Experimental and numerical study of radial and axial HTS magnetic couplers

IF 5.6 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Maxim Osipov, Irina Martirosian, Aleksandr Starikovskii, Dmitrii Aleksandrov, Sergei Pokrovskii
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Abstract

The paper presents the results of an experimental study and numerical calculations of torques in magnetic couplers of various configurations. A comparison was made for model couplers based on permanent magnets (PMG) and couplers based on high-temperature superconducting (HTS) tapes cooled with liquid nitrogen. In PMG-couplers, both coupler halves are made of permanent magnets, while in HTS-couplers, one coupler half is made of HTS-tapes stacks, and the second of permanent magnets. Both types of couplers are considered in both axial and radial configurations, with different clearances between the coupler halves. The results of experimental studies showed that in the configurations we considered, radial HTS-couplers are superior to their axial analogues in terms of the maximum torque between the coupler halves. In addition, in the considered configurations, PMG couplers exceeded their HTS analogues in torque by 10 times. Numerical finite element calculations using a combined A-T-H formulation were used to optimize the design of the HTS-coupler. The model was verified using the obtained experimental data for moments in model couplers. The model was used to calculate an optimized coupler with added HTS-windings, lower HTS temperature and stronger permanent magnets. The calculation results showed that HTS-couplers can be comparable with their PMG analogues, at the same time they are significantly superior to them in damping external disturbances. Due to the fact that the best characteristics were shown by model radial couplers with minimal gaps between the coupler halves, radial couplers were manufactured based on windings of 10 and 20 layers of HTS-tapes and the torques in them were measured in the FC and ZFC modes. It has been shown that in most operating conditions, 10-layer couplers outperform 20-layer couplers.
径向和轴向 HTS 磁耦合器的实验和数值研究
本文介绍了对各种配置的磁耦合器中的扭矩进行实验研究和数值计算的结果。对基于永磁体(PMG)的模型耦合器和基于液氮冷却的高温超导带(HTS)的耦合器进行了比较。在永磁发电机耦合器中,两半耦合器均由永磁体制成,而在高温超导耦合器中,一半耦合器由高温超导带堆叠而成,另一半由永磁体制成。两种类型的耦合器都考虑了轴向和径向配置,耦合器两半之间有不同的间隙。实验研究结果表明,在我们考虑的配置中,就耦合器两半之间的最大扭矩而言,径向 HTS 耦合器优于轴向耦合器。此外,在所考虑的配置中,永磁发电机耦合器的扭矩超过其 HTS 类似装置的 10 倍。使用 A-T-H 组合公式进行的数值有限元计算用于优化 HTS 耦合器的设计。利用获得的模型耦合器力矩实验数据对模型进行了验证。该模型被用于计算增加了 HTS 绕组、降低了 HTS 温度和增强了永磁体的优化耦合器。计算结果表明,HTS 耦合器可与永磁发电机的同类产品相媲美,同时在抑制外部干扰方面明显优于永磁发电机。由于耦合器两半之间间隙最小的径向耦合器模型显示出最佳特性,因此在 10 层和 20 层 HTS 带绕组的基础上制造了径向耦合器,并在 FC 和 ZFC 模式下测量了其中的扭矩。结果表明,在大多数工作条件下,10 层耦合器的性能优于 20 层耦合器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.90
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