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Journal article

An improved FEM model for computing transport AC loss in coils made of RABiTS YBCO coated conductors for electric machines

From

University of Cambridge1

Dynamical systems, Department of Mathematics, Technical University of Denmark2

Department of Mathematics, Technical University of Denmark3

Shanghai Jiao Tong University4

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.

Language: English
Year: 2011
Pages: 045005
ISSN: 13616668 and 09532048
Types: Journal article
DOI: 10.1088/0953-2048/24/4/045005

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