和系统的方法来克服这种媒体技术的局限性。本文将从增强服务的挑战和想法开始,讨论实验的设计,实验本身,结果,并提出导致工具开发和分析过程的结论。最后,作者将介绍增强服务在客户管道中的应用,包括ILI准备、执行、分析和沟里验证。结构化和系统化的方法使检测公司能够在LNG管道中进行成功可靠的裂缝检测。这包括轴向和周向开裂威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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