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Analysis of the Levitation Force of Radial-type High-T_C Superconducting Magnetic Bearings using a Halbach Permanent Magnet

机译:使用Halbach永磁体分析径向型高T_C超导磁轴承的悬浮力

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摘要

Superconducting flywheel energy storage systems using superconducting magnetic bearings have been studied for their feasibility to contribute to daily load leveling.To make the system fit for practical application,the levitation force of radial-type superconducting magnetic bearing must be enhanced.If the magnetic flux leaked outside of the permanent magnet can be induced internally to the furthest possible extent and the magnetic flux acting the superconductor can be increased,it is believed that the levitation force will be enhanced.Therefore,we introduced the idea of applying a Halbach permanent magnet,which produces a strong magnetic field almost totally on one side,to the permanent magnetic assembly.The magnetic field and levitation force in the case where a Halbach permanent magnet is applied were then analyzed.Based on the results of analysis,we have demonstrated that levitation force is enhanced when the above-mentioned Halbach permanent magnet is applied to a radial-type superconducting magnetic bearing.
机译:研究了使用超导磁轴承的超导飞轮储能系统在日常负载均衡中的可行性。为使该系统适合实际应用,必须增加径向型超导磁轴承的悬浮力。可以在内部最大程度地感应出永磁体外部,并且可以增加作用于超导体的磁通量,从而可以提高悬浮力。因此,我们引入了应用Halbach永磁体的想法在永久磁铁组件的一侧几乎完全产生一个强磁场。然后分析了应用Halbach永磁体时的磁场和悬浮力。基于分析结果,我们证明了悬浮力当将上述Halbach永磁体应用于径向型超级磁体时,磁场增强导磁轴承。

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