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Delivering Value for Tracking Coiled-Tubing Failure Statistics

机译:为跟踪连续油管故障统计提供价值

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The concept of tracking coiled tubing (CT) failure statistics for use in developing performance indicators is not new. It has been covered extensively as the subject of previous abstracts. Tracking relies on an established process for reporting and investigation of pipe-related failures allowing the collection of data from CT operations of a leading service provider, which has global representation. The primary aim of the process is the identification of the immediate cause of the failure and, more importantly, the failure mechanism for the incident. Only with a good understanding of prevailing trends, if any, can remedial action addressing the root cause(s) of the problem be enacted. This is particularly important for an organization with more than 200 CT units and more than 750 CT strings in service over a wide geographic landscape. In an environment of high CT activity, which has been the experience of the last two years, the value of this process cannot be overstated. The value to overall CT operations is demonstrated in two examples in which the identified failure trends became the focus of separate service delivery improvement initiatives. The first issue resulted in a change in the organization’s policy for reel storage and maintenance, while the second caused a modification in the CT unit controls to properly address the root cause. An in-depth discussion of the issues and their mitigation is the subject of this paper. The most recent paper on this subject presented information covering the period 1995 to 2000. This paper provides updated information on these CT performance indicators, presenting material from activities during the five-year period 2001 to 2005. The evolution of pipe failure trends is covered and contrasted against the changes that have taken place in the CT industry as a whole over the last decade.
机译:用于开发性能指标的跟踪连续油管(CT)故障统计信息的概念并不新鲜。作为以前的摘要,它已被广泛涉及。跟踪依赖于报告和调查与管道相关的故障的既定过程,从而可以从具有全球代表性的领先服务提供商的CT运营中收集数据。该过程的主要目的是确定故障的直接原因,更重要的是,确定事件的故障机制。只有对当前的趋势有充分的了解,如果有的话,才可以采取解决问题根本原因的补救措施。对于在广泛的地理环境中服务200多个CT单元和750多个CT弦的组织而言,这一点尤其重要。在过去两年的高CT活动环境中,这一过程的价值不可低估。在两个示例中证明了整体CT操作的价值,在这些示例中,已识别的故障趋势成为单独的服务交付改进计划的重点。第一个问题导致组织的卷轴存储和维护政策发生了变化,第二个问题导致了CT单元控件的修改,以正确解决根本原因。对这些问题及其缓解的深入讨论是本文的主题。关于此主题的最新论文介绍了1995年至2000年期间的信息。本文提供了有关这些CT性能指标的最新信息,介绍了2001年至2005年这五年期间的活动资料。与过去十年整个CT行业发生的变化形成对比。

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