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A MULTIDIMENSIONAL FEA APPROACH FOR DETERMINATION OF HOT SPOT STRESSES IN OFFSHORE JACKET STRUCTURES

机译:多维FEA方法,用于测定海上夹套结构中的热点应力

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A new fatigue lifetime assessment approach for offshore jacket structures is presented. It combines a previously developed numerical framework for automated determination of stress concentration factors in tubular joints and a multidimensional finite element modelling approach. The approach is explained based on a case study of an OC4 type offshore jacket. To determine the fatigue life, a directional wave spectrum is combined with the JONSWAP spectrum. The fatigue life of the jacket is assessed for two different sea states. Based on the fatigue analysis the most fatigue critical wave direction is identified. The hot spot stresses in one of the most critical joints are determined and compared to stresses obtained with the Efthymiou equations. The shortcomings of these equations are highlighted and it is shown how the numerical framework can be used to improve the current fatigue design philosophy for offshore jackets which relies on the Efthymiou equations for stress concentration factors in the welded tubular joints.
机译:提出了一种新的海上夹套结构的疲劳寿命评估方法。它结合了先前开发的数值框架,用于自动测定管状关节中应力集中因子和多维有限元建模方法。该方法是基于对OC4型离岸夹克的案例研究来解释的。为了确定疲劳寿命,定向波谱与Jonswap谱结合。夹克的疲劳寿命被评估了两种不同的海区。基于疲劳分析,鉴定了最疲劳临界波方向。确定其中一个最关键的关节中的热点应力,并与用Efthymiou方程获得的应力进行比较。这些方程的缺点是突出显示的,显示了数值框架如何用于改善靠近海外夹套的疲劳设计哲学,依赖于焊接管状关节中应力集中因子的EFthymiou方程。

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