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A PROBABILISTIC APPROACH TO FATIGUE SAFETY AND INTEGRITY OF TTRS

机译:TTRS疲劳安全性和完整性的一种概率方法

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Probabilistic methods can improve the reliability of fatigue damage evaluation in top tensioned (production) risers because they tend to provide less biased estimators on their safety, which can be used for more reliable decision making concerning then-design. Such methods consider the collective impact of uncertainties in the riser system, which is not accurately assessed in conventional fatigue analysis. The large factors of safety that are commonly used in deterministic-based fatigue damage assessment tend to assure the high safety of the design, still they are generic factors that do not take advantage of available data for accurate quantification of system safety. This paper presents a probabilistic method toward fatigue reliability and integrity analysis of TTR systems. By using rules of probability, a simplified method is developed to estimate the probability of failure of the TTR system in its lifetime, considering the uncertainties with the Palmgren-Miner rule, the cyclic loads, and the fatigue strength of the components, and other analysis approximations. The method is then used for a comparative assessment on the fatigue reliability of the TTR components and calculating its fatigue Integrity Index. The method is illustrated in a case study and is used to provide recommendations that could possibly improve the TTR fatigue design by reducing its cost, increasing its safety, and maximizing its integrity.
机译:概率方法可以提高顶部张紧(生产)立管中疲劳损伤评估的可靠性,因为它们倾向于提供较少的关于其安全性的偏差估算器,这些估算器可用于与设计有关的更可靠的决策。此类方法考虑了立管系统中不确定性的总体影响,而传统疲劳分析无法准确评估这些影响。通常在基于确定性的疲劳损伤评估中使用的大安全因素倾向于确保设计的高安全性,但它们仍是通用因素,它们没有利用可用数据来准确量化系统安全性。本文提出了一种针对TTR系统疲劳可靠性和完整性分析的概率方法。通过使用概率规则,考虑到Palmgren-Miner规则的不确定性,循环载荷和部件的疲劳强度,并开发了一种简化的方法来估算TTR系统在其使用寿命中的故障概率,并进行了其他分析近似值。然后将该方法用于对TTR组件的疲劳可靠性进行比较评估,并计算其疲劳完整性指数。案例研究中说明了该方法,该方法用于提供建议,可以通过降低成本,提高安全性和最大化完整性来改善TTR疲劳设计。

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