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A novel investigation into the application of non-destructive evaluation for vibration assessment and analysis of in-service pipes

机译:对振动评估的非破坏性评估应用的新颖调查及维修管道分析

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摘要

Flow-induced vibrations are a major problem in all oil and gas processing industries, so all piping systems which work non-stop for 24/7 require regular condition monitoring and inspection to assess changes in their dynamic characteristics and structural integrity in order to prevent catastrophic failures. A novel method of non-destructive testing and evaluation of these pipes, while in service, is proposed in this paper. The method enables early detection of the root causes and pinpoints the location of the impending failure due to excess vibration as a result of cyclic force induced by the flow prior to condition-based maintenance procedures. The technique relies on the combined application of Operating Deflection Shapes (ODS) analysis and computational mechanics utilizing Finite Element Analysis (FEA), i.e. linear elastic stress analysis. The effect on vibration levels on the in-service pipes is assessed and verified. The effect of any change in the forces corresponding to changes in the Differential Pressure (DP) at a constant flow rate through the pipes can then be estimated. It was concluded that maintaining the differential pressure above some "critical" threshold ensures the pipe operates under the allowable dynamic stress for a theoretically "indefinite" life cycle.
机译:流动诱导的振动是所有石油和天然气加工行业的主要问题,因此所有运作的管道系统都是24/7的不间断需要定期的情况监测和检查,以评估其动态特征和结构完整性的变化,以防止灾难性失败。本文提出了一种新的非破坏性测试和评估这些管道的评估方法。该方法使得能够早期检测根本原因,并针对由于在基于条件的维护程序之前的流量引起的循环力而导致即将发生的暂时失败的位置。该技术依赖于使用有限元分析(FEA)的操作偏转形状(ODS)分析和计算力学的组合应用,即线性弹性应力分析。评估和验证对在职管道上的振动水平的影响。然后可以估计通过管道的恒定流量(DP)对应于差压(DP)变化的力的任何变化的影响。得出结论,保持上述一些“临界”阈值的差压确保了管道在理论上“无限期”生命周期的允许动态应力下工作。

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