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Coupled FEM-DBEM approach on multiple crack growth in cryogenic magnet system of nuclear fusion experiment 'Wendelstein 7-X'

机译:FEM-DBEM耦合方法在核聚变实验“ Wendelstein 7-X”的低温磁体系统中的多裂纹扩展

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摘要

At the Max Planck Institute for plasma physics in Greifswald, Germany, the world's largest nuclear fusion experiment of modular stellarator type Wendelstein 7-X has started plasma operation. The hot hydrogen plasma is confined in a plasma vessel by an electromagnetic field generated by 50 non-planar and 20 planar superconducting coils. The superconducting coils are encased in cast stainless steel housings. The coils are bolted onto a central support ring and welded together by so called lateral support elements (LSEs). In this paper, a procedure, based on a global-local finite element method (FEM)-dual boundary element method (DBEM) approach, is developed to simulate the propagation of multiple cracks detected in LSEs and undergoing a fatigue load spectrum. The global stress analysis on the superconducting coils is performed by FEM whereas the sub-modelling approach is adopted to solve the crack propagation in the DBEM environment. The boundary conditions applied on the DBEM submodel are the displacements calculated by the FEM global analysis, in correspondence of the cut surfaces (there are no body forces nor external loads applied on the submodel volume). Two cracks are simultaneously introduced, and a linear elastic fracture mechanics analysis is performed. Results in terms of cracks growth rates and evolving crack shapes are provided, and the residual life of the component is forecast.
机译:在德国格赖夫斯瓦尔德的马克斯·普朗克等离子体物理研究所,世界上最大的模块化恒星型Wendelstein 7-X型核聚变实验已开始进行等离子体操作。 50个非平面和20个平面超导线圈产生的电磁场将热氢等离子体限制在等离子体容器中。超导线圈被封装在铸不锈钢外壳中。线圈用螺栓固定在中央支撑环上,并通过所谓的侧向支撑元件(LSE)焊接在一起。本文基于全局局部有限元方法(FEM)-双边界元方法(DBEM)方法,开发了一种程序来模拟在LSE中检测到并经历疲劳载荷谱的多个裂纹的传播。超导线圈的整体应力分析是通过有限元法进行的,而采用子建模方法来解决DBEM环境中的裂纹扩展。在DBEM子模型上应用的边界条件是通过FEM全局分析计算的位移,对应于切割面(子模型体积上没有体力,也没有外部载荷)。同时引入两个裂纹,并进行线性弹性断裂力学分析。提供了有关裂纹增长率和裂纹形状演变的结果,并预测了组件的剩余寿命。

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