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Determining the acceptability of bottom side dents with metal loss

机译:确定带有金属损失的底部凹痕的可接受性

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The assessment presented in this paper demonstrates how finite element analysis can be coupled with reliable ILI data to perform a fitness-for-service assessment for a dent with corrosion. This methodology is appropriate and beneficial for dents that may have small amounts of corrosion that can be accurately identified and sized. In pipelines where the pressure cycling is light to moderate, fatigue is unlikely to occur, and a detailed assessment can demonstrate the acceptability of the dent. The case study reinforced several known concepts and demonstrated a few key concerns in the assessment of dents. a. When performing assessments of restrained dents, operators should use all available means to confirm the nature of the metal loss. The input of an experienced data evaluators is considered to be paramount. b. The nature of the restraint should be evaluated by considering the shape of the dent or performing initial elastic finite element analysis. c. The case study demonstrated that treating a dent as unrestrained will produce a larger SCF and a shorter fatigue life, consistent with previous research. However this approach may result in excessively large SCFs for many restrained dents. d. The assessment should consider multiple indenter scenarios and/or variations in the relative motion of the indenter and pipe as this may have an impact on the magnitude of the SCF. e. The assessment should also consider the effect of any historical pressure tests. f. Finally, the analysis should address both the burst pressure and fatigue life of the feature ensuring that plasticity is appropriately accounted for in the calculation of the SCF and remaining life of the dent. It should be noted that the fatigue lives in this paper are largely contingent on the mild pressure cycling data. This data was assumed to be representative of past and future pressure cycling on the line. When performing a remaining life assessment for pipeline anomalies it is important that operators periodically monitor pressure history data to ensure that the fatigue life of the feature is not reduced by a change in operations. It is also important to note that the assessment assumed that the corrosion had been mitigated such that the depth of metal loss had not increased since the time of the inspection and would not increase in the future. This assumption can be confirmed through repeat ILI inspections.
机译:本文中提出的评估证明了有限元分析如何与可靠的ILI数据结合使用,可以对腐蚀的凹痕进行适用性评估。对于可能具有少量腐蚀且可以准确识别和定尺寸的凹痕,此方法学是合适的且有益的。在压力循环从轻到中度的管道中,疲劳不太可能发生,详细评估可以证明凹痕的可接受性。该案例研究强化了一些已知的概念,并演示了凹痕评估中的一些关键问题。一种。在评估约束凹痕时,操作员应使用所有可用的手段来确认金属损失的性质。经验丰富的数据评估人员的输入被认为是至关重要的。 b。约束的性质应通过考虑凹痕的形状或执行初始弹性有限元分析来评估。 C。案例研究表明,将凹痕视为不受约束的凹痕会产生更大的SCF和较短的疲劳寿命,这与先前的研究一致。但是,此方法可能会导致许多约束凹痕的SCF过大。 d。评估应考虑多种压头情况和/或压头和管道相对运动的变化,因为这可能会影响SCF的大小。 e。评估还应考虑任何历史压力测试的影响。 F。最后,分析应同时处理特征的爆破压力和疲劳寿命,以确保在计算SCF和凹痕的剩余寿命时适当考虑可塑性。应该注意的是,本文的疲劳寿命在很大程度上取决于温和的压力循环数据。假定该数据代表了生产线上过去和将来的压力循环。在对管道异常进行剩余寿命评估时,重要的是操作人员应定期监视压力历史记录数据,以确保不会因操作变化而缩短部件的疲劳寿命。同样重要的是要注意,评估假设腐蚀得到缓解,因此自检查之时起金属损失的深度就没有增加,将来也不会增加。可以通过重复的ILI检查来确认该假设。

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