利用先进的数字技术,提供自动钻井隔水管疲劳跟踪,以支持基于状态的维护

Paul Bohan, D. Lang, Dara Williams
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引用次数: 0

摘要

传统的钻井隔水管接头检查和维护方法集中在隔水管接头的重新认证上,每隔五年进行一次。采用基于状态的维护机制,根据立管接头的实际使用情况确定检查间隔,可以获得显著的潜在效率。驱动检测需求的关键因素之一是立管接头在使用过程中遭受的疲劳损伤。本文介绍了一种独特的钻井隔水管接头疲劳跟踪系统,该系统采用最新的数字技术、先进的自动化工艺和最先进的钻井隔水管有限元模型,为长期监测隔水管接头疲劳提供了准确、高效的解决方案。详细描述了该系统的结构和操作,并讨论了基于断裂力学的方法与传统的S-N曲线方法在疲劳计算中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilising Advanced Digital Technologies to Provide Automated Drilling Riser Fatigue Tracking to Support Condition Based Maintenance
The traditional industry approach to drilling riser joint inspection and maintenance has centered on recertification of riser joints at fixed five-yearly intervals. There are significant potential efficiencies to be gained from moving to a condition-based maintenance regime where inspection intervals are determined based on the actual usage of the riser joint. One of the critical factors driving the requirement for inspection is the fatigue damage sustained by the riser joint during use. This paper describes a unique drilling riser joint fatigue tracking system that uses the latest digital technologies, advanced automation processes and a state-of-the-art finite element model of the drilling riser to provide an accurate and efficient solution to the challenge of long-term riser joint fatigue tracking. The architecture and operation of the system is described in detail and the application of a fracture mechanics-based approach to fatigue calculation versus the traditional S-N curve-based approach is discussed.
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