通过远程监控实现数字化资产完整性管理

Mohamed Sahid
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The paper shall highlight the importance of digitalization in the Asset Integrity Management - Pipeline Corrosion and Steam Trap monitoring - by means of implementing wireless technology and making the data available in remote workstations in realtime.\n Topics covered:\n Corrosion Monitoring: to move ahead from the conventional Corrosion management to the Wireless Ultrasonic Thickness gauging technology\n Steam Trap Monitoring: to remotely monitor the healthiness of Steam Traps with a combination acoustic and temperature instruments.\n \n \n \n Corrosion Monitoring: The installation at ADNOC-LNG covers 20 locations in OAG unit (Offshore Associated Gas unit, which has been identified as highly corrosion prone). The procedure involves installing UT sensors at the identified CMLs (Corrosion Monitoring Locations). These are easily installable onto the piping, and each sensor has a measurement footprint of about 1-2 cm2, which is similar to the manual ultrasound inspection method. 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引用次数: 1

摘要

通过实时腐蚀监测和疏水阀监测确保提高资产完整性过程管道腐蚀监测一直是确保工厂资产完整性的重中之重。同样,疏水阀在确保蒸汽质量方面发挥着非常重要的作用,从而确保工厂关键资产的完整性。人们经常观察到,许多疏水阀在一段时间后就不起作用了,更重要的是,它们很危险,没有人注意到。虽然这些对于确保资产完整性至关重要,并且需要持续监控,但在现场也是一项要求很高且具有挑战性的活动,并且许多完整性工程师都梦想着远程实时执行此类资产监控。许多供应商一直在对此进行研究,并专注于设计改进的技术来减轻此类资产监控的负担。本文旨在触及监测资产完整性的两个方面-实时腐蚀监测和实时蒸汽疏水阀监测-在ADNOC-LNG中实施。本文将强调数字化在资产完整性管理-管道腐蚀和蒸汽疏水阀监测中的重要性-通过实施无线技术并使远程工作站实时获得数据。主题包括:腐蚀监测:从传统的腐蚀管理向无线超声测厚技术迈进蒸汽疏水阀监测:利用声学和温度仪器相结合的方法远程监测蒸汽疏水阀的健康状况。腐蚀监测:ADNOC-LNG的安装覆盖了OAG装置(海上伴生气装置,已被确定为高度腐蚀的装置)的20个位置。该步骤包括在确定的cml(腐蚀监测位置)安装UT传感器。这些很容易安装到管道上,每个传感器的测量足迹约为1-2平方厘米,这类似于手动超声检查方法。超声波技术已经得到了很好的验证,并已被Integrity工程师用于人工检测。这些传感器采用无线通信,由电池组供电,可以在周转期间使用。省去了电源和信号电缆,简化了安装过程。蒸汽疏水阀监测系统(LNG Train-3公用事业公司确定的20个位置)也采用无线声学和温度传感器,安装在蒸汽疏水阀管道上。根据声学和表面温度测量,系统可以识别蒸汽疏水阀的健康状况,并确定哪些未关闭或吹穿。腐蚀传感器:这些UT传感器在一段时间内继续提供完全相同点的壁厚测量,这可以帮助分析腐蚀的早期发生;与手动UT测量不同,手动UT测量的读数的可重复性和再现性是一个挑战,因为在间隔几个月后进行的连续测量极不可能完全在同一位置进行,而且高度依赖于个人。腐蚀数据通过无线传输,并提供给完整性工程师的桌面工作站。蒸汽疏水阀:尽管工厂定期对蒸汽疏水阀进行审计,但这种调查只提供了短时间内疏水阀的性能(快照信息),而连续的蒸汽疏水阀监测提供了关于疏水阀健康状况的连续信息,这些信息也提供给操作/维护工程师的桌面工作站。因此,它使他们能够及早做出决定,避免昂贵的设备/管道故障等,同时,通过确保及时维护,避免宝贵的能源损失。无线技术很容易扩展,因此,可以在整个工厂安装更多的传感器,而不需要太多的资金支出。在推进数字化的背景下,我们应该把重点放在发挥科技的优势上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digitalize Asset Integrity Management by Remote Monitoring
ENSURING IMPROVED ASSET INTEGRITY by Realtime Corrosion Monitoring and Steam Trap Monitoring Monitoring of corrosion in a process pipelines have always been of paramount importance to ensure the integrity of plant assets. Similarly, steam traps play a very important role in ensuring steam quality, thereby the integrity of critical assets in the plant. It is common observation that many of the steamtraps become non-functional over a period of time and, more importantly, dangerously go unnoticed. While these are vital in ensuring asset integrity, and need continuous monitoring, it is also a highly demanding and challenging activity in the field, and a dream of many Integrity engineers to perform such asset monitoring remotely, that too, in realtime. Many vendors have been researching on this, and focusing on devising improved technology to ease the burden on such asset monitoring. This paper intends to touch upon these two aspects of monitoring Asset Integrity – Realtime Corrosion monitoring and Realtime Steam Trap monitoring – as implemented in ADNOC-LNG. The paper shall highlight the importance of digitalization in the Asset Integrity Management - Pipeline Corrosion and Steam Trap monitoring - by means of implementing wireless technology and making the data available in remote workstations in realtime. Topics covered: Corrosion Monitoring: to move ahead from the conventional Corrosion management to the Wireless Ultrasonic Thickness gauging technology Steam Trap Monitoring: to remotely monitor the healthiness of Steam Traps with a combination acoustic and temperature instruments. Corrosion Monitoring: The installation at ADNOC-LNG covers 20 locations in OAG unit (Offshore Associated Gas unit, which has been identified as highly corrosion prone). The procedure involves installing UT sensors at the identified CMLs (Corrosion Monitoring Locations). These are easily installable onto the piping, and each sensor has a measurement footprint of about 1-2 cm2, which is similar to the manual ultrasound inspection method. The technology of ultrasound is well proven and has been used by Integrity engineers for manual inspections. These sensors employ wireless communication, and are powered by battery packs, which last through turnarounds. Doing away with the needs of power and signal cable, simplifies the installation process. Steam trap monitoring system (20 locations identified in LNG Train-3 Utilities) also employs wireless acoustic and temperature sensors, which are installed on the steam trap piping. From the acoustics and based on the skin temperature measurements, the system identifies the health of the steam traps and determines which are Failed shut, or blow through. Corrosion Sensors: These UT sensors continue to give the wall thickness measurements of the exactly same point, over a period of time, which can help analyze the early onset of corrosion; unlike the manual UT measurements, where the repeatability and reproducibility of the readings are a challenge, as it is highly unlikely that the consecutive measurements taken after a gap of several months are exactly at the same location, and also it is highly person dependent. The corrosion data is transmitted over wireless, and made available to the desktop workstations of the Integrity Engineers. Steam traps: Even though steam traps are audited in the plants on a regular basis, such surveys give the performance of the traps for that brief period of time (snapshot information), whereas, continuous steam trap monitoring provides information on the health of the traps on a continuous basis, that too, made available to the desktop workstations of the Operations/Maintenance engineers. It thus enables them to take early decision, and avoid costly failures of equipment/piping etc., and also, the avoid the loss of precious energy by ensuring timely maintenance. Wireless technology is easily scalable and hence, further additional sensors can be installed across the plant, without much capital outgo. With the thrust on Digitalization, our efforts should be focused on leveraging the benefits of technology.
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