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UNDERSTANDING PIPELINE STRAIN CONDITIONS - CASE STUDIES BETWEEN ILI AXIAL AND ILI BENDING MEASUREMENT TECHNIQUES

机译:理解管道应变条件 - 伊犁轴向和伊犁弯曲测量技术的案例研究

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In-Line inspection (ILI) tools consisting of combined sensor technologies provide a unique opportunity for operators to understand the conditions of pipelines. There is also an additional opportunity to contrast and validate individual sensing techniques against each other when their functionalities and purposes overlap. By using multi-technologies ILI measurements for strain, a pipeline operator can gain further insight into the pipeline strain behavior at any point along the length of the inspection. This paper establishes the relationship between ILI axial strain measurement tool data and conventional geometric strain data obtained from inertial measurement unit (IMU) based on data collected during in-service inspection of a 12" liquid pipeline. Within any pipeline section, the tool configuration with circumferentially spaced strain sensors allows the use of appropriate analysis techniques to decompose the longitudinal strain into its primary components (axial, bending and out of roundness). The axial strain measurement tool sensing system provides an indirect measurement of bending strain that can be compared to the geometric measurement of bending strain determined from the pipeline trajectory as determined from the IMU analysis. Flexural bending strain resulting from horizontal directional drilling (HDD) is investigated in this paper. Convergences and divergences between the measurement techniques are presented. Data available from different strain technologies mounted on ILI tools offers an opportunity to conduct a comparative study and to provide a better understanding of a pipeline's strain condition. This paper will present the framework for understanding the different strain measurement technologies and an investigation into the pipeline prior strain history (effects from fabrication, hydrostatic testing and external loads) and their corresponding impact on the material state at the time of inspection.
机译:由组合传感器技术组成的在线检查(ILI)工具为操作员提供了理解管道条件的独特机会。当他们的功能和目的重叠时,还有一个额外的机会对比并验证各个感测技术互相反对。通过使用多技术ILI测量来应变,管道操作员可以在沿着检查的长度的任何点处进一步了解管道应变行为。本文建立了ILI轴向应变测量工具数据与惯性测量单元(IMU)的关系基于12“液体管道的在线检查期间的惯性测量单元(IMU)之间的关系。在任何管道部分,工具配置周向间隔应变传感器允许使用适当的分析技术将纵向应变分解成其主要部件(轴向,弯曲和圆度)。轴向应变测量工具传感系统提供了可以与之比较的弯曲菌株的间接测量从IMU分析中确定的,从管道轨迹确定的弯曲应变的几何测量。本文研究了水平定向钻井(HDD)所产生的弯曲弯曲应变。提出了测量技术之间的收敛性和分歧。可从不同的应变技术提供数据安装在ili t OOL提供了进行比较研究的机会,并更好地了解管道的应变状态。本文将介绍理解不同应变测量技术的框架和对管道的现有应变历史(从制造,静水检测和外部载荷的影响)以及它们对检查时对材料状态的相应影响。

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