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An efficient time domain fatigue analysis and its comparison to spectral fatigue assessment for an offshore jacket structure

机译:一种有效的时域疲劳分析及其与海上护套结构光谱疲劳评估的比较

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摘要

Industry codes require inspections of critical joints within certain intervals to ensure the structural integrity of fixed offshore structures and suggest the use of spectral fatigue analyses to identify them. Spectral methods are considered less reliable but more efficient than approaches in the time domain, which are generally considered highly accurate but computationally unfeasible. This paper evaluates both the time and the frequency domain approaches using a large platform as an example. The results obtained from a, computationally demanding, full-scale time domain fatigue assessment are used as the standard to quantify the errors resulting from the assumptions and simplifications made in the spectral fatigue analysis. These results indicate, also, that the simplifications involved in spectral fatigue lead not only to the well-known inaccuracy but also to consistently lower fatigue lives. This excessive conservatism leads to unnecessary and costly inspections. This paper contributes to the literature in two important ways. First, it shows the main causes of the inaccuracies of the spectral method and quantifies them. Second, it proposes a novel approach for the time domain fatigue analysis which drastically reduces the computational burden, while maintaining a high degree of accuracy. Performing fatigue analyses in time rather than frequency domain increases the accuracy and the reliability of the results and extends the fatigue life of the joints of the structure since several conservative assumptions are eliminated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:行业法规要求在一定间隔内对关键接头进行检查,以确保固定的海上结构的结构完整性,并建议使用频谱疲劳分析来识别它们。光谱方法被认为比时域方法更不可靠,但效率更高,时域方法通常被认为是高度准确的,但在计算上却不可行。本文以一个大型平台为例,评估时域和频域方法。从对计算要求很高的时域疲劳评估中获得的结果用作标准,以量化由频谱疲劳分析中的假设和简化导致的误差。这些结果还表明,光谱疲劳所涉及的简化不仅导致众所周知的误差,而且还导致疲劳寿命持续降低。这种过度的保守主义导致不必要和昂贵的检查。本文通过两种重要方式为文献做出了贡献。首先,它显示了光谱方法不准确的主要原因,并对它们进行了量化。其次,提出了一种时域疲劳分析的新方法,该方法可以在保持较高准确性的同时,大大减少计算负担。由于消除了一些保守的假设,因此在时间而非频率域中进行疲劳分析可以提高结果的准确性和可靠性,并可以延长结构节点的疲劳寿命。 (C)2016 Elsevier Ltd.保留所有权利。

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