监测和筛选管道的运动:管道运营商测量管道漂移的快速和经济有效的替代方案

M. Schorr, Klaas Kole, Ferdinand Foessing
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引用次数: 0

摘要

对于石油、天然气和采矿行业的管道来说,管道的运动是主要的完整性危害之一。这种移动在大多数情况下是由暴雨、地震或火山活动引发的山体滑坡引起的。如果在早期阶段未检测到管道移动,则可能需要进行昂贵的维修,以防止、消除或修复潜在或实际的损坏。此外,如果这些移动长时间未被发现,这些线路可能会失效并导致灾难性事件。本文将说明在早期阶段避免这些威胁的快速和经济有效的解决方案是什么样的,以及它是如何工作的。它将在案例研究的基础上解释该过程并展示该技术的全部功能。对于在安装时没有永久性位置监测系统的管道,标准解决方案包括使用能够检测轨迹中最微小变化的智能工具。这些检测工具的运行成本非常昂贵,特别是在一年中需要进行多次筛检时,例如在雨季前后或地震事件之后。其他监控解决方案要么仅限于在早期阶段已经检测到运动的特定区域,要么缺乏作为早期预警系统所需的精度,如激光雷达或卫星图像比较。多年来,ROSEN开发了一种技术,可以弥合频繁测量和经济高效服务之间的差距。它是基于电子陀螺仪,通常用于在线检测工具,但也可以安装在现成的清洁工具。当第一次在管道中运行时,它记录整个管道轨迹,没有留下未记录的段。下一步是将这些记录的管道路线测量值与已有的轨迹基线数据进行比较,这些数据是由任何ILI工具(带有光学陀螺仪或类似工具)早期记录的。这种比较将揭示两个轨迹之间的任何偏差,并精确确定任何管道运动。案例研究将演示如何实现比较。当进行重复检查时,这种筛选比较使作业者能够检测到运动的开始,并监控任何已知管道运动的进展。它使他们能够区分稳定区域和动态地面运动,并密切跟踪管道路线的变化。通过定期的重复,任何进一步的运动发展都可以被跟踪,并及时安排适当的反应措施。这项新服务为地质管道完整性威胁提供了一种经济高效、功能强大的预警工具,这些威胁可能导致完整性、资产损失,甚至最坏的情况是生命损失或环境污染,同时,它还减少了影响生产的管道干预的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring and Screening of Pipelines for Movement: A Fast and Cost-Effective Alternative for Pipeline Operators to Measure Drift in Pipelines
For pipelines in the oil, gas, and mining industry, movement of pipelines is one of the main integrity hazards. This movement in most cases is caused by landslides instigated by heavy rain, earthquakes or volcanic activities. If the pipeline movement remains undetected at an early stage, it can lead to the need for costly repairs to prevent, remove, or repair potential or actual damage. Moreover, if the movements stay undetected for too long, these lines may fail and lead to catastrophic events. This paper will illustrate what a fast and cost-effective solution to avoid these threats at an early stage looks like and how it works. It will explain the process and demonstrate the full power of this technology on the basis of a case study. The standard solution for pipelines without a permanent position monitoring system at the time of installation includes the use of intelligent tools that are able to detect even the slightest changes in the trajectory. These inspection tools are quite expensive to run, especially when multiple screening runs are required throughout a year, e.g. before and after the rainy season or after a seismic event. Other monitoring solutions are either limited to only a specific area where the movement has already been detected at an earlier stage or lack the precision required to serve as an early warning system, such as LIDAR or satellite image comparison. Over the years, ROSEN has developed a technology that can bridge the gap between frequent measurements and cost-effective service. It is based on an electronic gyroscope that is commonly used in Inline Inspection tools but can also be installed in readily available cleaning tools. When first run in a pipeline, it records the whole pipeline trajectory, leaving no segment undocumented. The next step is to compare these recorded pipeline routing measurements with already existing trajectory baseline data, recorded earlier by any ILI tool with an optical gyro or similar. This comparison will reveal any deviation between both trajectories and precisely determine any pipeline movement. A case study will demonstrate how the comparison is achieved. When performing repetitive inspections, this screening comparison enables the operators to detect the onset of movements and monitor the progress of any known pipeline movement. It allows them to distinguish between stable areas from dynamic ground movements and keeps close track of changes in the pipe course. Through regular repetitions, any further development of the movement is tracked, and appropriate reactive measures can be scheduled in a timely manner. This new service provides a cost-effective and powerful early warning tool for geological pipeline integrity threats that can lead to loss of integrity, the asset, or — worst-case scenario — loss of life or environmental contamination, while at the same time, it reduces the necessity of pipeline intervention that will affect production.
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