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3D finite element analysis of eddy current loss of HTS tapes - External field analysis

机译:HTS胶带涡流损耗的3D有限元分析-外场分析

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摘要

The eddy current losses in the matrix of two twisted filaments Bi-2223 HTS tapes in applied external AC magnetic field was calculated using 3D FEM software. The highest eddy current loss in the matrix was experienced when magnetic field is applied perpendicular to the wide side of the rectangular model. Numerically calculated eddy current losses are plotted as the function of frequency, filament twist pitch, matrix conductivity and magnetic field amplitude. Longer filament twist pitch models have higher eddy current losses in transverse magnetic field. In longitudinal magnetic field shorter filament twist pitch have higher eddy current losses. Increases in the applied external field amplitude, frequency and matrix conductivity contributes to higher eddy current losses. Numerical calculation results shows that the contribution of eddy current loss at commercial frequency is not minimal. The numerical results presented are for uncoupled filaments HTS tapes. (C) 2007 Elsevier B.V. All rights reserved.
机译:使用3D FEM软件计算了在施加的外部交流磁场中两条双股Bi-2223 HTS缠绕细丝矩阵中的涡流损耗。当垂直于矩形模型的宽边施加磁场时,矩阵中的涡流损耗最高。数值计算出的涡流损耗与频率,灯丝捻距,基体电导率和磁场振幅的函数关系图。较长的灯丝扭曲螺距模型在横向磁场中具有较高的涡流损耗。在纵向磁场中,较短的灯丝扭曲节距具有较高的涡流损耗。所施加的外部磁场幅度,频率和矩阵电导率的增加会导致更高的涡流损耗。数值计算结果表明,商用频率下涡流损耗的贡献不是最小的。给出的数值结果是针对未耦合的细丝HTS胶带。 (C)2007 Elsevier B.V.保留所有权利。

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