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Development of a three-dimensional finite-element model for high-temperature superconductors based on the H-formulation

机译:基于H公式的高温超导体三维有限元模型的开发

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摘要

Finite-element models are a powerful and widely used tool for evaluating the ac losses of HTS tapes and wires as well as of assemblies such as cables and coils. The H-formulation, which uses the magnetic field components as state variables, has proved to be an efficient implementation to solve 2-D problems, involving infinitely long or axially-symmetric geometries; an excellent agreement with experimental data has been found in many cases. However, the simulation of certain applications requires a full 3-D model. In this paper we report on the development of a 3-D model based on the H-formulation. We describe the implementation of Maxwell equations, the imposition of current constraints and we discuss the issues related to meshing 3-D volumes. The model is validated by comparing the results with those obtained with 2-D models in cases that can be investigated in 2-D; then, it is used to simulate cases that can be handled only in 3-D.
机译:有限元模型是一种功能强大且广泛使用的工具,可用于评估HTS胶带和电线以及诸如电缆和线圈之类的组件的交流损耗。使用磁场分量作为状态变量的H公式已被证明是解决二维问题的有效方法,涉及无限长或轴向对称的几何形状。在许多情况下,已经发现与实验数据非常吻合。但是,某些应用程序的仿真需要完整的3D模型。在本文中,我们报告了基于H公式的3-D模型的开发。我们描述了麦克斯韦方程的实现,当前约束的强加,并讨论了与3D网格划分有关的问题。通过将结果与可以在二维中进行调查的二维模型中获得的结果进行比较,可以验证模型的有效性;然后,它用于模拟只能在3D模式下处理的案例。

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