首页> 外文会议>Biennial International Pipeline Conference >SMART UTILITY PIGS USED TO DETERMINE AND MONITOR PIPELINE OUT-OF- STRAIGHTNESS, WITH SPECIFIC REFERENCE TO INSPECTION OF BP ALASKA'S 10' NORTHSTAR CRUDE OIL PIPELINE
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SMART UTILITY PIGS USED TO DETERMINE AND MONITOR PIPELINE OUT-OF- STRAIGHTNESS, WITH SPECIFIC REFERENCE TO INSPECTION OF BP ALASKA'S 10' NORTHSTAR CRUDE OIL PIPELINE

机译:用于确定和监控管道的智能电型猪,具体参考BP阿拉斯加的10“北方石油管道的检查

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Through necessity many pipelines and flowlines are required to operate under conditions where their position may be displaced over time. Such movements can occur for a wide variety of reasons, but are most commonly associated with either movement of the physical surroundings of the pipeline causing movement of the pipeline itself, and/or thermal changes in the pipeline causing expansion and contraction. Displacements as described result in the pipeline experiencing increased levels of strain at local out-of-straightness events, potentially resulting in pipeline failure. The ability to measure and monitor pipeline displacements, in particular identifying specific regions of out-of-straightness, is valuable to both the existing pipeline operator who wants to operate their assets safely, and also to the pipeline designer who is able to design future pipelines with the knowledge that such monitoring capabilities exist. Smart Utility Pig technology measures the longitudinal shape of a pipeline using an onboard accelerometer and angular velocity sensors. The data logged by these instruments allows out-of-straightness features to be identified and profiles of the vertical and horizontal shape of each to be calculated. This paper presents an overview of the requirements for such Smart Utility Pig technology, and details of out-of-straightness measurement applications. In particular, projects are identified where the technology has been deployed in such a role, including specific reference to BP Alaska's 10" Northstar crude oil pipeline.
机译:通过必要性,许多管道和流动线都必须在其位置随时间移位的条件下操作。这种运动可以出于多种原因发生,但是通常与管道本身的流动运动的物理周围的围绕的移动的最常用,以及管道中的热变化引起膨胀和收缩。如上所述的位移在流水线中,在局部外直度事件中经历增加的应变水平,可能导致管道故障。衡量和监测管道位移的能力,特别是识别特定区域的超直线,对于想要安全地操作其资产的现有管道运营商,以及能够设计未来管道的管道设计师对现有的流水线运营商有价值凭借这种监测能力存在。智能实用猪技术使用板载加速度计和角速度传感器测量管道的纵向形状。这些仪器记录的数据允许识别不直接的功能,并且可以计算垂直和水平形状的概况。本文概述了这种智能电型猪技术的要求,以及无线性测量应用的细节。特别是,确定了该技术在这种作用中部署的地方,包括对BP阿拉斯加的10“北方原油管道的具体参考。

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