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Maglev performance of a double-layer bulk high temperature superconductor above a permanent magnet guideway
31
Citations
20
References
2009
Year
MagnetismElectrical EngineeringHigh-tc SuperconductivityEngineeringSuperconducting MaterialMaglev PerformanceHigh-temperature SuperconductivitySuperconductivityMaglev Vehicle SystemHigh Tc SuperconductorsMagnetic MaterialsPermanent Magnet Guideway
In order to improve the performance of the present high temperature superconducting (HTS) maglev vehicle system, the maglev performance of single- and double-layer bulk high temperature superconductors (HTSC) was investigated above a permanent magnet guideway (PMG). It is found that the maglev performance of a double-layer bulk HTSC is not a simple addition of each layer's levitation and guidance force. Moreover, the applied magnetic field at the position of the upper layer bulk HTSC is not completely shielded by the lower layer bulk HTSC either. 53.5% of the levitation force and 27.5% of the guidance force of the upper layer bulk HTSC are excited in the double-layer bulk HTSC arrangement in the applied field-cooling condition and working gap, bringing a corresponding improvement of 16.9% and 8.8% to the conventional single-layer bulk HTSC. The present research implies that the cost performance of upper layer bulk HTSC is a little low for the whole HTS maglev system.
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