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Approaches to numerical modeling in development process of complex structures for fusion devices

机译:融合装置复杂结构的开发过程中数值模拟方法

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Development of components for fusion device normally comprises numerous simulations to validate their design compatibility with the specified loads according to applicable codes and standards. A strategy of multifield finite element analyses is determined by an iterative nature of design process, and a level of a structure complexity dictates analysis approaches and modeling technique. Nowadays powerful software exploiting the strength of modern computers allows simulating structures in a very detailed way, even for some types of coupled field analyses. As some drawback of this tendency, many efficient numerical tools, used in the past, are not frequently engaged. Sometimes huge numerical resources are spent to solve trivial problems. Direct CAD-analysis meshing of structures in all their complexity may mix effects of different importance and may lead to overlooking some key structure features. Computational problems with convergence in nonlinear analyses often make modeling less flexible to design changes. This paper gives examples of engineering simplified modeling made with clear understanding of an analysis goal and a role of simulations in design process, like for the W7-X stellarator busbar system. Engineering methods to perform multifield analysis including electromagnetic transients for some ITER diagnostics are also presented. An engineering material model to calculate steel superconducting structures working in inelastic range is discussed.
机译:融合设备的组件的开发通常包括许多模拟,以根据适用的代码和标准验证其与指定负载的设计兼容性。多峰有限元分析策略由设计过程的迭代性质决定,结构复杂度的水平决定了分析方法和建模技术。如今强大的软件利用现代计算机的实力允许以非常详细的方式模拟结构,即使某些类型的耦合场分析。随着这种趋势的一些缺点,过去使用的许多有效的数字工具并不经常啮合。有时巨大的数字资源都花了解琐碎的问题。在所有复杂性中,结构的直接CAD分析啮合可以混合不同重要性的影响,并且可能导致忽略一些关键结构特征。非线性分析中收敛的计算问题通常使模型更加灵活地设计更改。本文提供了通过清楚地理解分析目标和设计过程中模拟的作用,例如用于W7-X螺旋母线母线系统的示例。还提出了用于执行Multifield分析的工程方法,包括用于某些迭代诊断的电磁瞬变。讨论了计算在非弹性范围内工作的钢超导结构的工程材料模型。

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