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Finite-Element Method Modeling of Superconductors: From 2-D to 3-D

机译:超导体的有限元方法建模:从二维到三维

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摘要

A three-dimensional (3-D) numerical modeling technique for solving problems involving superconducting materials is presented. The model is implemented in finite-element method software and is based on a recently developed 3-D formulation for general electromagnetic problems with solid conductors. It has been adapted for modeling of superconductors with nonlinear resistivity in 3-D, characterized by a power-law E - J relation. It has first been compared with an existing and verified two-dimensional (2-D) model: Compared are the current density distribution inside the conductors and the self-field ac losses for different applied transport currents. Second, the model has been tested for computing the current distribution with typical 3-D geometries, such as corner-shaped and twisted superconductors. Finally, it has been used with two superconducting filaments in the presence of external magnetic field for verifying the existence of coupling currents. This effect deals with the finite length of the conductors and cannot be taken into account by 2-D models.
机译:提出了一种用于解决涉及超导材料的问题的三维(​​3-D)数值建模技术。该模型是在有限元方法软件中实现的,并且基于最近开发的3-D公式来解决固体导体的一般电磁问题。它适用于建模具有3-D非线性电阻率的超导体,其特征在于幂律E-J关系。首先将其与现有的并经过验证的二维(2-D)模型进行了比较:比较了导体内部的电流密度分布和不同施加的传输电流的自磁场交流损耗。其次,该模型已经过测试,可以计算出典型的3-D几何形状(例如角形和扭曲超导体)的电流分布。最后,它已在存在外部磁场的情况下与两条超导细丝一起使用,以验证耦合电流的存在。这种影响涉及导体的有限长度,二维模型无法考虑。

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