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Real-Time Monitoring to Detect Third-Party Damage

机译:实时监控检测第三方损坏

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Based on data compiled in the Office of Pipeline Safety incident database, damage due to outside forces is responsible for the largest number of reportable incidents for both offshore and onshore gas-transmission pipelines. Examples of outside forces incidents for offshore lines include contact with jetting skids during construction and anchor strikes and line-pulls in service. When the damage due to third-party incidents causes an immediate rupture, on-line monitoring can help reduce the consequences of the event. However, because many third-party incidents cause damage that does not lead to immediate rupture but can grow with time, on-line monitoring can play a significant role in reducing the number of third-party damage incidents. Because such incidents can have a major environmental impact, and because such damage can become more frequent with the continued expansion offshore, significant benefits can accrue through the development and use of on-line monitoring in offshore applications. Offshore applications involve operating environments in which detection methods that could function for onshore pipelines, like satellite-based schemes, are no longer feasible. Battelle has been developing a method to detect third-party contact for onshore pipelines that is capable of being adapted to offshore pipelines. This paper reports on that technology, which is based on the detection of the propagating acoustic pressure pulse that develops from the third-party contact. This paper provides an overview of the technology and the field testing being done to demonstrate its utility for reactive detection of third-party contact with pipelines. Also, a summary is presented of other methods that, with some development, could be used to prevent third-party damage. The results indicate that with only modest development the capability for real-time monitoring exists today.
机译:基于管道安全事件数据库办公室编制的数据,外部部队造成的损坏负责海上和陆上燃气传输管道的最大数量的可报告事件。外部线路的外部力事件的例子包括在施工和锚固击球期间与喷射滑板接触,并在服务中排列。当第三方事件导致的损坏导致立即破裂时,在线监测可以帮助减少事件的后果。但是,由于许多第三方事件导致损坏不会导致立即破裂但可以随时间的增长,在线监测可以在减少第三方损害事件的数量方面发挥重要作用。因为这种事件可能产生重大的环境影响,因为随着持续扩张海上的损害可能会变得更加频繁,因此通过在海上申请中开发和使用在线监测的显着效益可以累积。海上应用涉及操作环境,其中可以在陆上管道上运作的检测方法,如卫星的方案,不再是可行的。 Battelle一直在开发一种方法来检测陆上管道的第三方联系,该管道能够适应海上管道。本文报告了该技术,该技术基于从第三方接触开发的传播声压脉冲的检测。本文概述了该技术和现场测试,以展示其用于与管道的第三方接触的反应检测的实用性。此外,介绍了其他方法,可以使用一些发展,以防止第三方损坏。结果表明,只有适度的发展,目前只存在实时监测的能力。

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