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XFEM simulation of fatigue crack growth in a welded joint of a pressure vessel with a reinforcement ring

机译:XFEM模拟带加强环的压力容器焊接接头疲劳裂纹扩展

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The numerical analysis of the behaviour of a pressure vessel with a reinforcement ring subjected to both static and dynamic load is presented in this paper. This research was based on a previous analysis which involved different reinforcement ring dimensions, and their influence on the stress distribution within the pressure vessel, assuming the presence of a crack (Sedmak et al., in: International Conference on Structural Integrity and Durability, 2017). The aim was to compare the numerical results for two models, one of which was a 2D model simulated with classic FEM, whereas the other included a 3D fatigue crack, and was simulated with extended finite element method, using Morfeo software. The numerical simulation was based on a pressure vessel which is typically used as a part of hydropower plants, containing a manhole which is supported by the reinforcement ring. The analysis focused on a crack that was located in the welded joint between the reinforcement ring and the pressure vessel mantle. The results obtained by the simulations have shown the differences in the stress magnitudes and in the consequences resulting from the crack growth in both cases, depending on the type of the load, wherein the second (fatigue) load case was noticeably more extreme.
机译:本文对带有加强环的压力容器在静态和动态载荷下的行为进行了数值分析。这项研究基于先前的分析,该分析涉及不同的增强环尺寸及其对压力容器内应力分布的影响,假设存在裂缝(Sedmak等人,于:国际结构完整性和耐久性会议,2017年) )。目的是比较两个模型的数值结果,其中一个是使用经典FEM模拟的2D模型,而另一个包括3D疲劳裂纹,并使用Morfeo软件通过扩展有限元方法进行了模拟。数值模拟基于压力容器,压力容器通常用作水力发电厂的一部分,压力容器包含由加强环支撑的人孔。分析的重点是位于加强环和压力容器罩之间的焊接接头中的裂纹。通过模拟获得的结果表明,在两种情况下,应力大小和裂纹扩展所导致的后果都存在差异,具体取决于载荷的类型,其中第二种(疲劳)载荷情况明显更为极端。

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