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Managing Information Uncertainty in Wave Height Modeling for the Offshore Structural Analysis through Random Set

机译:通过随机集管理海上结构分析的波高建模中的信息不确定性

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This chapter presents a reliability study for an offshore jacket structure with emphasis on the features of nonconventional modeling. Firstly, a random set model is formulated for modeling the random waves in an ocean site. Then, a jacket structure is investigated in a pushover analysis to identify the critical wave direction and key structural elements. This is based on the ultimate base shear strength. The selected probabilistic models are adopted for the important structural members and the wave direction is specified in the weakest direction of the structure for a conservative safety analysis. The wave height model is processed in a P-box format when it is used in the numerical analysis. The models are applied to find the bounds of the failure probabilities for the jacket structure. The propagation of this wave model to the uncertainty in results is investigated in both an interval analysis and Monte Carlo simulation. The results are compared in context of information content and numerical accuracy. Further, the failure probability bounds are compared with the conventional probabilistic approach.
机译:本章介绍了海上护套结构的可靠性研究,重点是非常规建模的特征。首先,建立了一个随机集模型来模拟海洋站点中的随机波。然后,在推覆分析中研究外套结构,以识别临界波方向和关键结构元素。这基于极限基础剪切强度。对于重要的结构构件,采用选定的概率模型,并在结构的最弱方向上指定波浪方向,以进行保守的安全分析。当波高模型用于数值分析时,将以P-box格式处理。应用这些模型来查找护套结构的失效概率范围。在区间分析和蒙特卡洛模拟中都研究了该波动模型对结果不确定性的传播。将结果与信息内容和数值准确性进行比较。此外,将故障概率边界与常规概率方法进行比较。

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