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THE DEVELOPMENT AND USE OF AN ABSOLUTE DEPTH SIZE SPECIFICATION IN ILI-BASED CRACK INTEGRITY MANAGEMENT OF PIPELINES

机译:基于ILI的管道裂纹完整性管理中绝对深度规格的开发和使用

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To provide a more insightful and accurate feature description from Crack In-line Inspection (ILI) reporting as per the Fitness For Service analysis in API 1176, individual crack dimensions must be established to a given accuracy. PII Pipeline Solutions established an absolute depth sizing specification conforming to the dig verification processes of API 1163. This change represented a significant shift from a traditional reporting format for depth sizing in "bands" of 1-2 mm, 2- 3 mm and > 3 mm depths within crack ILI inspection reporting. When assessing features with characteristics stated in a sizing band, the pipeline integrity assessment approach required a conservative assumptions that all of the features in that band must be treated as if they are in the deepest band value. The implication then meant that the specification created only 3 sizes of crack depths 1 - 2 mm, 2 - 3 mm, > 3 mm (± 0.5mm tolerance at 90% certainty). In practical terms a large quantity of features in the significant band of 2-3 mm must be treated as potential dig candidates with a depth of at least 3 mm, making length characteristics as the only severity ranking basis for any priority dig selection. Previous attempts at establishing absolute depth sizing for crack inspection required a series of calibration digs. The large sample size over multiple inspection runs and pipeline sections allowed for a statistical specification algorithm is developed as part of the analysis process, therefore no additional reporting time, or excavation cost was involved. The new absolute sizing algorithm has provided operators with a means of prioritizing digs, based upon individual feature length and depths. Replacing the traditional depth bands with individual feature specific peak depths and thereby providing a major step forward in achieving a cost effective process of prioritizing crack mitigation in pipelines. Following the dig verification process in API 1163, significant populations of infield NDE results were utilized on a variety of pipeline sections of different diameters. Predicted absolute depth estimation accuracy was determined for specific feature types and thereby created a depth tolerance, with statistical certainty levels established that match those available and recognized with metal loss ILI. This paper describes the process and the means by which an absolute depth crack ILI specification was established using characteristics from a significant set of real features. It also describes benefits realized within pipeline integrity engineering of moving to such a new reporting protocol.
机译:为了根据API 1176中的“适应性服务”分析,通过裂缝在线检查(ILI)报告提供更深入,更准确的特征描述,必须将单个裂缝尺寸确定为给定的精度。 PII管道解决方案建立了符合API 1163挖掘验证过程的绝对深度尺寸规格。此更改表示与传统报告格式的1-2 mm,2-3 mm和> 3的“带”中的深度尺寸有很大的不同。裂缝ILI检验报告中的mm深度。在评估具有大小调整带中规定的特征的特征时,管道完整性评估方法需要保守的假设,即必须将该频带中的所有特征都视为在最深的频带值中进行处理。这意味着该规范仅创建了3种尺寸的裂纹深度1-2 mm,2-3 mm,> 3 mm(在90%的确定性下为±0.5mm公差)。实际上,必须将2-3 mm显着波段中的大量特征视为深度至少为3 mm的潜在挖掘候选对象,从而将长度特征作为任何优先挖掘选择的唯一严重性等级基础。先前为裂缝检查建立绝对深度尺寸的尝试需要进行一系列的校准工作。作为分析过程的一部分,开发了多个检验运行和允许统计规范算法的管道段的大样本量,因此无需额外的报告时间或开挖成本。新的绝对尺寸算法为操作员提供了一种基于个体特征长度和深度对挖掘进行优先排序的方法。用单个特征特定的峰值深度代替传统的深度带,从而在实现优先考虑减轻管道裂纹的成本有效过程方面迈出了重要的一步。在API 1163中进行了挖掘验证过程之后,大量的内场NDE结果被用于各种直径不同的管道段。确定了特定特征类型的预测绝对深度估计精度,从而创建了深度公差,并建立了与金属损耗ILI匹配的统计确定性级别的统计确定性级别。本文介绍了使用大量实际特征中的特征建立绝对深度裂缝ILI规范的过程和方法。它还描述了在管道完整性工程中实现这种新报告协议所带来的好处。

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