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首页> 外文期刊>Superconductor Science & Technology >An improved FEM model for computing transport AC loss in coils made of RABiTS YBCO coated conductors for electric machines
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An improved FEM model for computing transport AC loss in coils made of RABiTS YBCO coated conductors for electric machines

机译:改进的FEM模型,用于计算电机用RABbiTS YBCO涂层导体制成的线圈中的运输交流损耗

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AC loss can be a significant problem for any applications that utilize or produce an AC current or magnetic field, such as an electric machine. The authors investigate the electromagnetic properties of high temperature superconductors with a particular focus on the AC loss in superconducting coils made from YBCO coated conductors for use in an all-superconducting electric machine. This paper presents an improved 2D finite element model for the cross-section of such coils, based on the H formulation. The model is used to calculate the transport AC loss of a racetrack-shaped coil using constant and magnetic field-dependent critical current densities, and the inclusion and exclusion of a magnetic substrate, as found in RABiTS (rolling-assisted biaxially textured substrate) YBCO coated conductors. The coil model is based on the superconducting stator coils used in the University of Cambridge EPEC Superconductivity Group's all-superconducting permanent magnet synchronous motor design. To validate the modeling results, the transport AC loss of a stator coil is measured using an electrical method based on inductive compensation by means of a variable mutual inductance. Finally, the implications of the findings on the performance of the motor are discussed.
机译:对于任何利用或产生交流电流或磁场的应用,例如电机,交流损耗可能是一个重大问题。作者研究了高温超导体的电磁特性,特别关注了用于全超导电机的,由YBCO涂层导体制成的超导线圈中的交流损耗。本文基于H公式为此类线圈的横截面提出了一种改进的2D有限元模型。如RABiTS(滚动辅助双轴织构基材)YBCO中所发现的,该模型用于使用恒定且取决于磁场的临界电流密度来计算跑道形线圈的传输AC损耗,以及包含和排除磁性基材。涂层导体。线圈模型基于剑桥大学EPEC超导集团的全超导永磁同步电动机设计中使用的超导定子线圈。为了验证建模结果,使用基于电感补偿的电气方法通过可变互感来测量定子线圈的传输AC损耗。最后,讨论了这些发现对电机性能的影响。

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