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Strain Analysis of Oil and Gas Pipeline with Dents Based on ILI Data

机译:基于ILI数据的凹痕油气管道的应变分析

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Dents in an oil and gas pipeline can be detected by In-Line-Inspection (ILI), and structure integrity analysis of the pipe with theses reported dents is important for the safe operation. Strain analysis of the dented pipe is a way of fine assessment and ASME B31.8 has established the strain assessment code and its acceptable range. However, the method of strain assessment is rarely used due to the difficulty of strain calculation for a buried pipe. In this study, features of ILI data are investigated to elaborate the necessary of filtering analysis for strain analysis of the dent with ILI data. Then typical filtering methods are used to smooth the ILI data, and strain analysis are carried out with the smoothed data to study the practicability of strain assessment. Profile and strain of a dent in D813 pipe were obtained by Finite Element Method (FEM). Then different filtering methods were used to smooth the simulated ILI data of the dent which were selected from FEM profile. Strain of the dent were also calculated by smoothed data with the latest ASME B31.8 code, and compared with it from FEM at last to prove the feasibility and validity of the filtering methods with ASME B31.8 code.
机译:石油和天然气管道中的凹痕可以通过在线检查(ILI)来检测,并且具有报告凹痕的管道的结构完整性分析对于安全操作非常重要。凹陷管的应变分析是一种精细评估和ASME B31.8的方式建立了应变评估代码及其可接受的范围。然而,由于掩埋管道的应变计算难度,很少使用应变评估方法。在本研究中,研究了ILI数据的特征,以详细阐述了ILI数据患者应变分析的过滤分析。然后使用典型的过滤方法来平滑ILI数据,并且使用平滑数据进行应变分析,以研究应变评估的实用性。通过有限元方法(FEM)获得D813管道中凹痕的剖面和菌株。然后,使用不同的过滤方法来平滑从FEM剖面中选择的凹陷的模拟ILI数据。还通过使用最新的ASME B31.8代码进行平滑数据计算凹陷的应变,并与IT与FEM相比,终于与ASME B31.8代码的过滤方法的可行性和有效性。

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